HUAWEI-VDSL2-LINE-MIB
AI MIB Summary
The HUAWEI-VDSL2-LINE-MIB enables monitoring and management of physical layer parameters and operational status for Huawei VDSL2 line interfaces, including signal attenuation, noise margins, and data rates. It facilitates the retrieval of performance counters and fault conditions specific to the VDSL2 transmission medium on Huawei DSLAM or modem hardware.
This mib is used for defining huawei's VDSL line management MIB objects.
Main OID:
vdslMIB.1.3.6.1.4.1.2011.6.115
842
Objects
Active
Status
9
Dependencies
Imported Objects
Objects
842 total| Object Name |
|---|
vdslMIBThis mib is used for defining huawei's VDSL line management MIB objects. MODULE-IDENTITY .1.3.6.1.4.1.2011.6.115 |
vdsl2 OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1 |
vdsl2Notifications OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.0 |
vdsl2LinePerfFECSThreshXtucThis notification indicates that the FEC seconds threshold
has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.1 |
vdsl2LinePerfFECSThreshXturThis notification indicates that the FEC seconds threshold
has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.2 |
vdsl2LinePerfESThreshXtucThis notification indicates that the errored seconds threshold
has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.3 |
vdsl2LinePerfESThreshXturThis notification indicates that the errored seconds threshold
has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.4 |
vdsl2LinePerfSESThreshXtucThis notification indicates that the severely-errored seconds
threshold has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.5 |
vdsl2LinePerfSESThreshXturThis notification indicates that the severely-errored seconds
threshold has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.6 |
vdsl2LinePerfLOSSThreshXtucThis notification indicates that the LOS seconds
threshold has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.7 |
vdsl2LinePerfLOSSThreshXturThis notification indicates that the LOS seconds
threshold has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.8 |
vdsl2LinePerfUASThreshXtucThis notification indicates that the unavailable seconds
threshold has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.9 |
vdsl2LinePerfUASThreshXturThis notification indicates that the unavailable seconds
threshold has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.10 |
vdsl2LinePerfCodingViolationsThreshXtucThis notification indicates that the coding violations
threshold has been reached/exceeded for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.11 |
vdsl2LinePerfCodingViolationsThreshXturThis notification indicates that the coding violations
threshold has been reached/exceeded for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.12 |
vdsl2LinePerfCorrectedThreshXtucThis notification indicates that the corrected blocks
(FEC events) threshold has been reached/exceeded for the
referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.13 |
vdsl2LinePerfCorrectedThreshXturThis notification indicates that the corrected blocks
(FEC events) threshold has been reached/exceeded for the
referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.14 |
vdsl2LinePerfFailedFullInitThreshThis notification indicates that the failed full
initializations threshold has been reached/exceeded for the
referred VDSL/VDSL2 or VDSL2 line. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.15 |
vdsl2LinePerfFailedShortInitThreshThis notification indicates that the failed short
initializations threshold has been reached/exceeded for the
referred VDSL or VDSL2 line. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.16 |
vdsl2LineStatusChangeXtucThis notification indicates that a status change is
detected for the referred xTU-C. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.17 |
vdsl2LineStatusChangeXturThis notification indicates that a status change is
detected for the referred xTU-R. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.18 |
vdsl2LinePerfFullInitThreshThis notification indicates that the full
initializations threshold has been reached/exceeded for the
referred VDSL/VDSL2 or VDSL2 line. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.0.19 |
vdsl2Line OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.1 |
vdsl2LineTableThe table vdsl2LineTable contains configuration,
command and status parameters of the VDSL2 line.
The index of this table is ifIndex. SEQUENCE OF Vdsl2LineEntry .1.3.6.1.4.1.2011.6.115.1.1.1 |
vdsl2LineEntryThe table vdsl2LineTable contains configuration,
command and status parameters of the VDSL2 line.
The index of this entry is ifIndex. Vdsl2LineEntry .1.3.6.1.4.1.2011.6.115.1.1.1.1 |
vdsl2LineCnfgTemplateThe value of this object identifies the row in the VDSL2 Line
Configuration Templates Table, (Vdsl2ConfTemplatesTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.1 |
vdsl2LineAlarmCnfgTemplateThe value of this object identifies the row in the VDSL2 Line
Alarm Configuration Template Table,
(vdsl2LineAlarmConfTemplateTable), which applies to this VDSL2
line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.2 |
vdsl2LineCmndConfPmsfPower management state forced. Defines the line states to be
forced by the near-end xTU on this line.
Options:
1. l3toL0(0) - Force the line to transition from the L3
idle state to the L0 full-on state
2. l0toL2(2) - Force the line to transition from L0
full on to L2 low power state
3. l0orL2toL3(3) - Force the line to transition from the L0
full-on or L2 low power state to the L3 idle state
4. invalidValue(-1) -Invalid valuerw Vdsl2ConfPmsForce (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.3 |
vdsl2LineCmndConfLdsfLoop diagnostics mode forced (LDSF). Defines whether the line
should be forced into the loop diagnostics mode by the
near-end xTU on this line or only be responsive to loop
diagnostics initiated by the far-end xTU.rw Vdsl2LineLdsf (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.4 |
vdsl2LineCmndConfLdsfFailReasonThe status of the recent occasion the Loop diagnostics mode
forced (LDSF) was issued for the associated line.
Options:
1. none(1) - The default value in case LDSF was never
requested for the associated line
2. success(2) - The recent command completed
successfully
3. inProgress(3) - The Loop Diagnostics process is in
progress
4. unsupported(4) - The NE or the line card doesn't support
LDSF
5. cannotRun(5) - The NE cannot initiate the command, due
to a non specific reason
6. aborted(6) - The Loop Diagnostics process aborted
7. failed(7) - The Loop Diagnostics process failed
8. illegalMode(8) - The NE cannot initiate the command, due
to the specific mode of the relevant
line
9. adminUp(9) - The NE cannot initiate the command, as
the relevant line is administratively
'Up'
10.tableFull(10) - The NE cannot initiate the command, due
to reaching the maximum number of rows
in the results table
11.noResources(11) - The NE cannot initiate the command, due
to lack of internal memory resources
Default: none(1)ro Vdsl2LdsfResult (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.5 |
vdsl2LineCmndAutomodeColdStartAutomode cold start forced. This parameter is defined
in order to improve testing of the performance of ATUs
supporting automode when it is enabled in the MIB.
Change the value of this parameter to 'true' indicates
a change in loop conditions applied to the devices under
test. The ATUs shall reset any historical information
used for automode and for shortening G.994.1 handshake
and initialization.
Automode is the case where multiple operation-modes are
enabled through the vdsl2LConfProfXtuTransSysEna object
in the line configuration profile being used for the
VDSL line, and where the selection of the actual
operation-mode depends not only on the common
capabilities of both ATUs (as exchanged in G.994.1), but
also on achievable data rates under given loop
conditions.rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.1.1.1.6 |
vdsl2LineStatusXtuTransSysThe xTU Transmission System (XTS) in use.
This parameter may be derived from the handshaking procedures
defined in Recommendation G.994.1. The invalid value is 4294967295.
If data on the port is invalid or no data is generated on the
port because the port has not been activated, the invalid value
will be returned. One of VDSL2 line
transmission modes:
ANSI_T1413(1)
ETSI_DTS_TM06006(2)
G9921_POTS_NONOVERLAP(3)
G9921_POTS_OVERLAP(4)
G9921_ISDN_NONOVERLAP(5)
G9921_ISDN_OVERLAP(6)
G9921_TCMISDN_NONOVERLAP(7)
G9921_TCMISDN_OVERLAP(8)
G9922_POTS_NONOVERLAP(9)
G9922_POTS_OVERLAP(10)
G9922_TCMISDN_NONOVERLAP(11)
G9922_TCMISDN_OVERLAP(12)
G9921_TCMISDN_SYMMETRIC(13)
G9923_POTS_NONOVERLAP(19)
G9923_POTS_OVERLAP(20)
G9923_ISDN_NONOVERLAP(21)
G9923_ISDN_OVERLAP(22)
G9924_POTS_NONOVERLAP(25)
G9924_POTS_OVERLAP(26)
G9923_ANNEXI_ALLDIGI_NONOVERLAP(29)
G9923_ANNEXI_ALLDIGI_OVERLAP(30)
G9923_ANNEXJ_ALLDIGI_NONOVERLAP(31)
G9923_ANNEXJ_ALLDIGI_OVERLAP(32)
G9924_ANNEXI_ALLDIGI_NONOVERLAP(33)
G9924_ANNEXI_ALLDIGI_OVERLAP(34)
G9923_ANNEXL_POTS_NONOVERLAP_MODE1_WIDEUS(35)
G9923_ANNEXL_POTS_NONOVERLAP_MODE2_NARROWUS(36)
G9923_ANNEXL_POTS_OVERLAP_MODE3_WIDEUS(37)
G9923_ANNEXL_POTS_NONOVERLAP_MODE4_NARROWUS(38)
G9923_ANNEXM_POTS_NONOVERLAP(39)
G9923_ANNEXM_POTS_OVERLAP(40)
G9925_POTS_NONOVERLAP(41)
G9925_POTS_OVERLAP(42)
G9925_ISDN_NONOVERLAP(43)
G9925_ISDN_OVERLAP(44)
G9925_ANNEXI_ALLDIGI_NONOVERLAP(47)
G9925_ANNEXI_ALLDIGI_OVERLAP(48)
G9925_ANNEXJ_ALLDIGI_NONOVERLAP(49)
G9925_ANNEXJ_ALLDIGI_OVERLAP(50)
G9925_ANNEXM_POTS_NONOVERLAP(51)
G9925_ANNEXM_POTS_OVERLAP(52)
G9931(65)
G9932_ANNEXA_POTS(73)
G9932_ANNEXA_ISDN(74)
G9932_ANNEXB_POTS(75)
G9932_ANNEXB_ISDN(76)
G9932_ANNEXC_POTS(77)
G9932_ANNEXC_ISDN(78)
G9935(79)
G9935_FRIENDLY_DS(80)
G9935_FULL_FRIENDLY(81)ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.1.1.1.7 |
vdsl2LineStatusPwrMngStateThe current power management state.
Options:
1. L0 - Synchronized and full transmission
2. L1 - Low Power with reduced net data rate
3. L2 - Low Power with reduced net data rate
4. L3 - No power
The various possible values are:l0(0), l1(1), l2(2), l3(3).ro Vdsl2PowerMngState (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.8 |
vdsl2LineStatusInitResultIndicates the result of the last full initialization performed
on the line.
Options:
1. noFail (0) - Successful initialization
2. configError (1) - Configuration failure
3. configNotFeasible (2) - Configuration details not supported
4. commFail (3) - Communication failure
5. noPeerXtu (4) - Peer xTU not detected
6. otherCause (5) - Other initialization failure reason
7. ginpNotSelected(6) - G.998.4 Retransmission mode was not selected
while RTX_MODE = FORCED or with RTX_MODE = RTX_TESTMODE
8. invalidValue(-1) - Invalid valuero Vdsl2InitResult (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.9 |
vdsl2LineStatusLastStateDsThe last successful transmitted initialization state in
the downstream direction in the last full initialization
performed on the line. States are per the specific VDSL type
and are counted from 0 (if G.994.1 is used) or 1 (if G.994.1
is not used) up to Showtime.ro Vdsl2LastTransmittedState (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.10 |
vdsl2LineStatusLastStateUsThe last successful transmitted initialization state in the
upstream direction in the last full initialization performed
on the line. States are per the specific VDSL type and are
counted from 0 (if G.994.1 is used) or 1 (if G.994.1 is not
used) up to Showtime.ro Vdsl2LastTransmittedState (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.11 |
vdsl2LineStatusXturIndicates current state (existing failures) of the xTU-R.
This is a bit-map of possible conditions. The various bit
positions are: noFailure(0), lossOfFraming(1),
lossOfSignal(2), lossOfPower(3),
initFailure(4) - never active on xTU-Rro Vdsl2LineStatus (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.12 |
vdsl2LineStatusXtucIndicates current state (existing failures) of the xTU-C.
This is a bit-map of possible conditions. This BITS structure can
report the following failures:
1. noDefect (0) - This bit position positively reports
that no defect or failure exist
2. lossOfFraming (1) - Loss of frame synchronization
3. lossOfSignal (2) - Loss of signal
4. lossOfPower (3) - Loss of power. Usually this failure may
be reported for CPE units only
5. initFailure (4) - Recent initialization process failedro Vdsl2LineStatus (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.13 |
vdsl2LineStatusLnAttenDsThe measured difference in the total power transmitted by the
xTU-C and the total power received by the xTU-R over all
sub-carriers during diagnostics mode and initialization. It
ranges from 0 to 1270 units of 0.1 dB (Physical values
are 0 to 127 dB). A value of all 1's indicates the line
attenuation is out of range to be represented. The invalid value
is 4294967295. If data on the port is invalid or no data is
generated on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1 dBro Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.14 |
vdsl2LineStatusLnAttenUsThe measured difference in the total power transmitted by the
xTU-R and the total power received by the xTU-C over all sub-
carriers during diagnostics mode and initialization.
It ranges from 0 to 1270 units of 0.1 dB (Physical values are
0 to 127 dB). A value of all 1's indicates the line
attenuation is out of range to be represented. The invalid value
is 4294967295. If data on the port is invalid or no data is
generated on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1 dBro Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.15 |
vdsl2LineStatusSigAttenDsThe measured difference in the total power transmitted by the
xTU-C and the total power received by the xTU-R over all sub-
carriers during Showtime. It ranges from 0 to 1270 units of
0.1 dB (Physical values are 0 to 127 dB). A value of all
1's indicates the line attenuation is out of range to be
represented. The invalid value is 4294967295. If data on the
port is invalid or no data is generated on the port because
the port has not been activated, the invalid value will be returned.
Unit: 0.1 dBro Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.16 |
vdsl2LineStatusSigAttenUsThe measured difference in the total power transmitted by the
xTU-R and the total power received by the xTU-C over all sub-
carriers during Showtime. It ranges from 0 to 1270 units of
0.1 dB (Physical values are 0 to 127 dB). A value of all
1's indicates the line attenuation is out of range to be
represented. The invalid value is 4294967295. If data on the
port is invalid or no data is generated on the port because
the port has not been activated, the invalid value will be returned.
Unit: 0.1 dBro Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.17 |
vdsl2LineStatusSnrMarginDsDownstream SNR Margin is the maximum increase in dB of the
noise power received at the xTU-R, such that the BER
requirements are met for all downstream bearer channels. It
ranges from -640 to 630 units of 0.1 dB (Physical values are
-64 to 63 dB). A value of 0x7FFFFFFF(2147483647) indicates the line
attenuation is out of range to be represented. The invalid
value is 2147483647. If data on the port is invalid or no data
is generated on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.18 |
vdsl2LineStatusSnrMarginUsUpstream SNR Margin is the maximum increase in dB of the noise
power received at the xTU-C, such that the BER requirements
are met for all downstream bearer channels. It ranges from
-640 to 630 units of 0.1 dB (Physical values are -64 to
63 dB). A value of 0x7FFFFFFF(2147483647) indicates the line attenuation
is out of range to be represented. The invalid value is 2147483647.
If data on the port is invalid or no data is generated on
the port because the port has not been activated, the
invalid value will be returned.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.19 |
vdsl2LineStatusAttainableRateDsMaximum Attainable Data Rate Downstream.
The maximum downstream net data rate currently attainable by
the xTU-C transmitter and the xTU-R receiver, coded in bit/s.
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.1.1.1.20 |
vdsl2LineStatusAttainableRateUsMaximum Attainable Data Rate Upstream.
The maximum upstream net data rate currently attainable by the
xTU-R transmitter and the xTU-C receiver, coded in bit/s.
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.1.1.1.21 |
vdsl2LineStatusActPsdDsActual Power Spectrum Density (PSD) Downstream. The average
downstream transmit PSD over the sub-carriers used for
downstream. It ranges from -900 to 0 units of 0.1 dB
(Physical values are -90 to 0 dBm/Hz). A value of 0x7FFFFFFF(2147483647)
indicates the measurement is out of range to be represented.
The invalid value is 2147483647. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.22 |
vdsl2LineStatusActPsdUsActual Power Spectrum Density (PSD) Upstream. The average
upstream transmit PSD over the sub-carriers used for upstream.
It ranges from -900 to 0 units of 0.1 dB (Physical values
are -90 to 0 dBm/Hz). A value of 0x7FFFFFFF(2147483647) indicates the
measurement is out of range to be represented. The invalid value
is 2147483647. If data on the port is invalid or no data is
generated on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.23 |
vdsl2LineStatusActAtpDsActual Aggregate Transmit Power Downstream. The total amount
of transmit power delivered by the xTU-C at the U-C reference
point, at the instant of measurement. It ranges from -310 to
310 units of 0.1 dB (Physical values are -31 to 31 dBm). A
value of 0x7FFFFFFF(2147483647) indicates the measurement is out of range to
be represented. The invalid value is 2147483647. If data on the
port is invalid or no data is generated on the port because
the port has not been activated, the invalid value will be returned.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.24 |
vdsl2LineStatusActAtpUsActual Aggregate Transmit Power Upstream. The total amount of
transmit power delivered by the xTU-R at the U-R
reference point, at the instant of measurement. It ranges
from -310 to 310 units of 0.1 dB (Physical values are -31
to 31 dBm). A value of 0x7FFFFFFF(2147483647) indicates the measurement
is out of range to be represented.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.25 |
vdsl2LineBandPlanBand contains a series of subcarriers.
The first octet is the number of bands. Other octets describe the info of
each band.
Each band info is a pair of values occupying 4 octets with the
following structure:
First octets - serial number of band
Second octets - Direction of band
Third fourth octets - Start index of band
Fifth sixth octets - End index of band
Huawei defined.ro Vdsl2BandPlan (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.26 |
vdsl2LinePsdMaskClassSelectionThe sub class of VDSL2 PSD Mask.ro Vdsl2TIPsdClassMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.27 |
vdsl2LineCurrentVdsl2ProfileThis configuration parameter contains the G.993.2 profiles
to be allowed by the near-end xTU on this line.ro Vdsl2SubProfiles (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.28 |
vdsl2LineCnfgServiceProfThe value of this object identifies the row in the VDSL2 Line
Configuration Service Profile Table, (vdsl2ServProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.29 |
vdsl2LineCnfgSpectrumProfThe value of this object identifies the row in the VDSL2 Line
Configuration Spectrum Profile Table, (vdsl2SpectrumProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.30 |
vdsl2LineCnfgDpboProfThe value of this object identifies the row in the VDSL2 Line
Configuration Dpbo Profile Table, (vdsl2DpboProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.31 |
vdsl2LineCnfgUpboProfThe value of this object identifies the row in the VDSL2 Line
Configuration Upbo Profile Table, (vdsl2UpboProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.32 |
vdsl2LineCnfgNoiseMarginProfThe value of this object identifies the row in the VDSL2 Line
Configuration Noise Margin Profile Table, (vdsl2NoiseMarginProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.33 |
vdsl2LineCnfgDelayINPProfThe value of this object identifies the row in the VDSL2 Line
Configuration Delay-INP Profile Table, (vdsl2DelayInpProfTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.34 |
vdsl2UpboProfKl0CpeValThe actual value of KL0_CPE parameter,it ranges
from 0 to 1280 units of 0.1 dB. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not been
activated, the invalid value will be returned.
Unit: 0.1dBro Unsigned32 UNITS "0.1dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.35 |
vdsl2LineStatusCodingGainDsThe actual value of Coding gain downstream parameter,it ranges
from 0 to 16 units of 0.5 dB. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: 0.5dBro Unsigned32 UNITS "0.5dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.36 |
vdsl2LineStatusCodingGainUsThe actual value of Coding gain upstream parameter,it ranges
from 0 to 16 units of 0.5 dB. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: 0.5dBro Unsigned32 UNITS "0.5dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.37 |
vdsl2LineStatusPcbDsThe actual value of power cut back downstream parameter,
it ranges from 0 to 40 units of 1 dB. The invalid value
is 4294967295. If data on the port cannot be queried,
data on the port is invalid, or no data is generated on the
port because the port has not been activated, the invalid
value will be returned.
Unit: 1dBro Unsigned32 UNITS "1dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.38 |
hwvdslDlmDsmprofileThe value of this object identifies the row
in the DLM/DSM Profile Table,
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.1.1.1.39 |
hwvdsl2LineActmodeActived mode after training between co and cpe.
Options:
1. ADSL(1) - ETSI,T1.413 G992.1,G992.2
2. ADSL2(2) - G992.3,G992.4
3. ADSL2PLUS(3) - G992.5
4. VDSL(4) - G993.1
5. VDSL2(5) - G993.2,G993.5
6. invalidValue(-1) - Invalid valuero Vdsl2Actmode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.40 |
vdsl2UpboProfKl0CoValThe actual value of KL0_CO parameter, it ranges
from 0 to 1280 units of 0.1 dB. The invalid value
is 4294967295. If data on the port cannot be queried,
data on the port is invalid, or no data is generated
on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1dBro Unsigned32 UNITS "0.1dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.41 |
vdsl2LineStatusRtxUsedDsThis parameter specifies whether G.998.4 retransmission
is used in downstream.
Options:
1. rtxInuse(1) - RTX in use
2. rtxUnusedModeForbidden(2) - RTX not in use, due to RTX_MODE = FORBIDDEN
3. rtxUnusedNotSupportedXtuc(3) - RTX not in use, due to not supported by the XTU-C
4. rtxUnusedNotSupportedXtur(4) - RTX not in use, due to not supported by the XTU-R
5. rtxUnusedNotSupportedXtucAndXtur(5) - RTX not in use, due to not supported by the XTU-C and XTU-R
6. invalidValue(-1) - Invalid valuero Vdsl2StatusRtxUsed (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.42 |
vdsl2LineStatusRtxUsedUsThis parameter specifies whether G.998.4 retransmission
is used in upstream.
Options:
1. rtxInuse(1) - RTX in use
2. rtxUnusedModeForbidden(2) - RTX not in use, due to RTX_MODE = FORBIDDEN
3. rtxUnusedNotSupportedXtuc(3) - RTX not in use, due to not supported by the XTU-C
4. rtxUnusedNotSupportedXtur(4) - RTX not in use, due to not supported by the XTU-R
5. rtxUnusedNotSupportedXtucAndXtur(5) - RTX not in use, due to not supported by the XTU-C and XTU-R
6. invalidValue(-1) - Invalid valuero Vdsl2StatusRtxUsed (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.1.1.1.43 |
vdsl2LineStatusLastRetrainInfoIndicates the last retrained information performed on the line.
Options:
1. none(1) - No record is available
2. cpe-l3-trigger(2) - The terminal initiates a low power consumption L3 request
3. lom-us-trigger-dra(3) - The upstream noise margin is smaller than the minimum noise margin in rate dynamic adjustment
4. lom-ds-trigger-dra(4) - The downstream noise margin is smaller than the minimum noise margin in rate dynamic adjustment
5. cpe-never-answer-oam(5) - No OAM response is received from the CPE all the time
6. cpe-no-more-answer-oam(6) - No OAM response is received from the CPE
7. persistent-ncd-us(7) - Upstream continuous no cell delineation
8. persistent-ncd-ds(8) - Downstream continuous no cell delineation
9. persistent-lcd-us(9) - Upstream continuous loss of cell delineation
10.persistent-lcd-ds(10) - Downstream continuous loss of cell delineation
11.l2-problem-co-drop(11) - The CO is faulty during the switching from L0 to L2
12.l2-problem-cpe-drop(12) - The CPE is faulty during the switching from L0 to L2
13.bitswap-refused-us-co-drop(13) - The CO goes offline when the upstream bit swap fault occurs 10 times consecutively
14.bitswap-refused-us-cpe-drop(14) - The CPE goes offline when the downstream bit swap fault occurs 10 times consecutively
15.channel-change-us-co-drop(15) - The CO goes offline when the upstream net rate changes
16.channel-change-us-cpe-drop(16) - The CPE goes offline when the upstream net rate changes
17.noise-increase-us-co-drop(17) - The CO goes offline when the upstream noise increases
18.noise-increase-us-cpe-drop(18) - The CPE goes offline when the upstream noise increases
19.bitswap-refused-ds-co-drop(19) - The CO goes offline when the downstream bit swap fault occurs 10 times consecutively
20.bitswap-refused-ds-cpe-drop(20) - The CPE goes offline when the downstream bit swap fault occurs 10 times consecutively
21.channel-change-ds-co-drop(21) - The CO goes offline when the downstream net rate changes
22.channel-change-ds-cpe-drop(22) - The CPE goes offline when the downstream net rate changes
23.noise-increase-ds-co-drop(23) - The CO goes offline when the downstream noise increases
24.noise-increase-ds-cpe-drop(24) - The CPE goes offline when the downstream noise increases
25.lom-us-co-drop(25) - The CO goes offline when the upstream noise margin is smaller than the minimum noise margin
26.lom-us-cpe-drop(26) - The CPE goes offline when the upstream noise margin is smaller than the minimum noise margin
27.lom-ds-co-drop(27) - The CO goes offline when the downstream noise margin is smaller than the minimum noise margin
28.lom-ds-cpe-drop(28) - The CPE goes offline when the downstream noise margin is smaller than the minimum noise margin
29.sra-problem-us-co-drop(29) - The CO goes offline when the upstream SRA is faulty
30.sra-problem-us-cpe-drop(30) - The CPE goes offline when the upstream SRA is faulty
31.sra-failed-us-co-drop(31) - The CO goes offline when the upstream SRA fails
32.sra-failed-us-cpe-drop(32) - The CPE goes offline when the upstream SRA fails
33.sra-problem-ds-co-drop(33) - The CO goes offline when the downstream SRA is fault
34.sra-problem-ds-cpe-drop(34) - The CPE goes offline when the downstream SRA is faulty
35.sra-rejected-ds-co-drop(35) - The CO goes offline when the downstream SRA is rejected
36.sra-rejected-ds-cpe-drop(36) - The CPE goes offline when the downstream SRA is rejected
37.bitswap-problem-us-co-drop(37) - The CO goes offline when the upstream bit swap is faulty
38.bitswap-problem-us-cpe-drop(38) - The CPE goes offline when the upstream bit swap is faulty
39.bitswap-failed-us-co-drop(39) - The CO goes offline when the upstream bit swap fails
40.bitswap-failed-us-cpe-drop(40) - The CPE goes offline when the upstream bit swap fails
41.bitswap-problem-ds-co-drop(41) - The CO goes offline when the downstream bit swap is faulty
42.bitswap-problem-ds-cpe-drop(42) - The CPE goes offline when the downstream bit swap is faulty
43.bitswap-rejected-ds-co-drop(43) - The CO goes offline when the downstream bit swap is rejected
44.bitswap-rejected-ds-cpe-drop(44) - The CPE goes offline when the downstream bit swap is rejected
45.cpe-switched-off(45) - The CPE power supply is shut down
46.cpe-lost(46) - The CPE is disconnected
47.co-reset(47) - The CO resets the chipset or line
48.co-stop(48) - The CO actively deactivate the port
49.unknown(49) - Unknown reasonro Enumeration .1.3.6.1.4.1.2011.6.115.1.1.1.1.44 |
vdsl2UpboRxThreshDsThis parameter reports the downstream received signal level threshold value
used in the Alternative Electrical Length Estimation method (ELE-M1).
This parameter represents an offset from -100 dB,
and ranges from -64 dB to 0 dB in steps of 1 dB. The invalid value is
2147483647. If data on the port cannot be queried, data on the port
is invalid, or no data is generated on the port because the port has
not been activated, the invalid value will be returned.
Unit: dBro Integer32 UNITS "dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.45 |
vdsl2UpboRxThreshUsThis parameter reports the upstream received signal level threshold value
used in the Alternative Electrical Length Estimation method (ELE-M1).
This parameter represents an offset from -100 dB,
and ranges from -64 dB to 0 dB in steps of 1 dB. The invalid value is
2147483647. If data on the port cannot be queried, data on the port
is invalid, or no data is generated on the port because the port has
not been activated, the invalid value will be returned.
Unit: dBro Integer32 UNITS "dB" .1.3.6.1.4.1.2011.6.115.1.1.1.1.46 |
hwvdsl2LineStatusLineRateDsThe actual line rate downstream. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not been
activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.1.1.1.47 |
hwvdsl2LineStatusLineRateUsThe actual line rate upstream. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not been
activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.1.1.1.48 |
hwvdsl2LineSplitterModeThis parameter indicates which mode will be applied to the port
splitter .The valid values for the splitter mode are 1 and 2.
Options:
1. connect (1) - Splitter mode is connect
2. bypass (2) - Splitter mode is bypassrw Enumeration .1.3.6.1.4.1.2011.6.115.1.1.1.1.49 |
hwvdsl2LineBackupThis parameter indicates whether the port backup is enabled.
Options:
1. enable(1) - Enable the port backup.
2. disable(2) - Disable the port backup.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.1.1.1.50 |
hwvdsl2LineBackupPortThis parameter indicates the backup port ifindex. If data on the port is invalid or no data is
generated on the port, the port is not backed up.
The invalid value is 4294967295.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.1.1.1.51 |
hwvdsl2LinePhyRcontrolThis parameter indicates whether the PHY-R retransmission is enabling.
In TR165 mode, the H80BVDPM board should be enabled when it works as ADSL mode.
Options:
1. enable(1) - Enable the PHY-R retransmission of VDSL2 line.
2. disable(2) - Disable the PHY-R retransmission of VDSL2 line.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.1.1.1.52 |
vdsl2Status OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.2 |
vdsl2ChannelStatusTableThe table vdsl2ChannelStatusTable contains status
parameters of VDSL2 channel.
The indexes of this table are ifIndex and vdsl2ChStatusUnit. SEQUENCE OF Vdsl2ChannelStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.1 |
vdsl2ChannelStatusEntryThe table vdsl2ChannelStatusTable contains status
parameters of VDSL2 channel.
The indexes of this entry are ifIndex and vdsl2ChStatusUnit. Vdsl2ChannelStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.1.1 |
vdsl2ChStatusUnitThe termination unit xTU-C(1) or xTU-R(2). Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.1.1.1 |
vdsl2ChStatusChannelNumProvides the bearer channel number associated with this
row (i.e., the channel ifIndex).
This enables determining the channel configuration profile
and the channel thresholds profile applicable for this
bearer channel.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.2 |
vdsl2ChStatusActDataRateIf retransmission is not used in a given transmit direction,
this parameter reports the actual net data rate at which the
bearer channel is operating in L0 power management state, and
in L1 or L2 states, the parameter contains the net data rate
in the previous L0 state.
If retransmission is used in a given transmit direction,
this parameter reports the Expected Throughput(ETR) at which the
bearer channel is operating in L0 power management state, and in
L1 or L2 states, the parameter contains the Expected Throughput(ETR)
in the previous L0 state.
The data rate is coded in steps of 1000 bit/s.
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not been
activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.3 |
vdsl2ChStatusPrevDataRateIf retransmission is not used in a given transmit direction, this
parameter reports the previous net data rate the bearer channel
was operating at just before the latest net data rate change event
occurred, excluding all transitions between L0 state and L1 or L2
states.
If retransmission is used in a given transmit direction, this
parameter reports the previous Expected Throughput(ETR)
(as defined in G.998.4) the bearer channel was operating at just
before the latest ETR change event occurred, excluding all
transitions between L0 state and L1 or L2 states.
The data rate is coded in steps of 1000 bit/s.
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: bits/secondro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.4 |
vdsl2ChStatusActDelayIf retransmission is not used in a given transmit direction, this
parameter is the actual one-way interleaving delay introduced by
the PMS-TC excluding delay in L1 and L2 state. In L1 and L2 state,
the parameter contains the interleaving delay in the previous L0
state.
If retransmission is used in a given transmit direction, this
parameter specifies the actual value of the time-independent
component of the delay due to retransmission only.
It is coded in ms (rounded to the nearest ms).
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: millisecondsro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.5 |
vdsl2ChStatusAtmStatusIndicates current state (existing failures) of the VDSL
channel in case its Data Path is ATM. This is a bit-map of
possible conditions.
Options:
1. noDefect(0) - This bit position positively
reports that no defect or failure
exist
2. noCellDelineation(1) - The link was successfully
initialized but cell delineation
was never acquired on the
associated ATM data path
3. lossOfCellDelineation(2) - Loss of cell delineation on the
associated ATM data path
In case the channel is not of ATM Data Path, the object is set
to '0'.ro Vdsl2ChAtmStatus (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.1.1.6 |
vdsl2ChStatusPtmStatusIndicates current state (existing failures) of the VDSL
channel in case its Data Path is PTM. This is a bit-map of
possible conditions.
Options:
1. noFailure(0) - No failure
2. outOfSync (1) - Out of synchronization
In case the channel is not of PTM Data Path the object is set
to '0'.ro Vdsl2ChPtmStatus (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.1.1.7 |
vdsl2ChStatusINPIf retransmission is not used in a given transmit direction, this
parameter reports the actual impulse noise protection (INP) on the
bearer channel in the L0 state. In the L1 or L2 state, the parameter
contains the INP in the previous L0 state.
If retransmission is used in a given transmit direction, this parameter
reports the actual impulse noise protection (INP) against SHINE on
the bearer channel in the L0 state. In the L2 state, the parameter
contains the INP in the previous L0 state.
The value is coded in fractions of DMT symbols with a granularity of 0.1 symbols.
The invalid value is 4294967295. If data on the port is invalid or no
data is generated on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.1 DMT symbolro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.8 |
vdsl2ChStatusRSRedundancyThe actual number of Reed-Solomon redundancy
bytes per codeword used in the latency path
in which the bearer channel is transported.
The value is coded in bytes.
The value 0 indicates no Reed-Solomon coding.
The invalid value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: bytero Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.9 |
vdsl2ChStatusRSSymbolsThe DMT Symbol number per codeword used in
the latency path in which the bearer channel
is transported. The invalid value is 4294967295.
If data on the port is invalid or no data is generated
on the port because the port has not been activated,
the invalid value will be returned.
Unit: 0.01 DMT symbolro Unsigned32 UNITS "0.01 DMT symbol" .1.3.6.1.4.1.2011.6.115.1.2.1.1.10 |
vdsl2ChStatusInterDepthThe actual Reed-Solomon codeword size used
in the latency path in which the bearer channel
is transported.
The value ranges from 1 to 4096 by step of 1.
The value 1 indicates no interleaving. The invalid
value is 4294967295. If data on the port is invalid
or no data is generated on the port because the port
has not been activated, the invalid value will be returned.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.11 |
vdsl2ChStatusSymbolLengthThe actual number of bits per symbol assigned
to the latency path in which the bearer channel
is transported.
This value does not include trellis overhead. The invalid
value is 4294967295. If data on the port is invalid or no
data is generated on the port because the port has not been
activated, the invalid value will be returned.
Unit: bitro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.12 |
vdsl2ChStatusRSSizeThe actual Reed-Solomon codeword size used
in the latency path in which the bearer channel
is transported. The invalid value is 4294967295.
If data on the port is invalid or no data is
generated on the port because the port has not
been activated, the invalid value will be returned.
Unit: bytero Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.13 |
vdsl2ChStatusInterBlockLengthThe actual block length of the interleaver
used in the latency path in which the bearer
channel is transported. The invalid value is 4294967295.
If data on the port is invalid or no data is generated
on the port because the port has not been activated,
the invalid value will be returned.
Unit: bytero Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.14 |
vdsl2ChStatusLPATHThe index of the actual
latency path in which the bearer is transported.
The invalid value is 4294967295. If data on the port
is invalid or no data is generated on the port because
the port has not been activated, the invalid value
will be returned.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.15 |
vdsl2ChStatusPhyRrrcBitsThe bits in the channel that used to retransmission.
The invalid value is 4294967295. If data on the port cannot
be queried, data on the port is invalid, or no data is
generated on the port because the port has not been
activated, the invalid value will be returned.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.16 |
vdsl2ChStatusPhyRtxQueueQueues in send buffer used for retransmission.
The invalid value is 4294967295. If data on the port
cannot be queried, data on the port is invalid, or no
data is generated on the port because the port has
not been activated, the invalid value will be returned.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.17 |
vdsl2ChStatusActNetDataRateIn L0 state, this parameter reports the Net Data Rate at which the bearer channel is operating.
In L2 state, this parameter contains the Net Data Rate in the previous L0 state.
This parameter is optional if G.998.4 retransmission function is not supported.
The data rate is coded in steps of 1000 bit/s. The invalid value is 4294967295.
If data on the port cannot be queried, data on the port is invalid,
or no data is generated on the port because the port has not been activated,
the invalid value will be returned.ro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.2.1.1.18 |
vdsl2ChStatusActINPAgainstREINIf retransmission is used in a given transmit direction,
this parameter reports the actual impulse noise protection (INP)
against REIN (under specific conditions detailed in G.998.4)
on the bearer channel in the L0 state. In the L2 state, the
parameter contains the INP in the previous L0 state. The value
is coded in fractions of DMT symbols with a granularity of 0.1 symbols.
The invalid value is 4294967295. If data on the port cannot be
queried, data on the port is invalid, or no data is generated
on the port because the port has not been activated, the invalid
value will be returned.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.1.1.19 |
hwvdsl2ChStatusUnlimitedVersionEtruThe unlimited version of expected throughput in kbit/s:(1 - RTxOH) * NDR.
This value is specified in G.998.4 (G.INP).ro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.2.1.1.20 |
vdsl2PrivSCStatusTableThe table vdsl2PrivSCStatusTable contains status parameters
of VDSL2 sub-carriers.
The indexes of this table are ifIndex and vdsl2PrivSCStatusDirection. SEQUENCE OF Vdsl2PrivSCStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.2 |
vdsl2PrivSCStatusEntryThe table vdsl2PrivSCStatusTable contains status parameters
of VDSL2 sub-carriers.
The indexes of this entry are ifIndex and vdsl2PrivSCStatusDirection. Vdsl2PrivSCStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.2.1 |
vdsl2PrivSCStatusDirectionThe direction of the sub-carrier either
upstream or downstream. Vdsl2Direction (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.2.1.1 |
vdsl2PrivSCStatusMtimeSNR Measurement Time. The number of symbols used to
measure the SNR values on the respective transmission
direction. It should correspond to the value specified in the
recommendation (e.g., the number of symbols in 1 second
time interval for G.992.3). This parameter corresponds to
1 second in loop diagnostic procedure and should be updated
otherwise.
Unit: symbolsro Unsigned32 UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.2.2.1.2 |
vdsl2PrivSCStatusSnrThe SNR Margin per sub-carrier, expressing the ratio between
the received signal power and received noise power per
subscriber. It is an array of 4096 bytes, designed for
supporting up to 4096 sub-carriers.
The number of utilized octets on downstream direction depends
on NSCds, and on upstream direction it depends on NSCus. This
value is referred here as NSC.
Byte i (0 <= i < NSC) is set to a value in the range 0 to
254 to indicate that the respective downstream or upstream sub-
carrier i has SNR of: (-32 + Vdsl2SubcarrierSnr(i)/2) in dB
(i.e., -32 to 95dB).
The special value 255 means that no measurement could be done
for the subcarrier because it is out of the PSD mask passband
or that the noise PSD is out of range to be represented.
Each value in this array is 8 bits wide.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.2.1.3 |
vdsl2PrivSCStatusBitsAllocThe bits allocation per sub-carrier. An array of 2048 bytes,
designed for supporting up to 4096 sub-carriers.
The number of utilized nibbles on downstream direction depends
on NSCds, and on upstream direction it depends on NSCus. This
value is referred here as NSC.
Nibble i (0 <= i < NSC) is set to a value in the range 0
to 15 to indicate that the respective downstream or upstream
sub-carrier i has the same amount of bits allocation.
Unit: bitsro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.2.1.4 |
vdsl2PrivSCStatusGainAllocThe gain allocation per sub-carrier. An array of 8192 bytes,
designed for supporting up to 4096 sub-carriers.
The number of utilized octets on downstream direction depends
on NSCds, and on upstream direction it depends on NSCus. This
value is referred here as NSC.
Value i (0 <= i < NSC) is in the range 0 to 4093 to indicate
that the respective downstream or upstream sub-carrier i has the
same amount of gain value.
The gain value is represented as a multiple of 1/512 on
linear scale. Each value in this array is 16 bits wide and is
stored in big endian format.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.2.1.5 |
vdsl2SCStatusTableThe table vdsl2SCStatusTable contains
sub-carrier status parameters for VDSL2/ADSL/ADSL2
and ADSL2+ that DO NOT refer to specific sub-carriers.
In addition, the table contains parameters
that provide information about the size of parameters
in vdsl2SCStatusSegmentTable. This table contains live data
from equipment. The indexes of this table are ifIndex and
vdsl2SCStatusDirection. SEQUENCE OF Vdsl2SCStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.3 |
vdsl2SCStatusEntryThe table vdsl2SCStatusTable contains
sub-carrier status parameters for VDSL2/ADSL/ADSL2
and ADSL2+ that DO NOT refer to specific sub-carriers.
In addition, the table contains parameters
that provide information about the size of parameters
in vdsl2SCStatusSegmentTable. This table contains live data
from equipment. The indexes of this entry are ifIndex and
vdsl2SCStatusDirection. Vdsl2SCStatusEntry .1.3.6.1.4.1.2011.6.115.1.2.3.1 |
vdsl2SCStatusDirectionThe direction of the sub-carrier either
upstream or downstream Vdsl2Direction (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.3.1.1 |
vdsl2SCStatusLinScaleThe scale factor to be applied to the H(f) linear
representation values for the respective transmission direction.
This parameter is only available after a loop diagnostic
procedure.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.3.1.2 |
vdsl2SCStatusLinScGroupSizeNumber of sub-carriers per group used to report the H(f)
linear representation values for the respective transmission
direction. The valid values are 1, 2, 4 and 8. For ADSL, this
parameter is equal to one and, for VDSL2, it is equal to the
size of a sub-carrier group used to compute these parameters.
This parameter is only available after a loop diagnostic
procedure.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.3.1.3 |
vdsl2SCStatusLogMtThe number of symbols used to measure the H(f) logarithmic
measurement values for the respective transmission direction.
This parameter should correspond to the value specified in the
recommendation (e.g., the number of symbols in 1 second
time interval for G.992.3). This parameter corresponds to 1
second in loop diagnostic procedure and should be updated in
initialization.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.3.1.4 |
vdsl2SCStatusLogScGroupSizeNumber of sub-carriers per group used to report the H(f)
logarithmic representation values for the respective
transmission direction. The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.3.1.5 |
vdsl2SCStatusQlnMtThe number of symbols used to measure the Quiet Line Noise
values on the respective transmission direction. This
parameter should correspond to the value specified in the
recommendation (e.g., the number of symbols in 1 second time
interval for G.992.3). This parameter corresponds to 1 second
in loop diagnostic procedure and should be updated in
initialization.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.3.1.6 |
vdsl2SCStatusQlnScGroupSizeNumber of sub-carriers per group used to report the Quiet
Line Noise values for the respective transmission direction.
The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.3.1.7 |
vdsl2SCStatusMtimeSNR Measurement Time. The number of symbols used to
measure the SNR values on the respective transmission
direction. It should correspond to the value specified in the
recommendation (e.g., the number of symbols in 1 second
time interval for G.992.3). This parameter corresponds to
1 second in loop diagnostic procedure and should be updated
otherwise.
Unit: symbolsro Unsigned32 UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.2.3.1.8 |
vdsl2SCStatusSnrScGroupSizeNumber of sub-carriers per group used to report the SNR
values on the respective transmission direction.
The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.3.1.9 |
vdsl2SCStatusAttainableRateMaximum Attainable Data Rate. The maximum net data rate
currently attainable by the XTU-C transmitter and XTU-R
receiver (when referring to downstream direction) or by the
XTU-R transmitter and XTU-C receiver (when referring to
upstream direction). Value is coded in bits/s.
This object reflects the value of the parameter following the
most recent DELT performed on the associated line. Once
the DELT process is over, the parameter no longer changes
until the row is deleted or a new DELT process is initiated.
Unit: bits/secondro Unsigned32 UNITS "bits/second" .1.3.6.1.4.1.2011.6.115.1.2.3.1.10 |
vdsl2SCStatusActAtpActual Aggregate Transmit Power from the XTU (XTU-R on
downstream direction and XTU-C on upstream direction), at the
instant of measurement. It ranges from -310 to 310 units of
0.1 dB (Physical values are -31 to 31 dBm). A value of all
1's indicates the measurement is out of range to be
represented.
This object reflects the value of the parameter following the
most recent DELT performed on the associated line. Once
the DELT process is over, the parameter no longer changes
until the row is deleted or a new DELT process is initiated.
Unit: 0.1 dBro Integer32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.2.3.1.11 |
vdsl2SCStatusRowStatusRow Status. The SNMP agent should create rows in this
table and in the vdsl2SCStatusTable for storing the results
of a DELT performed on the associated line, if such rows
do not already exist.
The SNMP agent may have limited resources; therefore, if
multiple rows co-exist in the table, it may fail to add
new rows to the two tables or allocate memory resources for
a new DELT process. If that occurs, the SNMP agent responds with
either the value 'tableFull' or the value
'noResources' (for xdsl2LineCmndConfLdsfFailReason
object in xdsl2LineTable)
The management system (the operator) may delete rows according
to any scheme. E.g., after retrieving the results.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.2.3.1.12 |
vdsl2SCStatusProfileThis configuration parameter contains the G.993.2
profiles to be allowed by the near-end xTU on this line.ro Vdsl2Profiles (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.3.1.13 |
vdsl2SCStatusClassmaskIn order to reduce the number of configuration possibilities,
the limit PSD masks are grouped in the following PSD mask classes:
- Class 998 Annex A: D-32, D-64.
- Class 997-M1c Annex B: 997-M1c-A-7.
- Class 997-M1x Annex B: 997-M1x-M-8, 997-M1x-M.
- Class 997-M2x Annex B: 997-M2x-M-8, 997-M2x-A, 997-M2x-M.
- Class 998-M1x Annex B: 998-M1x-A, 998-M1x-B, 998-M1x-NUS0.
- Class 998-M2x Annex B: 998-M2x-A, 998-M2x-M, 998-M2x-B, 998-M2x-NUS0.
- Class HPE17 Annex B: HPE17-M1-NUS0.
- Class HPE30 Annex B: HPE30-M1-NUS0.
- Class 997E17-M2x Annex B: 997E17-M2x-NUS0.
- Class 997E30-M2x Annex B: 997E30-M2x-NUS0.
- Class 998E17-M2x Annex B: 998E17-M2x-NUS0, 998E17-M2x-NUS0-M, 998E17-M2x-A.
- Class 998ADE17-M2x Annex B: 998ADE17-M2x-NUS0-M, 998ADE17-M2x-A, 998ADE17-M2x-B.
- Class 998E30-M2x Annex B: 998E30-M2x-NUS0, 998E30-M2x-NUS0-M.
- Class 998ADE30-M2x Annex B: 998ADE30-M2x-NUS0-M, 998ADE30-M2x-NUS0-A.ro Vdsl2PSDClassMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.3.1.14 |
vdsl2SCStatusBandTableThe table vdsl2SCStatusBandTable contains
sub-carrier status parameters for VDSL2/ADSL/ADSL2
and ADSL2+ that are grouped per-band.
For ADSL/ADSL2/ADSL2+, there is a single
upstream band and a single downstream band.
For VDSL2, there are several downstream bands and
several upstream bands.
The indexes of this table are ifIndex and vdsl2SCStatusBand. SEQUENCE OF Vdsl2SCStatusBandEntry .1.3.6.1.4.1.2011.6.115.1.2.4 |
vdsl2SCStatusBandEntryThe table vdsl2SCStatusBandTable contains
sub-carrier status parameters for VDSL2/ADSL/ADSL2
and ADSL2+ that are grouped per-band.
For ADSL/ADSL2/ADSL2+, there is a single
upstream band and a single downstream band.
For VDSL2, there are several downstream bands and
several upstream bands.
The indexes of this entry are ifIndex and vdsl2SCStatusBand. Vdsl2SCStatusBandEntry .1.3.6.1.4.1.2011.6.115.1.2.4.1 |
vdsl2SCStatusBandThe transmission band.
Identifies a band in a VDSL2/ADSL/ADSL2/ADSL2+ link.
For a band in the upstream direction, transmission is from
the remote end (xTU-R) towards the central office end (xTU-C).
A band in the upstream direction is indicated by upstream(1)
for ADSL/ADSL2/ADSL2+ single band, or any of us0(3), us1(5),
us2(7), us3(9), or us4(11) for VDSL2 multiple bands.
For a band in the downstream direction, transmission is from
the xTU-C towards the xTU-R. A band in the downstream
direction is indicated by downstream(2) for ADSL/ADSL2/ADSL2+
single band, or any of ds1(4), ds2(6), ds3(8), or ds4(10) for
VDSL2 multiple bands. Xdsl2Band (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.4.1.1 |
vdsl2SCStatusBandLnAttenWhen referring to a band in the downstream direction, it is
the measured difference in the total power transmitted by the
xTU-C and the total power received by the xTU-R over all
sub-carriers during diagnostics mode.
When referring to a band in the upstream direction, it is the
measured difference in the total power transmitted by the xTU-R
and the total power received by the xTU-C over all sub-carriers
during diagnostics mode.
It ranges from 0 to 1270 units of 0.1 dB (Physical values are
0 to 127 dB).
A special value of 0x7FFFFFFF (2147483647) indicates the line
attenuation is out of range to be represented.
A special value of 0x7FFFFFFE (2147483646) indicates the line
attenuation measurement is unavailable.
This object reflects the value of the parameter following the
most recent DELT performed on the associated line. Once
the DELT process is over, the parameter no longer changes
until the row is deleted or a new DELT process is initiated.
Unit: 0.1 dBro Unsigned32 (0..1270 | 2147483646 | 2147483647) UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.2.4.1.2 |
vdsl2SCStatusBandSigAttenWhen referring to a band the downstream direction, it is the
measured difference in the total power transmitted by the
xTU-C and the total power received by the xTU-R over all sub
carriers during Showtime after the diagnostics mode.
When referring to the upstream direction, it is the measured
difference in the total power transmitted by the
xTU-R and the total power received by the xTU-C over all sub
carriers during Showtime after the diagnostics mode.
It ranges from 0 to 1270 units of 0.1 dB (Physical values
are 0 to 127 dB).
A special value of 0x7FFFFFFF (2147483647) indicates the line
attenuation is out of range to be represented.
A special value of 0x7FFFFFFE (2147483646) indicates the line
attenuation measurement is unavailable.
This object reflects the value of the parameter following the
most recent DELT performed on the associated line. Once
the DELT process is over, the parameter no longer changes
until the row is deleted or a new DELT process is initiated.
Unit: 0.1 dBro Unsigned32 (0..1270 | 2147483646 | 2147483647) UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.2.4.1.3 |
vdsl2SCStatusBandSnrMarginSNR Margin is the maximum increase in dB of the noise power
received at the XTU (xTU-R on downstream direction and xTU-C
on upstream direction), such that the BER requirements are met
for all bearer channels received at the XTU. It ranges from
-640 to 630 units of 0.1 dB (Physical values are -64 to
63 dB).
A special value of 0x7FFFFFFF (2147483647) indicates the
SNR Margin is out of range to be represented.
A special value of 0x7FFFFFFE (2147483646) indicates the
SNR Margin measurement is currently unavailable.
This object reflects the value of the parameter following the
most recent DELT performed on the associated line. Once
the DELT process is over, the parameter no longer changes
until the row is deleted or a new DELT process is initiated.
Unit: 0.1 dBro Integer32 (-640..630 | 2147483646 | 2147483647) UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.2.4.1.4 |
vdsl2SCStatusBandUpbokleThis parameter is a vector of UPBO electrical length per-band
estimates for each supported upstream/downstream band,
expressed in dB at 1 MHz (kl0) calculated by the VTU-O/VTU-R,
based on separate measurements in the supported upstream bands excluding US0/downstream bands.
The value ranges from 0 to 128 dB in steps of 0.1 dB, with special value 204.7
which indicates that the estimate is greater than 128 dB.
This parameter is required for the Alternative Electrical Length Estimation method (ELE-M1).
Unit: 0.1 dBro Unsigned32 (0..1280 | 2047 | 2147483647) UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.2.4.1.5 |
vdsl2SCStatusSegmentTableThe table vdsl2SCStatusSegmentTable contains status parameters
of VDSL2/ADSL/ADSL2 and ADSL2+ sub-carriers.
Several objects in the table refer to NSus and NSds. For
G.993.2, the value of NSus and NSds are respectively the indices
of the highest supported upstream and downstream subcarriers
according to the selected implementation profile. For ADSL,
NSus is equal to NSCus-1 and NSds is equal to NSCds-1.
The indexes of this table are ifIndex, vdsl2SCStatusDirection,
and vdsl2SCStatusSegment.
One index of this entry is an interface index where the
interface has an ifType of vdsl2(251). The second index of this
entry is the transmission direction. The third index identifies
the specific segment of the sub-carriers status addressed. SEQUENCE OF Vdsl2SCStatusSegmentEntry .1.3.6.1.4.1.2011.6.115.1.2.5 |
vdsl2SCStatusSegmentEntryThe table vdsl2SCStatusSegmentTable contains status parameters
of VDSL2/ADSL/ADSL2 and ADSL2+ sub-carriers.
Several objects in the table refer to NSus and NSds. For
G.993.2, the value of NSus and NSds are respectively the indices
of the highest supported upstream and downstream subcarriers
according to the selected implementation profile. For ADSL,
NSus is equal to NSCus-1 and NSds is equal to NSCds-1.
The indexes of this entry are ifIndex, vdsl2SCStatusDirection,
and vdsl2SCStatusSegment.
One index of this entry is an interface index where the
interface has an ifType of vdsl2(251). The second index of this
entry is the transmission direction. The third index identifies
the specific segment of the sub-carriers status addressed. Vdsl2SCStatusSegmentEntry .1.3.6.1.4.1.2011.6.115.1.2.5.1 |
vdsl2SCStatusSegmentThe segment of the sub-carriers
status information provided by this
row.
Several status parameters in this table
are retrieved in segments. The first segment
of the status information is retrieved with
vdsl2SCStatusSegment=1, the second segment
is retrieved with vdsl2SCStatusSegment=2, and
so on. When any status parameter is retrieved
in n segments where n<8) then, for that
parameter, GET operations for the rest segment
numbers (n+1 to 8) are responded with a value
that indicates: No measurement could be done. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.5.1.1 |
vdsl2SCStatusSegmentLinRealAn array of up to 512 complex H(f) linear representation
values in linear scale for the respective transmission
direction. It is designed to support up to 512 (downstream)
sub-carriers groups and can be retrieved in a single segment.
The number of utilized values on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Each array entry represents the real component [referred here as
a(i)] of Hlin(f = i*Df) value for a particular sub-carrier group
index i (0 <= i < NS).
Hlin(f) is represented as ((scale/2^15)*((a(i)+j*b(i))/2^15)),
where scale is vdsl2SCStatusLinScale and a(i) and b(i)
[provided by the vdsl2SCStatusSegmentLinImg object] are in the
range (-2^15+1) to (+2^15-1).
A special value a(i)=b(i)= -2^15 indicates that no measurement
could be done for the sub-carriers group because it is out of
the passband or that the attenuation is out of range to be
represented. This parameter is only available after a loop
diagnostic procedure.
Each value in this array is 16 bits wide and is stored in big
endian format.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.2 |
vdsl2SCStatusSegmentLinImgAn array of up to 512 complex H(f) linear representation
values in linear scale for the respective transmission
direction. It is designed to support up to 512 (downstream)
sub-carriers groups and can be retrieved in a single segment.
The number of utilized values on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Each array entry represents the imaginary component [referred
here as b(i)] of Hlin(f = i*Df) value for a particular sub-
carrier group index i (0 <= i < NS).
Hlin(f) is represented as ((scale/2^15)*((a(i)+j*b(i))/2^15)),
where scale is vdsl2SCStatusLinScale and a(i) [provided by
the vdsl2SCStatusSegmentLinReal object] and b(i) are in the range
(-2^15+1) to (+2^15-1).
A special value a(i)=b(i)= -2^15 indicates that no measurement
could be done for the sub-carriers group because it is out of
the passband or that the attenuation is out of range to be
represented. This parameter is only available after a loop
diagnostic procedure.
Each value in this array is 16 bits wide and is stored in big
endian format.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.3 |
vdsl2SCStatusSegmentLogAn array of up to 512 real H(f) logarithmic representation
values in dB for the respective transmission direction. It is
designed to support up to 512 (downstream) sub-carriers groups
and can be retrieved in a single segment.
The number of utilized values on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Each array entry represents the real Hlog(f = i*Df) value for a
particular sub-carrier group index i, (0 <= i < NS).
The real Hlog(f) value is represented as (6-m(i)/10), with m(i)
in the range 0 to 1022. A special value m=1023 indicates that
no measurement could be done for the sub-carrier group because
it is out of the passband or that the attenuation is out of
range to be represented. This parameter is applicable in loop
diagnostic procedure and initialization.
Each value in this array is 16 bits wide and is stored
in big endian format.
Unit: dBro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.4 |
vdsl2SCStatusSegmentQlnAn array of up to 512 real Quiet Line Noise values in dBm/Hz
for the respective transmission direction. It is designed for
up to 512 (downstream) sub-carriers groups and can be retrieved
in a single segment.
The number of utilized values on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Each array entry represents the QLN(f = i*Df) value for a
particular sub-carrier index i, (0 <= i < NS).
The QLN(f) is represented as ( -23-n(i)/2), with n(i) in the
range 0 to 254. A special value n(i)=255 indicates that no
measurement could be done for the sub-carrier group because it
is out of the passband or that the noise PSD is out of range
to be represented.
This parameter is applicable in loop diagnostic procedure and
initialization. Each value in this array is 8 bits wide.
Unit: dBm/Hzro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.5 |
vdsl2SCStatusSegmentSnrThe SNR Margin per sub-carrier group, expressing the
ratio between the received signal power and received noise
power per sub-scriber group. It is an array of 512 octets,
designed for supporting up to 512 (downstream) sub-carriers
groups and can be retrieved in a single segment.
The number of utilized octets on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Octet i (0 <= i < NS) is set to a value in the range 0 to
254 to indicate that the respective downstream or upstream sub-
carrier group i has SNR of: (-32 + xdsl2SCStatusSegmentSnr(i)/2)
in dB (i.e., -32 to 95dB).
The special value 255 means that no measurement could be done
for the sub-carrier group because it is out of the PSD mask
passband or that the noise PSD is out of range to be
represented. Each value in this array is 8 bits wide.
Unit: 0.5 dBro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.6 |
vdsl2SCStatusSegmentBitsAllocThe bits allocation per sub-carrier. An array of 256 octets
(512 nibbles), designed for supporting up to 512 (downstream)
sub-carriers. When more then 512 sub-carriers are supported,
the status information is reported through multiple (up to 8)
segments. The first segment is then used for the first 512
sub-carriers. The second segment is used for the sub-carriers
512 to 1023 and so on.
The aggregate number of utilized nibbles on downstream direction
(in all segments) depends on NSds, and on upstream direction it
depends on NSus.
This value is referred here as NS. The segment number is in
xdsl2SCStatusSegment.
Nibble i (0 <= i < MIN(NS-(segment-1)*512,512)) in each
segment is set to a value in the range 0 to 15 to indicate that
the respective downstream or upstream sub-carrier j
(j=(segement-1)*512+i) has the same amount of bits
allocation.
Unit: bitsro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.7 |
vdsl2SCStatusSegmentGainAllocThe gain allocation per sub-carrier. An array of 512 16-bits
values, designed for supporting up to 512 (downstream) sub-
carriers. When more then 512 sub-carriers are supported,
the status information is reported through multiple (up to 8)
segments. The first segment is then used for the first 512
sub-carriers. The second segment is used for the sub-carriers
512 to 1023 and so on.
The aggregate number of utilized octets on downstream direction
depends on NSds, and on upstream direction it depends on NSus.
This value is referred here as NS. The segment number is in
xdsl2SCStatusSegment.
Value i (0 <= i < MIN(NS-(segment-1)*512,512)) in each
segment is set to a value in the range 0 to 4093 to indicate
that the respective downstream or upstream sub-carrier j
(j=(segement-1)*512+i) has the same amount of gain value.
The gain value is represented as a multiple of 1/512 on
linear scale. Each value in this array is 16 bits wide and is
stored in big endian format.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.8 |
vdsl2SCStatusSegmentTssiThe transmit spectrum shaping (TSSi) breakpoints expressed
as the set of breakpoints exchanged during G.994.1.
Each breakpoint is a pair of values occupying 3 octets with the
following structure:
First 2 octets - Index of the subcarrier used in the context of
the breakpoint.
Third octet - The shaping parameter at the breakpoint.
Subcarrier index is an unsigned number in the range 1 to either
NSCds (downstream direction) or NSCus (upstream direction).
The shaping parameter value is in the range 0 to 127 (units of
-0.5dB). The special value 127 indicates that the subcarrier
is not transmitted.ro Vdsl2Tssi (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.2.5.1.9 |
vdsl2SCStatusSegmentTxPSDThe TxPSD per sub-carrier. An array of 512 16-bits
values, designed for supporting up to 512 (downstream) sub-
carriers. When more then 512 sub-carriers are supported,
the status information is reported through multiple (up to 8)
segments. The first segment is then used for the first 512
sub-carriers. The second segment is used for the sub-carriers
512 to 1023 and so on.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.65535 |
vdsl2SCStatusSegmentSnrMarginThe SnrMargin per sub-carrier. An array of 512 16-bits
values, designed for supporting up to 512 (downstream) sub-
carriers. When more then 512 sub-carriers are supported,
the status information is reported through multiple (up to 8)
segments. The first segment is then used for the first 512
sub-carriers. The second segment is used for the sub-carriers
512 to 1023 and so on.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.65536 |
vdsl2SCStatusSegmentLogScGroupSizeNumber of sub-carriers per group used to report the H(f)
logarithmic representation values for the respective
transmission direction. The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.
It's available for the first segment, other segments return '-1'.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.5.1.65537 |
vdsl2SCStatusSegmentQlnScGroupSizeNumber of sub-carriers per group used to report the Quiet
Line Noise values for the respective transmission direction.
The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.
It's available for the first segment, other segments return '-1'.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.5.1.65538 |
vdsl2SCStatusSegmentLinScGroupSizeNumber of sub-carriers per group used to report the H(f)
linear representation values for the respective transmission
direction. The valid values are 1, 2, 4 and 8. For ADSL, this
parameter is equal to one and, for VDSL2, it is equal to the
size of a sub-carrier group used to compute these parameters.
This parameter is only available after a loop diagnostic
procedure.
It's available for the first segment, other segments return '-1'.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.5.1.65539 |
vdsl2SCStatusSegmentSnrScGroupSizeNumber of sub-carriers per group used to report the SNR
values on the respective transmission direction.
The valid values are 1, 2, 4 and 8.
For ADSL, this parameter is equal to one and, for VDSL2, it is
equal to the size of a sub-carrier group used to compute these
parameters.
This parameter is only available after a loop diagnostic
procedure.
It's available for the first segment, other segments return '-1'.ro Unsigned32(1 | 2 | 4 | 8) .1.3.6.1.4.1.2011.6.115.1.2.5.1.65540 |
hwvdsl2SCStatusSegmentQlnWithVectoringAn array of up to 512 real Quiet Line Noise values in dBm/Hz
for the respective transmission direction. It is designed for
up to 512 (downstream) sub-carriers groups and can be retrieved
in a single segment.
The number of utilized values on downstream direction depends
on NSds, and on upstream direction it depends on NSus. This
value is referred here as NS.
Each array entry represents the QLN(f = i*Df) value for a
particular sub-carrier index i, (0 <= i < NS).
The QLN(f) is represented as ( -23-n(i)/2), with n(i) in the
range 0 to 254. A special value n(i)=255 indicates that no
measurement could be done for the sub-carrier group because it
is out of the passband or that the noise PSD is out of range
to be represented.
This parameter is applicable in loop diagnostic procedure and
initialization. Each value in this array is 8 bits wide.
Unit: dBm/Hz
This value is calculated with vectoring effect.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.5.1.65541 |
hwVdslSCFextTableThe table hwVdslSCFextTable contains FEXT coupling function parameters.
The indexes of this table are ifIndex, hwVdslSCFextFromIfindex,
and hwVdslSCFextRequestXLinScGroupSize. SEQUENCE OF HwVdslSCFextEntry .1.3.6.1.4.1.2011.6.115.1.2.6 |
hwVdslSCFextEntryThe table hwVdslSCFextTable contains FEXT coupling function parameters.
The indexes of this entry are ifIndex, hwVdslSCFextFromIfindex,
and hwVdslSCFextRequestXLinScGroupSize. HwVdslSCFextEntry .1.3.6.1.4.1.2011.6.115.1.2.6.1 |
hwVdslSCFextFromIfindexThe hwVdslSCFextFromIfindex is an interface index where the
interface has an ifType of vdsl2(251). Integer32 .1.3.6.1.4.1.2011.6.115.1.2.6.1.1 |
hwVdslSCFextRequestXLinScGroupSizeThis parameter is the requested value of XLING.
The valid values are 1, 2, 4, 8, 16, 32, and 64. Unsigned32(1 | 2 | 4 | 8 | 16 | 32 | 64) .1.3.6.1.4.1.2011.6.115.1.2.6.1.2 |
hwVdslSCFextXLinScaleDsThis parameter is the scale factor to be applied to the downstream
Xlinpsds values. It is represented as an unsigned integer
in the range from 1 to 2^16 - 1.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.6.1.3 |
hwVdslSCFextXlinScGroupSizeDsThis parameter is the number of subcarriers per group used
to report Xlinpsds. The valid values are 1, 2, 4, 8, 16, 32,
and 64. XLINGds should equal the sub-sampling factor used to
estimate the crosstalk channel for cancellation.ro Unsigned32(1 | 2 | 4 | 8 | 16 | 32 | 64) .1.3.6.1.4.1.2011.6.115.1.2.6.1.4 |
hwVdslSCFextXLinBandDsXLINBANDSds contains pairs of (start_subcarrier_index, stop_subcarrier_index)
for every band in which XLINpsds is reported.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.5 |
hwVdslSCFextXlinRealDsFor each given VCE port index k, this parameter is a one-dimensional
array of complex values in linear scale for downstream FEXT coupling
coefficients Xlinds(f) originating from the loop connected to the VCE
port k into the loop for which Xlinds(f) is being reported. Each array
entry represents the Xlinds(f = n*Df) value for a particular subcarrier
index n. The Xlinds(f = n*Df) value is represented as
((XLINSCds/2^15) * ((a(n) + j*b(n))/2^15)), where a(n) and b(n) are
signed integers in the (-2^15 + 1) to (+2^15 - 1) range. A special
value indicates that no measurement could be done from line k into this
line for subcarrier n. Another special value indicates that there is
no phase information and the magnitude of Xlinds
(f = n*Df) is ((XLINSCds/2^15) * (a(n)/2^15)).ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.6 |
hwVdslSCFextXlinImgDsFor each given VCE port index k, this parameter is a one-dimensional
array of complex values in linear scale for downstream FEXT coupling
coefficients Xlinds(f) originating from the loop connected to the VCE
port k into the loop for which Xlinds(f) is being reported. Each array
entry represents the Xlinds(f = n*Df) value for a particular subcarrier
index n. The Xlinds(f = n*Df) value is represented as
((XLINSCds/2^15) * ((a(n) + j*b(n))/2^15)), where a(n) and b(n) are
signed integers in the (-2^15 + 1) to (+2^15 - 1) range. A special
value indicates that no measurement could be done from line k into this
line for subcarrier n. Another special value indicates that there is
no phase information and the magnitude of Xlinds
(f = n*Df) is ((XLINSCds/2^15) * (a(n)/2^15)).ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.7 |
hwVdslSCFextXLinScaleUsThis parameter is the scale factor to be applied to the upstream
Xlinpsus values. It is represented as an unsigned integer
in the range from 1 to 2^16 - 1.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.2.6.1.8 |
hwVdslSCFextXlinScGroupSizeUsThis parameter is the number of subcarriers per group used
to report Xlinpsus. The valid values are 1, 2, 4, 8, 16, 32,
and 64. XLINGus should equal the sub-sampling factor used to
estimate the crosstalk channel for cancellation.ro Unsigned32(1 | 2 | 4 | 8 | 16 | 32 | 64) .1.3.6.1.4.1.2011.6.115.1.2.6.1.9 |
hwVdslSCFextXLinBandUsXLINBANDSus contains pairs of (start_subcarrier_index, stop_subcarrier_index)
for every band in which XLINpsus is reported.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.10 |
hwVdslSCFextXlinRealUsFor each given VCE port index k, this parameter is a one-dimensional
array of complex values in linear scale for upstream FEXT coupling
coefficients Xlinus(f) originating from the loop connected to the VCE
port k into the loop for which Xlinus(f) is being reported. Each array
entry represents the Xlinus(f = n*Df) value for a particular subcarrier
index n. The Xlinus(f = n*Df) value is represented as
((XLINSCus/2^15) * ((a(n) + j*b(n))/2^15)), where a(n) and b(n) are
signed integers in the (-2^15 + 1) to (+2^15 - 1) range. A special
value indicates that no measurement could be done from line k into this
line for subcarrier n. Another special value indicates that there is
no phase information and the magnitude of Xlinus
(f = n*Df) is ((XLINSCus/2^15) * (a(n)/2^15)).ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.11 |
hwVdslSCFextXlinImgUsFor each given VCE port index k, this parameter is a one-dimensional
array of complex values in linear scale for upstream FEXT coupling
coefficients Xlinus(f) originating from the loop connected to the VCE
port k into the loop for which Xlinus(f) is being reported. Each array
entry represents the Xlinus(f = n*Df) value for a particular subcarrier
index n. The Xlinus(f = n*Df) value is represented as
((XLINSCus/2^15) * ((a(n) + j*b(n))/2^15)), where a(n) and b(n) are
signed integers in the (-2^15 + 1) to (+2^15 - 1) range. A special
value indicates that no measurement could be done from line k into this
line for subcarrier n. Another special value indicates that there is
no phase information and the magnitude of Xlinus
(f = n*Df) is ((XLINSCus/2^15) * (a(n)/2^15)).ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.2.6.1.12 |
vdsl2Inventory OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.3 |
vdsl2LineInventoryTableThe table vdsl2LineInventoryTable contains inventory of VDSL2
unit. The indexes of this table are ifIndex and vdsl2LInvUnit. SEQUENCE OF Vdsl2LineInventoryEntry .1.3.6.1.4.1.2011.6.115.1.3.1 |
vdsl2LineInventoryEntryThe table vdsl2LineInventoryTable contains inventory of VDSL2
unit. The indexes of this entry are ifIndex and vdsl2LInvUnit. Vdsl2LineInventoryEntry .1.3.6.1.4.1.2011.6.115.1.3.1.1 |
vdsl2LInvUnitThe termination unit XTUC{1} or XTUR{2}. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.3.1.1.1 |
vdsl2LInvG994VendorIdThe xTU G.994.1 Vendor ID as inserted in the G.994.1 CL/CLR
message. It consists of 8 binary octets, including a country
code followed by a (regionally allocated) provider code, as
defined in Recommendation T.35.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.2 |
vdsl2LInvSystemVendorIdThe xTU System Vendor ID (identifies the xTU system
integrator) as inserted in the Overhead Messages (both xTUs
for G.992.3 and G.992.4) or in the Embedded Operations
Channel (only xTU-R in G.992.1 and G.992.2). It consists of
8 binary octets, with same format as used for
Vdsl2InvG994VendorId.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.3 |
vdsl2LInvVersionNumberThe xTU version number (vendor specific information) as
inserted in the Overhead Messages (both xTUs for G.992.3 and
G.992.4) or in the Embedded Operations Channel (only xTU-R in
G.992.1 and G.992.2). It consists of up to 16 binary octets.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.4 |
vdsl2LInvSerialNumberThe xTU serial number (vendor specific information) as
inserted in the Overhead Messages (both xTUs for G.992.3 and
G.992.4) or in the Embedded Operations Channel (only xTU-R in
G.992.1 and G.992.2). It is vendor specific information. It
consists of up to 32 ASCII characters.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.5 |
vdsl2LInvSelfTestResultThe xTU self-test result, coded as a 32-bit integer. The
most significant octet of this object is '0' if the self-test
passed, and '1' if the self-test failed. The interpretation
of the other octets is vendor discretionary.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.6 |
vdsl2LInvTransmissionCapabilitiesThe xTU transmission system capability list of the different
coding types. It is coded in a bit-map representation with 1
or more bits set. A bit set to '1' means that the xTU
supports the respective coding. The value may be derived
from the handshaking procedures defined in G.994.1. A set
of VDSL2 line transmission modes, with one bit per mode.ro Vdsl2TransmissionModeType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.3.1.1.7 |
vdsl2LInvModelIdThe XTU model ID.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.3.1.1.8 |
vdsl2PM OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.4 |
vdsl2PMLine OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.4.1 |
vdsl2PMLineCurrTableThe table vdsl2PMLineCurrTable contains current Performance
Monitoring results of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251) and the termination
unit. SEQUENCE OF Vdsl2PMLineCurrEntry .1.3.6.1.4.1.2011.6.115.1.4.1.1 |
vdsl2PMLineCurrEntryThe table vdsl2PMLineCurrTable contains current Performance
Monitoring results of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251) and the termination
unit. Vdsl2PMLineCurrEntry .1.3.6.1.4.1.2011.6.115.1.4.1.1.1 |
vdsl2PMLCurrUnitThe termination unit XTUC{1} or XTUR{2}. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.1 |
vdsl2PMLCurrValidIntervalsValid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.2 |
vdsl2PMLCurrInvalidIntervalsInvalid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.3 |
vdsl2PMLCurr15MTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro HCPerfTimeElapsed UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.4 |
vdsl2PMLCurr15MFecsCount of seconds during this interval that there was at least
one FEC correction event for one or more bearer channels in
this line. This parameter is inhibited during UAS or SES.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.5 |
vdsl2PMLCurr15MEsCount of seconds during this interval that there was:
xTU-C: CRC-8 >= 1 for one or more bearer channels OR
LOS >= 1 OR SEF >=1 OR LPR >= 1
xTU-R: FEBE >= 1 for one or more bearer channels OR
LOS-FE >=1 OR RDI >=1 OR LPR-FE >=1 .
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.6 |
vdsl2PMLCurr15MSesCount of seconds during this interval that there was:
xTU-C: If G.998.4 is supported and retransmission is enabled
in the near-end received direction, a SES is declared
if during a 1-second interval, there is one or more
severe loss of error-free throughput (seftr) defect
in the near-end received direction.
Or else, an SES is declared if, during a 1 second interval,
there are 18 or more CRC 8 anomalies in one or more of the
received bearer channels, or one or more LOS defects, or
one or more SEF defects, or one or more LPR defects.
xTU-R: If G.998.4 is supported and retransmission is enabled in the
far-end received direction, a SES-LFE is declared if during
a 1-second interval, there is one or more severe loss of
error-free throughput (seftr) defect in the far-end received
direction.
Or else, an SES is declared if, during a 1 second interval,
there are 18 or more FEBE anomalies in one or more of the
transmitted bearer channels, or one or more far end LOS
defects, or one or more RDI defects, or one or more LPR FE
defects.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.7 |
vdsl2PMLCurr15MLossCount of seconds during this interval that there was LOS (or
LOS-FE for xTU-R).
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.8 |
vdsl2PMLCurr15MUasCount of seconds in Unavailability State during this
interval. Unavailability begins at the onset of 10
contiguous severely-errored seconds, and ends at the
onset of 10 contiguous seconds with no severely-errored
seconds.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.9 |
vdsl2PMLCurr1DayValidIntervalsValid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.10 |
vdsl2PMLCurr1DayInvalidIntervalsInvalid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.11 |
vdsl2PMLCurr1DayTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro HCPerfTimeElapsed UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.12 |
vdsl2PMLCurr1DayFecsCount of seconds during this interval that there was at least
one FEC correction event for one or more bearer channels in
this line. This parameter is inhibited during UAS or SES.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.13 |
vdsl2PMLCurr1DayEsCount of seconds during this interval that there was:
xTU-C: CRC-8 >= 1 for one or more bearer channels OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: FEBE >= 1 for one or more bearer channels OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.14 |
vdsl2PMLCurr1DaySesCount of seconds during this interval that there was:
xTU-C: (CRC-8 summed over all bearer channels) >= 18 OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: (FEBE summed over all bearer channels) >= 18 OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.15 |
vdsl2PMLCurr1DayLossCount of seconds during this interval that there was LOS (or
LOS-FE for xTU-R).
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.16 |
vdsl2PMLCurr1DayUasCount of seconds in Unavailability State during this interval.
Unavailability begins at the onset of 10 contiguous severely
-errored seconds, and ends at the onset of 10 contiguous
seconds with no severely-errored seconds.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.17 |
vdsl2PMLEverBeforeFecsCount of seconds since agent reset that there was at least
one FEC correction event for one or more bearer channels in
this line. This parameter is inhibited during UAS or SES.
Huawei defined.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.18 |
vdsl2PMLEverBeforeEsCount of seconds since agent reset that there was:
xTU-C: CRC-8 >= 1 for one or more bearer channels OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: FEBE >= 1 for one or more bearer channels OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Huawei defined.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.19 |
vdsl2PMLEverBeforeSesCount of seconds since agent reset that there was:
xTU-C: (CRC-8 summed over all bearer channels) >= 18 OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: (FEBE summed over all bearer channels) >= 18 OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1
This parameter is inhibited during UAS.
Huawei defined.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.20 |
vdsl2PMLEverBeforeLossCount of seconds since agent reset that there was LOS (or
LOS-FE for xTU-R).
Huawei defined.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.21 |
vdsl2PMLEverBeforeUasCount of seconds in Unavailability State since agent reset.
Unavailability begins at the onset of 10 contiguous severely
-errored seconds, and ends at the onset of 10 contiguous
seconds with no severely-errored seconds.
Huawei defined.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.22 |
vdsl2PMLCurr15MLofsCount of seconds in the current 15 minute interval when there was Loss of Framing.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.23 |
vdsl2PMLCurr15MLolsCount of seconds in the current 15 minute interval when there was Loss of Link.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.24 |
vdsl2PMLCurr15MLopsCount of seconds in the current 15 minute interval when there was Loss of Power.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.25 |
vdsl2PMLCurr1DayLofsCount of the number of seconds when there was Loss of Framing during the current day.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.26 |
vdsl2PMLCurr1DayLolsCount of the number of seconds when there was Loss of Link during the current day.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.27 |
vdsl2PMLCurr1DayLopsCount of the number of seconds when there was Loss of Power during the current day.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.28 |
vdsl2PMLEverBeforeLofsCount of the number of seconds when there was Loss of Framing since agent reset.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.29 |
vdsl2PMLEverBeforeLolsCount of the number of seconds when there was Loss of Link since agent reset.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.30 |
vdsl2PMLEverBeforeLopsCount of the number of seconds when there was Loss of Power since agent reset.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.31 |
vdsl2PMLCurr15MSosSuccessCount of the total number of successful SOS procedures initiated in the current 15 minute.
Unit: timesro Counter32 UNITS "times" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.32 |
vdsl2PMLCurr1DaySosSuccessCount of the total number of successful SOS procedures initiated during the current day.
Unit: timesro Counter32 UNITS "times" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.33 |
vdsl2PMLEverBeforeSosSuccessCount of the total number of successful SOS procedures initiated since agent reset.
Unit: timesro Counter32 UNITS "times" .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.34 |
vdsl2PMLCurr15MInmainpeqThis parameter is a count of the INMAINPEQi anomalies
occurring on the line during current 15 minutes.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.35 |
vdsl2PMLCurr15MInmameThis parameter is a count of the INMAME anomalies
occurring on the line during current 15 minutes.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.36 |
vdsl2PMLCurr15MInmaiatThis parameter is a count of the INMAIATi anomalies
occurring on the line during current 15 minutes.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.37 |
vdsl2PMLCurr1DayInmainpeqThis parameter is a count of the INMAINPEQi anomalies
occurring on the line during current 1 day.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.38 |
vdsl2PMLCurr1DayInmameThis parameter is a count of the INMAME anomalies
occurring on the line during current 1 day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.39 |
vdsl2PMLCurr1DayInmaiatThis parameter is a count of the INMAIATi anomalies
occurring on the line during current 1 day.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.40 |
vdsl2PMLEverBeforeInmainpeqThis parameter is a count of the INMAINPEQi anomalies
occurring on the line ever before.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.41 |
vdsl2PMLEverBeforeInmameThis parameter is a count of the INMAME anomalies
occurring on the line ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.42 |
vdsl2PMLEverBeforeInmaiatThis parameter is a count of the INMAIATi anomalies
occurring on the line ever before.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.43 |
vdsl2PMLineCurr15MStartTimeStart time of the current 15-minute performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.44 |
vdsl2PMLineCurr1DayStartTimeStart time of the current 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.45 |
vdsl2PMLCurr15MLeftrsIf retransmission is used in a given transmit direction, this parameter
is a count of the seconds with a near-end leftr defect present observed
over the 15 minutes accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.46 |
vdsl2PMLCurr15MEfbIf retransmission is used in a given transmit direction, this parameter
is a count of the number of error-free bits observed over the 15 minutes
accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.47 |
vdsl2PMLCurr15MMinEftrIf retransmission is used in a given transmit direction, this parameter
reports the minimum of the EFTR(Error-free throughput rate) observed
over the 15 minutes accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.48 |
vdsl2PMLCurr1DayLeftrsIf retransmission is used in a given transmit direction, this parameter
is a count of the seconds with a near-end leftr defect present observed
over the 24 hours accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.49 |
vdsl2PMLCurr1DayEfbIf retransmission is used in a given transmit direction, this parameter
is a count of the number of error-free bits observed over the 24 hours
accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.50 |
vdsl2PMLCurr1DayMinEftrIf retransmission is used in a given transmit direction, this parameter
reports the minimum of the EFTR(Error-free throughput rate) observed
over the 24 hours accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.51 |
vdsl2PMLEverBeforeLeftrsIf retransmission is used in a given transmit direction, this parameter
is a count of the seconds with a near-end leftr defect present observed
ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.52 |
vdsl2PMLEverBeforeEfbIf retransmission is used in a given transmit direction, this parameter
is a count of the number of error-free bits observed ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.53 |
vdsl2PMLEverBeforeMinEftrIf retransmission is used in a given transmit direction, this parameter
reports the minimum of the EFTR(Error-free throughput rate) observed
ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.54 |
hwvdsl2PMLEverBeforeSraDownShiftEventThis parameter is a count of sra downshift event occurring on the line ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.55 |
hwvdsl2PMLEverBeforeSraUpShiftEventThis parameter is a count of sra upshift event occurring on the line ever before.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.1.1.56 |
vdsl2PMLineCurrInitTableThe table vdsl2PMLineCurrInitTable contains current
initialization counters of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251) and the termination
unit. SEQUENCE OF Vdsl2PMLineCurrInitEntry .1.3.6.1.4.1.2011.6.115.1.4.1.2 |
vdsl2PMLineCurrInitEntryThe table vdsl2PMLineCurrInitTable contains current
initialization counters of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251) and the termination
unit. Vdsl2PMLineCurrInitEntry .1.3.6.1.4.1.2011.6.115.1.4.1.2.1 |
vdsl2PMLCurrInit15MTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.1 |
vdsl2PMLCurrInit15MFullInitsCount of full initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.2 |
vdsl2PMLCurrInit15MFailedFullInitsCount of failed full initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.3 |
vdsl2PMLCurrInit15MShortInitsCount of short initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.4 |
vdsl2PMLCurrInit15MFailedShortInitsCount of failed short initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.5 |
vdsl2PMLCurrInit1DayTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.6 |
vdsl2PMLCurrInit1DayFullInitsCount of full initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.7 |
vdsl2PMLCurrInit1DayFailedFullInitsCount of failed full initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.8 |
vdsl2PMLCurrInit1DayShortInitsCount of short initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.9 |
vdsl2PMLCurrInit1DayFailedShortInitsCount of failed short initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.10 |
vdsl2PMLInitEverBeforeFullInitsCount of full initializations attempted on the line
(successful and failed) since agent reset.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.11 |
vdsl2PMLInitEverBeforeFailedFullInitsCount of failed full initializations on the line since agent
reset.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.12 |
vdsl2PMLInitEverBeforeShortInitsCount of short initializations attempted on the line
(successful and failed) since agent reset.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.13 |
vdsl2PMLInitEverBeforeFailedShortInitsCount of failed short initializations on the line since agent
reset.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.14 |
vdsl2PMLineCurrInit15MStartTimeStart time of the current initializations 15-minute performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.15 |
vdsl2PMLineCurrInit1DayStartTimeStart time of the current initializations 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.2.1.16 |
vdsl2PMLineHist15MinTableThe table vdsl2PMLineHist15MinTable contains PM line history
for 15min intervals of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251), the termination unit,
and an interval number. SEQUENCE OF Vdsl2PMLineHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.1.3 |
vdsl2PMLineHist15MinEntryThe table vdsl2PMLineHist15MinTable contains PM line history
for 15min intervals of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251), the termination unit,
and an interval number. Vdsl2PMLineHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.1.3.1 |
vdsl2PMLHist15MUnitThe termination unit XTUC{1} or XTUR{2}. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.1 |
vdsl2PMLHist15MIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.2 |
vdsl2PMLHist15MMonitoredTimeTotal seconds monitored in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.3 |
vdsl2PMLHist15MFecsCount of seconds during this interval that there was at least
one FEC correction event for one or more bearer channels in
this line. This parameter is inhibited during UAS or SES.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.4 |
vdsl2PMLHist15MEsCount of seconds during this interval that there was:
xTU-C: CRC-8 >= 1 for one or more bearer channels OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: FEBE >= 1 for one or more bearer channels OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.5 |
vdsl2PMLHist15MSesCount of seconds during this interval that there was:
xTU-C: (CRC-8 summed over all bearer channels) >= 18 OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: (FEBE summed over all bearer channels) >= 18 OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.6 |
vdsl2PMLHist15MLossCount of seconds during this interval that there was LOS (or
LOS-FE for xTU-R).
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.7 |
vdsl2PMLHist15MUasCount of seconds in Unavailability State during this interval.
Unavailability begins at the onset of 10 contiguous severely
-errored seconds, and ends at the onset of 10 contiguous
seconds with no severely-errored seconds.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.8 |
vdsl2PMLHist15MValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.9 |
vdsl2PMLHist15MLofsCount of seconds in the interval when there was Loss of Framing.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.10 |
vdsl2PMLHist15MLolsCount of seconds in the interval when there was Loss of Link.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.11 |
vdsl2PMLHist15MLopsCount of seconds in the interval when there was Loss of Power.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.12 |
vdsl2PMLHist15MSosSuccessCount of the total number of successful SOS procedures initiated in the interval.
Unit: timesro Counter32 UNITS "times" .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.13 |
vdsl2PMLHist15MInmainpeqThis parameter is a count of the INMAINPEQi anomalies
occurring on the line over the 15 minutes accumulation period.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.14 |
vdsl2PMLHist15MInmameThis parameter is a count of the INMAME anomalies
occurring on the line over the 15 minutes accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.15 |
vdsl2PMLHist15MInmaiatThis parameter is a count of the INMAIATi anomalies
occurring on the line over the 15 minutes accumulation period.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.16 |
vdsl2PMLHist15MStartTimeStart time of the historical 15-minute performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.17 |
vdsl2PMLHist15MLeftrsIf retransmission is used in a given transmit direction, this parameter
is a count of the seconds with a near-end leftr defect present observed
over the 15 minutes accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.18 |
vdsl2PMLHist15MEfbIf retransmission is used in a given transmit direction, this parameter
is a count of the number of error-free bits observed over the 15 minutes
accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.19 |
vdsl2PMLHist15MMinEftrIf retransmission is used in a given transmit direction, this parameter
reports the minimum of the EFTR(Error-free throughput rate) observed
over the 15 minutes accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.3.1.20 |
vdsl2PMLineHist1DayTableThe table vdsl2PMLineHist1DayTable contains PM line history
for 24 hours intervals of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251), the termination unit
and an interval number. SEQUENCE OF Vdsl2PMLineHist1DayEntry .1.3.6.1.4.1.2011.6.115.1.4.1.4 |
vdsl2PMLineHist1DayEntryThe table vdsl2PMLineHist1DayTable contains PM line history
for 24 hours intervals of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251), the termination unit
and an interval number. Vdsl2PMLineHist1DayEntry .1.3.6.1.4.1.2011.6.115.1.4.1.4.1 |
vdsl2PMLHist1DUnitThe termination unit. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.1 |
vdsl2PMLHist1DIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.2 |
vdsl2PMLHist1DMonitoredTimeTotal seconds monitored in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.3 |
vdsl2PMLHist1DFecsCount of seconds during this interval that there was at least
one FEC correction event for one or more bearer channels in
this line. This parameter is inhibited during UAS or SES.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.4 |
vdsl2PMLHist1DEsCount of seconds during this interval that there was:
xTU-C: CRC-8 >= 1 for one or more bearer channels OR
LOS >= 1 OR SEF >= 1 OR LPR >= 1
xTU-R: FEBE >= 1 for one or more bearer channels OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.5 |
vdsl2PMLHist1DSesCount of seconds during this interval that there was:
xTU-C: (CRC-8 summed over all bearer channels) >= 18 OR
LOS >= 1 OR SEF >> 1 OR LPR >= 1
xTU-R: (FEBE summed over all bearer channels) >= 18 OR
LOS-FE >= 1 OR RDI >= 1 OR LPR-FE >= 1.
This parameter is inhibited during UAS.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.6 |
vdsl2PMLHist1DLossCount of seconds during this interval that there was LOS (or
LOS-FE for xTU-R).
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.7 |
vdsl2PMLHist1DUasCount of seconds in Unavailability State during this interval.
Unavailability begins at the onset of 10 contiguous severely
-errored seconds, and ends at the onset of 10 contiguous
seconds with no severely-errored seconds.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.8 |
vdsl2PMLHist1DValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.9 |
vdsl2PMLHist1DLofsCount of seconds during this interval that there was Loss of Framing.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.10 |
vdsl2PMLHist1DLolsCount of seconds during this interval that there was Loss of Link.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.11 |
vdsl2PMLHist1DLopsCount of seconds during this interval that there was Loss of Power.
Unit: secondsro Counter32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.12 |
vdsl2PMLHist1DSosSuccessCount of the total number of successful SOS procedures initiated during this interval.
Unit: timesro Counter32 UNITS "times" .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.13 |
vdsl2PMLHist1DInmainpeqThis parameter is a count of the INMAINPEQi anomalies
occurring on the line over the 24 hours accumulation period.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.14 |
vdsl2PMLHist1DInmameThis parameter is a count of the INMAME anomalies
occurring on the line over the 24 hours accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.15 |
vdsl2PMLHist1DInmaiatThis parameter is a count of the INMAIATi anomalies
occurring on the line over the 24 hours accumulation period.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.16 |
vdsl2PMLHist1DStartTimeStart time of the historical 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.17 |
vdsl2PMLHist1DLeftrsIf retransmission is used in a given transmit direction, this parameter
is a count of the seconds with a near-end leftr defect present observed
over the 24 hours accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.18 |
vdsl2PMLHist1DEfbIf retransmission is used in a given transmit direction, this parameter
is a count of the number of error-free bits observed over the 24 hours
accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.19 |
vdsl2PMLHist1DMinEftrIf retransmission is used in a given transmit direction, this parameter
reports the minimum of the EFTR(Error-free throughput rate) observed
over the 24 hours accumulation period.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.1.4.1.20 |
vdsl2PMLineInitHist15MinTableThe table vdsl2PMLineInitHist15MinTable contains PM line
initialization history for 15 minutes intervals of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251) and an interval number. SEQUENCE OF Vdsl2PMLineInitHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.1.5 |
vdsl2PMLineInitHist15MinEntryThe table vdsl2PMLineInitHist15MinTable contains PM line
initialization history for 15 minutes intervals of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251) and an interval number. Vdsl2PMLineInitHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.1.5.1 |
vdsl2PMLHistInit15MIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.1 |
vdsl2PMLHistInit15MMonitoredTimeTotal seconds monitored in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.2 |
vdsl2PMLHistInit15MFullInitsCount of full initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.3 |
vdsl2PMLHistInit15MFailedFullInitsCount of failed full initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.4 |
vdsl2PMLHistInit15MShortInitsCount of short initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.5 |
vdsl2PMLHistInit15MFailedShortInitsCount of failed short initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.6 |
vdsl2PMLHistInit15MValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.7 |
vdsl2PMLHistInit15MStartTimeStart time of the historical initializations 15-minute performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.5.1.8 |
vdsl2PMLineInitHist1DayTableThe table vdsl2PMLineInitHist1DayTable contains PM line
initialization history for 24 hours intervals of VDSL2 line.
The indexes of this table are an interface index where the
interface has an ifType of vdsl2(251) and an interval number. SEQUENCE OF Vdsl2PMLineInitHist1DayEntry .1.3.6.1.4.1.2011.6.115.1.4.1.6 |
vdsl2PMLineInitHist1DayEntryThe table vdsl2PMLineInitHist1DayTable contains PM line
initialization history for 24 hours intervals of VDSL2 line.
The indexes of this entry are an interface index where the
interface has an ifType of vdsl2(251) and an interval number. Vdsl2PMLineInitHist1DayEntry .1.3.6.1.4.1.2011.6.115.1.4.1.6.1 |
vdsl2PMLHistinit1DIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.1 |
vdsl2PMLHistinit1DMonitoredTimeTotal seconds monitored in this interval.ro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.2 |
vdsl2PMLHistinit1DFullInitsCount of full initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.3 |
vdsl2PMLHistinit1DFailedFullInitsCount of failed full initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.4 |
vdsl2PMLHistinit1DShortInitsCount of short initializations attempted on the line
(successful and failed) during this interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.5 |
vdsl2PMLHistinit1DFailedShortInitsCount of failed short initializations on the line during this
interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.6 |
vdsl2PMLHistinit1DValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.7 |
vdsl2PMLHistinit1DStartTimeStart time of the historical initializations 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.1.6.1.8 |
vdsl2PMChannel OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.4.2 |
vdsl2PMChCurrTableThe table vdsl2PMChCurrTable contains current Performance
Monitoring results of VDSL2 channel.
The indexes of this table are an interface index where
the interface has an ifType value which is applicable
for a DSL channel and the termination unit. SEQUENCE OF Vdsl2PMChCurrEntry .1.3.6.1.4.1.2011.6.115.1.4.2.1 |
vdsl2PMChCurrEntryThe table vdsl2PMChCurrTable contains current Performance
Monitoring results of VDSL2 channel.
The indexes of this entry are an interface index where
the interface has an ifType value which is applicable
for a DSL channel and the termination unit. Vdsl2PMChCurrEntry .1.3.6.1.4.1.2011.6.115.1.4.2.1.1 |
vdsl2PMChCurrUnitThe termination unit. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.1 |
vdsl2PMChCurrValidIntervalsValid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.2 |
vdsl2PMChCurrInvalidIntervalsInvalid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.3 |
vdsl2PMChCurr15MTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro HCPerfTimeElapsed UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.4 |
vdsl2PMChCurr15MCodingViolationsCount of CRC-8 (FEBE for xTU-R) anomalies occurring in the
channel during the interval. This parameter is inhibited
during UAS or SES. If the CRC is applied over multiple
channels, then each related CRC-8 (or FEBE) anomaly should
increment each of the counters related to the individual
channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.5 |
vdsl2PMChCurr15MCorrectedBlocksCount of FEC (FFEC for xTU-R) anomalies (corrected code words)
occurring in the channel during the interval. This parameter
is inhibited during UAS or SES. If the FEC is applied over
multiple channels, then each related FEC (or FFEC) anomaly
should increment each of the counters related to the
individual channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.6 |
vdsl2PMChCurr1DayValidIntervalsValid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.7 |
vdsl2PMChCurr1DayInvalidIntervalsInvalid intervals.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.8 |
vdsl2PMChCurr1DayTimeElapsedTotal elapsed seconds in this interval.
Unit: secondsro HCPerfTimeElapsed UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.9 |
vdsl2PMChCurr1DayCodingViolationsCount of CRC-8 (FEBE for xTU-R) anomalies occurring in the
channel during the interval. This parameter is inhibited
during UAS or SES. If the CRC is applied over multiple
channels, then each related CRC-8 (or FEBE) anomaly should
increment each of the counters related to the individual
channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.10 |
vdsl2PMChCurr1DayCorrectedBlocksCount of FEC (FFEC for xTU-R) anomalies (corrected code words)
occurring in the channel during the interval. This parameter
is inhibited during UAS or SES. If the FEC is applied over
multiple channels, then each related FEC (or FFEC) anomaly
should increment each of the counters related to the
individual channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.11 |
vdsl2PMChEverBeforeCodingViolationsCount of CRC-8 (FEBE for xTU-R) anomalies occurring in the
channel since agent reset. This parameter is inhibited
during UAS or SES. If the CRC is applied over multiple
channels, then each related CRC-8 (or FEBE) anomaly should
increment each of the counters related to the individual
channels.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.12 |
vdsl2PMChEverBeforeCorrectedBlocksCount of FEC (FFEC for xTU-R) anomalies (corrected code words)
occurring in the channel since agent reset. This parameter
is inhibited during UAS or SES. If the FEC is applied over
multiple channels, then each related FEC (or FFEC) anomaly
should increment each of the counters related to the
individual channels.
Huawei defined.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.13 |
vdsl2PMChCurr15MEncodedBlocksCount of all encoded blocks received
on this channel within the current 15 minute interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.14 |
vdsl2PMChCurr15MUncorrectableBlocksCount of all blocks received with
uncorrectable errors on this channel within the current 15 minute interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.15 |
vdsl2PMChCurr1DayEncodedBlocksCount of all encoded blocks received on this channel during the current day.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.16 |
vdsl2PMChCurr1DayUncorrectableBlocksCount of all blocks received with uncorrectable errors on this channel during the current day.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.17 |
vdsl2PMChEverBeforeEncodedBlocksCount of all encoded blocks received on this
channel since agent reset.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.18 |
vdsl2PMChEverBeforeUncorrectableBlocksCount of all blocks received with uncorrectable
errors since agent reset.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.19 |
vdsl2PMChCurr15MAtmCellsCount of Atm Cells received
within the current 15 minute interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.20 |
vdsl2PMChCurr15MPtmPacketsCount of Ptm Packet received
within the current 15 minute interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.21 |
vdsl2PMChCurr1DayAtmCellsCount of Atm Cells received
during the current day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.22 |
vdsl2PMChCurr1DayPtmPacketsCount of Ptm Packets received
during the current day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.23 |
vdsl2PMChEverBeforeAtmCellsCount of Atm Cells received
since agent reset.ro Counter64 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.24 |
vdsl2PMChEverBeforePtmPacketsCount of Ptm Packets received
since agent reset.ro Counter64 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.25 |
vdsl2PMChCurr15MRtxCWCount of units request retransmission within the current 15 minute interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.26 |
vdsl2PMChCurr15MRtxCorrectedCWCount of units corrected by retransmission within the current 15 minute interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.27 |
vdsl2PMChCurr15MRtxUncorrectedCWCount of units uncorrected by retransmission within the current 15 minute interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.28 |
vdsl2PMChCurr1DayRtxCWCount of units request retransmission during the current day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.29 |
vdsl2PMChCurr1DayRtxCorrectedCWCount of units corrected by retransmission during the current day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.30 |
vdsl2PMChCurr1DayRtxUncorrectedCWCount of units uncorrected by retransmission during the current day.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.31 |
vdsl2PMChEverBeforeRtxCWCount of units request retransmission since agent reset.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.32 |
vdsl2PMChEverBeforeRtxCorrectedCWCount of units corrected by retransmission since agent reset.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.33 |
vdsl2PMChEverBeforeRtxUncorrectedCWCount of units uncorrected by retransmission since agent reset.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.34 |
vdsl2PMChCurr15MStartTimeStart time of the channel current 15-minute performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.35 |
vdsl2PMChCurr1DayStartTimeStart time of the channel current 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.1.1.36 |
vdsl2PMChHist15MinTableThe table vdsl2PMChHist15MinTable contains PM channel history
for 15min intervals of VDSL2 channel.
The indexes of this table are an interface index where
the interface has an ifType value which is applicable
for a DSL channel, the termination unit and the
interval number. SEQUENCE OF Vdsl2PMChHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.2.2 |
vdsl2PMChHist15MinEntryThe table vdsl2PMChHist15MinTable contains PM channel history
for 15min intervals of VDSL2 channel.
The indexes of this entry are an interface index where
the interface has an ifType value which is applicable
for a DSL channel, the termination unit and the
interval number. Vdsl2PMChHist15MinEntry .1.3.6.1.4.1.2011.6.115.1.4.2.2.1 |
vdsl2PMChHist15MUnitThe termination unit. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.1 |
vdsl2PMChHist15MIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.2 |
vdsl2PMChHist15MMonitoredTimeTotal seconds monitored in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.3 |
vdsl2PMChHist15MCodingViolationsCount of CRC-8 (FEBE for xTU-R) anomalies occurring in the
channel during the interval. This parameter is inhibited
during UAS or SES. If the CRC is applied over multiple
channels, then each related CRC-8 (or FEBE) anomaly should
increment each of the counters related to the individual
channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.4 |
vdsl2PMChHist15MCorrectedBlocksCount of FEC (FFEC for xTU-R) anomalies (corrected code words)
occurring in the channel during the interval. This parameter
is inhibited during UAS or SES. If the FEC is applied over
multiple channels, then each related FEC (or FFEC) anomaly
should increment each of the counters related to the
individual channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.5 |
vdsl2PMChHist15MValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.6 |
vdsl2PMChHist15MEncodedBlocksCount of all encoded blocks received on this
channel during the interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.7 |
vdsl2PMChHist15MUncorrectableBlocksCount of all blocks received with uncorrectable
errors on this channel during the interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.8 |
vdsl2PMChHist15MAtmCellsCount of Atm Cells received
on this channel during the interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.9 |
vdsl2PMChHist15MPtmPacketsCount of Ptm Packets received
on this channel during the interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.10 |
vdsl2PMChHist15MRtxCWCount of units request retransmission during the
serval 15 minute interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.11 |
vdsl2PMChHist15MRtxCorrectedCWCount of units corrected by retransmission during the
serval 15 minute interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.12 |
vdsl2PMChHist15MRtxUncorrectedCWCount of units uncorrected by retransmission during
the serval 15 minute interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.13 |
vdsl2PMChHist15MStartTimeStart time of the channel historical 15-minute performance
statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.2.1.14 |
vdsl2PMChHist1DTableThe table vdsl2PMChHist1DTable contains PM channel history
for 1 day intervals of VDSL2. The indexes of this table are
an interface index where
the interface has an ifType value which is applicable
for a DSL channel, the termination unit and the
interval number. SEQUENCE OF Vdsl2PMChHist1DEntry .1.3.6.1.4.1.2011.6.115.1.4.2.3 |
vdsl2PMChHist1DEntryThe table vdsl2PMChHist1DTable contains PM channel history
for 1 day intervals of VDSL2.
The indexes of this entry are an interface index where
the interface has an ifType value which is applicable
for a DSL channel, the termination unit and the
interval number. Vdsl2PMChHist1DEntry .1.3.6.1.4.1.2011.6.115.1.4.2.3.1 |
vdsl2PMChHist1DUnitThe termination unit. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.1 |
vdsl2PMChHist1DIntervalThe interval number. Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.2 |
vdsl2PMChHist1DMonitoredTimeTotal seconds monitored in this interval.
Unit: secondsro Unsigned32 UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.3 |
vdsl2PMChHist1DCodingViolationsCount of CRC-8 (FEBE for xTU-R) anomalies occurring in the
channel during the interval. This parameter is inhibited
during UAS or SES. If the CRC is applied over multiple
channels, then each related CRC-8 (or FEBE) anomaly should
increment each of the counters related to the individual
channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.4 |
vdsl2PMChHist1DCorrectedBlocksCount of FEC (FFEC for xTU-R) anomalies (corrected code words)
occurring in the channel during the interval. This parameter
is inhibited during UAS or SES. If the FEC is applied over
multiple channels, then each related FEC (or FFEC) anomaly
should increment each of the counters related to the
individual channels.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.5 |
vdsl2PMChHist1DValidIntervalThis variable indicates if the data for this interval is
valid.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.6 |
vdsl2PMChHist1DEncodedBlocksCount of all encoded blocks received on this
channel during the interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.7 |
vdsl2PMChHist1DUncorrectableBlocksCount of all blocks received with uncorrectable
errors on this channel during the interval.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.8 |
vdsl2PMChHist1DAtmCellsCount of Atm Cells received
on this channel during the interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.9 |
vdsl2PMChHist1DPtmPacketsCount of Ptm Packets received
on this channel during the interval.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.10 |
vdsl2PMChHist1DRtxCWCount of units request retransmission within the
serval one day interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.11 |
vdsl2PMChHist1DRtxCorrectedCWCount of units corrected by retransmission during the
serval one day interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.12 |
vdsl2PMChHist1DRtxUncorrectedCWCount of units uncorrected by retransmission during
the serval one day interval of history.ro Counter32 .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.13 |
vdsl2PMChHist1DStartTimeStart time of the channel historical 1-day performance statistics.ro DateAndTime (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.4.2.3.1.14 |
vdsl2PMChChipStatTableThe table vdsl2PMChChipStatTable contains packets and CRC errors on chipset of
upstream and downstream of VDSL2 channel.
The indexes of this table are an interface index where
the interface has an ifType value which is applicable
for a DSL channel and the termination unit. SEQUENCE OF Vdsl2PMChChipStatEntry .1.3.6.1.4.1.2011.6.115.1.4.2.4 |
vdsl2PMChChipStatEntryThe table vdsl2PMChChipStatTable contains packets and CRC errors on chipset of
upstream and downstream of VDSL2 channel.
The indexes of this entry are an interface index where
the interface has an ifType value which is applicable
for a DSL channel and the termination unit. Vdsl2PMChChipStatEntry .1.3.6.1.4.1.2011.6.115.1.4.2.4.1 |
vdsl2PMChChipstatUnitThe termination unit. Vdsl2Unit (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.1 |
vdsl2PMChPktsDsThe number of downstream packets.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.2 |
vdsl2PMChPktsUsThe number of upstream packets.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.3 |
vdsl2PMChCrcErrsDsThe number of downstream CRC errors.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.4 |
vdsl2PMChCrcErrsUsThe number of upstream CRC errors.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.5 |
vdsl2PMChStatAdminStatusClear the number of packets transmitted and received,
CRC errors upstream and downstream.
Options:
1. reset(1) - reset statistic datarw Enumeration .1.3.6.1.4.1.2011.6.115.1.4.2.4.1.6 |
vdsl2Profile OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.5 |
vdsl2ProfileLine OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.5.1 |
vdsl2LineConfTemplateTableThe table vdsl2LineConfTemplateTable contains VDSL2 line
configuration template. The index of this table is
vdsl2LConfTempTemplateName.
A default template with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2LineConfTemplateEntry .1.3.6.1.4.1.2011.6.115.1.5.1.1 |
vdsl2LineConfTemplateEntryThe table vdsl2LineConfTemplateTable contains VDSL2 line
configuration template.
The index of this entry is vdsl2LConfTempTemplateName.
A default template with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2LineConfTemplateEntry .1.3.6.1.4.1.2011.6.115.1.5.1.1.1 |
vdsl2LConfTempTemplateNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.1 |
vdsl2LConfTempLineProfileThe value of this object identifies the row in the VDSL2 Line
Configuration Profile Table, (Vdsl2LineConfProfileTable),
which applies for this VDSL2 line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.2 |
vdsl2LConfTempChan1ConfProfileThe value of this object identifies the row in the VDSL2
Channel Configuration Profile Table,
(Vdsl2ChanConfProfileTable) that applies to VDSL2 bearer
channel #1. The channel profile name specified here must
match the name of an existing row in the
vdsl2ChConfProfileTable table.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.3 |
vdsl2LConfTempChan1RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #1 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
Vdsl2ConfTemplateChan1RaRatioDs is the ratio of excess data
rate to be assigned to all other bearer channels on Downstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.4 |
vdsl2LConfTempChan1RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #1 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the
100 - Vdsl2ConfTemplateChan1RaRatioUs is the ratio of excess
data rate to be assigned to all other bearer channels on
Upstream direction. The sum of rate adaptation ratios over
all bearers on the same direction shall be equal to 100 %.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.5 |
vdsl2LConfTempChan2ConfProfileThe value of this object identifies the row in the VDSL2
Channel Configuration Profile Table,
(Vdsl2ChanConfProfileTable) that applies to VDSL2 bearer
channel #2. If the channel is unused, then the object is set
to a zero length string.
This object may be set to a zero length string only if
vdsl2LConfTempChan3ConfProfile contains a zero length
string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.6 |
vdsl2LConfTempChan2RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #2 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the
100 - Vdsl2ConfTemplateChan2RaRatioDs is the ratio of excess
data rate to be assigned to all other bearer channels on
Downstream direction. The sum of rate adaptation ratios
over all bearers on the same direction shall be equal to
100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.7 |
vdsl2LConfTempChan2RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #2 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the
100 - Vdsl2ConfTemplateChan2RaRatioUs is the ratio of excess
data rate to be assigned to all other bearer channels on
Upstream direction. The sum of rate adaptation ratios over
all bearers on the same direction shall be equal to 100 %.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.8 |
vdsl2LConfTempChan3ConfProfileThe value of this object identifies the row in the VDSL2
Channel Configuration Profile Table,
(Vdsl2ChanConfProfileTable) that applies to VDSL2 bearer
channel #3. If the channel is unused, then the object is set
to a zero length string.
This object may be set to a zero length string only if
vdsl2LConfTempChan4ConfProfile contains a zero length
string.
This object may be set to a non-zero length string only if
vdsl2LConfTempChan2ConfProfile contains a non-zero length
string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.9 |
vdsl2LConfTempChan3RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #3 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
Vdsl2ConfTemplateChan3RaRatioDs is the ratio of excess data
rate to be assigned to all other bearer channels on Downstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.10 |
vdsl2LConfTempChan3RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #3 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the
100 - Vdsl2ConfTemplateChan3RaRatioUs is the ratio of excess
data rate to be assigned to all other bearer channels on
Upstream direction. The sum of rate adaptation ratios over
all bearers on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.11 |
vdsl2LConfTempChan4ConfProfileThe value of this object identifies the row in the VDSL2
Channel Configuration Profile Table
(Vdsl2ChanConfProfileTableDs) that applies to VDSL2 bearer
channel #4. If the channel is unused, then the object is set
to a zero length string.
This object may be set to a non-zero length string only if
vdsl2LConfTempChan3ConfProfile contains a non-zero length
string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.12 |
vdsl2LConfTempChan4RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #4 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
vdsl2LConfTempChan4RaRatioDs is the ratio of
excess data rate to be assigned to all other bearer channels.
The sum of rate adaptation ratios over all bearers on the same
direction shall sum to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.13 |
vdsl2LConfTempChan4RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #4 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over
all bearer channels. Also, the 100 -
vdsl2LConfTempChan4RaRatioUs is the
ratio of excess data rate to be assigned to all other bearer
channels. The sum of rate adaptation ratios over all bearers
on the same direction shall sum to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.14 |
vdsl2LConfTempRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.1.1.1.15 |
vdsl2LineConfProfTableThe table vdsl2LineConfProfTable contains VDSL2 line profile
configuration. The index of this table is vdsl2LConfProfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2LineConfProfEntry .1.3.6.1.4.1.2011.6.115.1.5.1.2 |
vdsl2LineConfProfEntryThe table vdsl2LineConfProfTable contains VDSL2 line profile
configuration. The index of this entry is vdsl2LConfProfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2LineConfProfEntry .1.3.6.1.4.1.2011.6.115.1.5.1.2.1 |
vdsl2LConfProfProfileNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.1 |
vdsl2LConfProfScMaskDsSub-carriers mask. A bitmap of 512 bits that allows masking
up to 512 downstream sub-carriers, depending on NSCds. If bit
i (0 <= i < NSCds) is set to '1', the respective
downstream sub-carrier i is masked, and if set to '0', the
respective sub-carrier is unmasked. Note that there should
always be unmasked sub-carriers (i.e., the object cannot be
all 1's). Also note that if NSCds < 512, all bits
i (NSCds i <= 512) should be set to '1'.rw Vdsl2ScMaskDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.2 |
vdsl2LConfProfScMaskUsSub-carriers mask. A bitmap of 64 bits that allows masking
up to 64 downstream sub-carriers, depending on NSCds. If
bit i (0 <= i < NSCus) is set to '1', the respective
upstream sub-carrier i is masked, and if set to '0', the
respective sub-carrier is unmasked. Note that there
should always be unmasked sub-carriers (i.e., the object
cannot be all 1's). Also note that if NSCus <
64, all bits i (NSCus < i <= 64) should be set to '1'.rw Vdsl2ScMaskUs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.3 |
vdsl2LConfProfRfiBandsThe subset of PSD mask breakpoints that shall be
used to notch an RFI band.
It is a string of bands consist of begin tone index
and end tone index.
for example :0-10,20-50,100-4095
It can contain as most as 16 bands.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.4 |
vdsl2LConfProfVDSLtoneblackoutThe subset of subcarriermask that shall be
used to mask the subcarriers.
It is a string of bands consist of begin tone index
and end tone index.
for example :0-10,20-50,100-4095
It can contain as most as 8 bands.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.5 |
vdsl2LConfProfRaModeDsThe mode of operation of a rate-adaptive xTU-C in the transmit
direction.
Options:
1. manual(1) - No Rate-Adaptation. The initialization
process attempts to synchronize to a
specified rate
2. rainit(2) - Rate-Adaptation during initialization process
only, which attempts to synchronize to a rate
between minimum and maximum specified values
3. dynamic(3) - Rate-Adaptation during show time
4. dynamicwithsos(4) - Rate-Adaptation during show time by SOS and SRA.
In this mode, enabling of SOS and SRA is mandatory.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.6 |
vdsl2LConfProfRaModeUsThe mode of operation of a rate-adaptive xTU-R in the transmit
direction.
Options:
1. manual(1) - No Rate-Adaptation. The initialization
process attempts to synchronize to a
specified rate
2. rainit(2) - Rate-Adaptation during initialization process
only, which attempts to synchronize to a rate
between minimum and maximum specified values
3. dynamic(3) - Rate-Adaptation during show time
4. dynamicwithsos(4) - Rate-Adaptation during show time by SOS and SRA.
In this mode, enabling of SOS and SRA is mandatory.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.7 |
vdsl2LConfProfRaUsNrmDsThe Downstream Up-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. If the downstream
noise margin is above this value and stays above it for
more than the time specified by the Vdsl2LineConfRaUsTimeDs,
the xTU-R shall attempt to increase the downstream net data
rate. The Downstream Up-shift Noise Margin ranges from 0 to
310 units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.8 |
vdsl2LConfProfRaUsNrmUsThe Upstream Up-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. If the upstream
noise margin is above this value and stays above it for more
than the time specified by the Vdsl2LineConfRaUsTimeUs, the
xTU-C shall attempt to increase the upstream net data rate.
The Upstream Up-shift Noise Margin ranges from 0 to 310 units
of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.9 |
vdsl2LConfProfRaUsTimeDsThe Downstream Up-Shift Time Interval, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. The interval of
time that the downstream noise margin should stay above the
Downstream Up-shift Noise Margin before the xTU-R shall
attempt to increase the downstream net data rate. The time
interval ranges from 0 to 16383 seconds.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.10 |
vdsl2LConfProfRaUsTimeUsThe Upstream Up-Shift Time Interval, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. The interval of
time the upstream noise margin should stay above the
Upstream Up-shift Noise Margin before the xTU-C shall
attempt to increase the upstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.11 |
vdsl2LConfProfRaDsNrmsDsThe Downstream Down-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. If the downstream
noise margin is below this value and stays below that for more
than the time specified by the Vdsl2LineConfRaDsTimeDs, the
xTU-R shall attempt to decrease the downstream net data rate.
The Downstream Down-shift Noise Margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.12 |
vdsl2LConfProfRaDsNrmsUsThe Upstream Downshift Noise Margin value, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. If the upstream
noise margin is below this value and stays below that for more
than the time specified by the Vdsl2LineConfRaDsTimeUs, the
xTU-C shall attempt to decrease the upstream net data rate.
The Upstream Down-shift Noise Margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.13 |
vdsl2LConfProfRaDsTimeDsThe Downstream Downshift Time Interval, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. The interval of
time the downstream noise margin should stay below the
Downstream Down-shift Noise Margin before the xTU-R shall
attempt to decrease the downstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.14 |
vdsl2LConfProfRaDsTimeUsThe Upstream Down-Shift Time Interval, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. The interval of
time the upstream noise margin should stay below the Upstream
Down-shift Noise Margin before the xTU-C shall attempt to
decrease the upstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.15 |
vdsl2LConfProfTargetSnrmDsThe minimum Noise Margin the xTU-R receiver shall achieve,
relative to the BER requirement for each of the downstream
bearer channels, to successfully complete initialization.
The target noise margin ranges from 0 to 310 units of 0.1 dB
(Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.16 |
vdsl2LConfProfTargetSnrmUsThe minimum Noise Margin the xTU-C receiver shall achieve,
relative to the BER requirement for each of the upstream
bearer channels, to successfully complete initialization.
The target noise margin ranges from 0 to 310 units of 0.1 dB
(Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.17 |
vdsl2LConfProfMaxSnrmDsThe maximum Noise Margin the xTU-R receiver shall try to
sustain. If the Noise Margin is above this level, the xTU-R
shall request that the xTU-C reduce the xTU-C transmit power
to get a noise margin below this limit (if this functionality
is supported). The maximum noise margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB). A value of
all 1's means that there is no maximum.
Unit: 0.1 dBrw Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.18 |
vdsl2LConfProfMaxSnrmUsThe maximum Noise Margin the xTU-C receiver shall try to
sustain. If the Noise Margin is above this level, the xTU-C
shall request that the xTU-R reduce the xTU-R transmit power
to get a noise margin below this limit (if this functionality
is supported). The maximum noise margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB). A value of
all 1's means that there is no maximum.
Unit: 0.1 dBrw Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.19 |
vdsl2LConfProfMinSnrmDsThe minimum Noise Margin the xTU-R receiver shall tolerate.
If the noise margin falls below this level, the xTU-R shall
request that the xTU-C increase the xTU-C transmit power.
If an increase to xTU-C transmit power is not possible, a
loss-of-margin (LOM) defect occurs, the xTU-R shall fail and
attempt to reinitialize and the NMS shall be notified. The
minimum noise margin ranges from 0 to 310 units of
0.1 dB (Physical values are 0 to 31 dB). A value of 0 means
that there is no minimum.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.20 |
vdsl2LConfProfMinSnrmUsThe minimum Noise Margin the xTU-C receiver shall tolerate.
If the noise margin falls below this level, the xTU-C shall
request that the xTU-R increase the xTU-R transmit power.
If an increase of xTU-R transmit power is not possible, a
loss-of-margin (LOM) defect occurs, the xTU-C shall fail and
attempt to re-initialize and the NMS shall be notified. The
minimum noise margin ranges from 0 to 310 units of
0.1 dB (Physical values are 0 to 31 dB). A value of 0 means
that there is no minimum.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.21 |
vdsl2LConfProfMsgMinUsMinimum Overhead Rate Upstream. Defines the minimum rate of
the message-based overhead that shall be maintained by the xTU
in upstream direction. Expressed in bits per second and
ranges from 4000 to 63000 bps.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.22 |
vdsl2LConfProfMsgMinDsMinimum Overhead Rate Downstream. Defines the minimum rate of
the message-based overhead that shall be maintained by the xTU
in downstream direction. Expressed in bits per second and
ranges from 4000 to 63000 bps.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.23 |
vdsl2LConfProfXtuTransSysEnaxTU Transmission System Enabling (XTSE). A list of the
different coding types enabled in this profile. It is coded
in a bit-map representation with 1 or more bits set. A bit
set to '1' means that the XTUs may apply the respective
coding for the VDSL line. A bit set to '0' means that
the XTUs cannot apply the respective coding for the VDSL
line. All 'reserved' bits should be set to '0'.rw Vdsl2TransmissionModeType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.24 |
vdsl2LConfProfPmModePower management state Enabling. Defines the power states the
xTU-C or xTU-R may autonomously transition to on this line.
Options:
1. allowTransitionsToIdle (0)
2. allowTransitionsToLowPower (1)
A bit with a '1' value means
that the xTU is allowed to transit into the respective state
and a '0' value means that the xTU is not allowed
to transit into the respective state.rw Vdsl2LConfProfPmMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.25 |
vdsl2LConfProfL0TimeThis minimum time (in seconds) between an Exit from the L2
state and the next Entry into the L2 state.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.26 |
vdsl2LConfProfL2TimeThis minimum time (in seconds) between an Entry into the
L2 state and the first Power Trim in the L2 state and between
two consecutive Power Trims in the L2 State.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.27 |
vdsl2LConfProfL2AtprThe maximum aggregate transmit power reduction (in dB) that
can be performed at transition of L0 to L2 state or through a
single Power Trim in the L2 state.
It ranges from 0 dB to 31 dB.
Unit: dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.28 |
vdsl2LConfProfL2AtprtThe total maximum aggregate transmit power reduction
(in dB) that can be performed in an L2 state. This is the
sum of all reductions of L2 Request (i.e., at transition of
L0 to L2 state) and Power Trims.
Unit: dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.29 |
vdsl2LConfProfDpboEpsdThis parameter defines the PSD mask that is assumed to be permitted at the exchange.
This parameter shall use the same format as PSDMASKds.The maximum number of breakpoints
for DPBOEPSD is 16.
This is a string of 16 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 6-8 - Same, for a 3rd breakpoint.
This architecture continues until octets 45-47, which are
associated with a 16th breakpoint.
Each subcarrier index is an unsigned number in the range 1 and
NSCds. Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 16, all remaining
octets are set to the value 0xff.rw Vdsl2DpboEpsd (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.30 |
vdsl2LConfProfDpboEselThis configuration parameter defines the assumed electrical length of
cables (E-side cables) connecting exchange based DSL services to a remote
flexibility point (cabinet), that hosts the xTU-C that is subject to
spectrally shaped downstream power back-off depending on this length.
For this parameter the electrical length is defined as the loss (in dB)
of an equivalent length of hypothetical cable at a reference frequency
defined by the network operator or in spectrum management regulations.
DPBOESEL shall be coded as an unsigned integer representing an electrical
length from 0 dB (coded as 0) to 255.5 dB (coded as 511) in steps of 0.5 dB.
All values in the range are valid.If DPBOESEL is set to zero, the DPBO in
this section shall be disabled.
Unit: 0.5dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.31 |
vdsl2LConfProfDpboEscmThis configuration parameter defines a cable model in terms of three scalars
DPBOESCMA, DPBOESCMB and DPBOESCMC that shall be used to describe the frequency
dependent loss of E-side cables.Parameters DPBOESCMA, DPBOESCMB, DPBOESCMC shall be
coded as unsigned integers representing a scalar value from -1 (coded as 0) to 1.5
(coded as 640) in step of 1/256. All values in the range are valid.
Octets 0+1 DPBOESCMA
Octets 2+3 DPBOESCMB
Octets 4+5 DPBOESCMCrw Vdsl2DpboEscm (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.32 |
vdsl2LConfProfDpboMusDPBOMUS defines the assumed Minimum Usable receive Signal PSD (in dBm/Hz) for
exchange based services, used to modify parameter DPBOFMAX defined below. It
shall be coded as an unsigned integer representing a PSD level from 0 dBm/Hz
(coded as 0) to -127.5 dBm/Hz (coded as 255) in steps of 0.5 dBm/Hz.
All values in the range are valid.
Unit: -0.5dBm/Hzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.33 |
vdsl2LConfProfDpboFminDPBOFMIN defines the minimum frequency from which the DPBO shall be applied.
It shall be coded as a 16 bits unsigned integer representing a frequency in
multiple of 4.3125 KHz. The range of valid values is from 0 kHz (coded as 0)
to 8832 kHz (coded as 2048).
Unit: 4.3125 KHzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.34 |
vdsl2LConfProfDpboFmaxDPBOFMAX defines the maximum frequency at which DPBO may be applied. It shall be
coded as a 16 bits unsigned integer representing a frequency in multiple of 4.3125 KHz.
The range of valid values is from 138 kHz (coded as 32) to 29997.75 kHz (coded as 6956).
Unit: 4.3125 KHzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.35 |
vdsl2LConfProfUpboPsdBandThis parameter defines the UPBO reference PSD used to compute the upstream power back-off
for each upstream band except US0. A UPBOPSD defined for each band shall consist of two
parameters [a, b]. Parameter a shall be coded as an unsigned 12-bit number from 40 dBm/Hz
(coded as 0) to 80.95 dBm/Hz (coded as 4095) in steps of 0.01 dBm/Hz; and b shall be coded
as an unsigned 12 bit number from 0 (coded as 0) to 40.95 dBm/Hz (coded as 4095) in steps
of 0.01 dBm/Hz. The UPBO reference PSD at the frequency f expressed in MHz shall be equal
to '-a-b(SQRT(f))'. The set of parameter values a = 40 dBm/Hz, b = 0 dBm/Hz is a special configuration
to disable UPBO in the respective upstream band.
Octets 0+1 - a[0]
Octets 2+3 - b[0]
Octets 4+5 - a[1]
Octets 6+7 - b[1]
Octets 8+9 - a[2]
Octets 10+11 - b[2]
Octets 12+13 - a[3]
Octets 14+15 - b[3]rw Vdsl2UpboPsdBand (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.36 |
vdsl2LConfProfUpboKlThis parameter defines the electrical loop length expressed in dB at 1MHz, kl0, configured by
the CO-MIB. The value shall be coded as an unsigned 16 bit number in the range 0 (coded as 0)
to 128 dB (coded as 1280) in steps of 0.1 dB.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.37 |
vdsl2LConfProfUpboKlfThis parameter is a flag that forces the VTU-R to use the electrical loop length of the CO-MIB
(UPBOKL) to compute the UPBO. The value shall be forced if the flag is set to 1. Otherwise, the
electrical loop length shall be autonomously selected by the VTU-O.rw Vdsl2UpboKlf (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.38 |
vdsl2LConfProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
templates.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.39 |
vdsl2LConfProfReferenceClockThis object configures the clock reference for the ATU-C
in a VDSL Line.rw Vdsl2LineClockReferenceType .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65534 |
vdsl2LConfProfBitSwapDsEnables or disables the bit swap downstream of a line.rw Vdsl2BitSwap (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65535 |
vdsl2LConfProfBitSwapUsEnables or disables the bit swap upstream of a line.rw Vdsl2BitSwap (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65536 |
vdsl2LConfProfUpboBoostModeOptions:
1. disable(1) - The Equalized FEXT UPBO method is not supported
2. enable(2) - The Equalized FEXT UPBO method is supportedrw Vdsl2UpboBoostMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65537 |
vdsl2LConfProfDpboEselMinDPBOESELMIN in dB is the minimum of all main cable losses for the KVz supplied when using
the SOL model (expansion of a KVz and VDSL2 provision of additional KVz areas from this KVz
using cross-cables to additional KVz), including the KVz at the MSAN site. This value must
be adjustable as the minimum requirement via the SNMP interface in the configuration profile
for each VDSL2 port, and is set individually for each MSAN site and usage. As an option,
As an option, adjustment can be done for each MSAN or line card, thus taking effect for
entire port groups. It is used only for determining the MUF.
Unit: 0.5 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65538 |
vdsl2LConfProfUpboKl0RefBandOctets 0+1 - length[1]
Octets 2+3 - length[2]
Octets 4+5 - length[3]
Octets 6+7 - length[4]rw Vdsl2UpboKl0RefBand (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65539 |
vdsl2LConfProfSosTimeDsThe parameter is used in the specification of the receiver initiated SOS.
If the value of this parameter is not zero, the standard SOS triggering criteria are enabled,
and the value corresponds with duration of the time window used in the standard SOS triggering
criteria in the downstream direction.The special value zero, indicates that the standard SOS
triggering criteria are disabled. The valid range of non-zero values is from 64 ms to (255*64) ms
in steps of 64ms.
Unit: 64msrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65540 |
vdsl2LConfProfSosTimeUsThe parameter is used in the specification of the receiver initiated SOS.
If the value of this parameter is not zero, the standard SOS triggering criteria are enabled,
and the value corresponds with duration of the time window used in the standard SOS triggering
criteria in the upstream direction.The special value zero, indicates that the standard SOS
triggering criteria are disabled. The valid range of non-zero values is from 64 ms to (255*64) ms
in steps of 64ms.
Unit: 64msrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65541 |
vdsl2LConfProfSosNtonesDsThis parameter is defined as the minimum percentage of tones in the downstream MEDLEY SET
that must be degraded in order to arm the first sub-condition of the standard SOS triggering
criteria in the downstream direction. The parameter SOS-NTONES-ds is defined as a percentage of tones.
The valid range of values is from 1 to 100 in steps of 1. A special value of 0 indicates that this
parameter is not used in the decision criteria.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65542 |
vdsl2LConfProfSosNtonesUsThis parameter is defined as the minimum percentage of tones in the upstream MEDLEY SET
that must be degraded in order to arm the first sub-condition of the standard SOS triggering
criteria in the downstream direction. The parameter SOS-NTONES-ds is defined as a percentage of tones.
The valid range of values is from 1 to 100 in steps of 1. A special value of 0 indicates that this
parameter is not used in the decision criteria.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65543 |
vdsl2LConfProfSosCrcDsThis parameter is defined as the minimum number of normalized CRC anomalies received in SOS-TIME-ds
seconds in order to arm the second sub-condition of the standard SOS triggering criteria in the
downstream direction. The valid range of SOS-CRC values is 0.02 to 65535*0.02, in steps of 0.02.
Unit: 0.02rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65544 |
vdsl2LConfProfSosCrcUsThis parameter is defined as the minimum number of normalized CRC anomalies received in SOS-TIME-ds
seconds in order to arm the second sub-condition of the standard SOS triggering criteria in the
upstream direction. The valid range of SOS-CRC values is 0.02 to 65535*0.02, in steps of 0.02.
Unit: 0.02rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65545 |
vdsl2LConfProfMaxSosDsThis parameter is used in G.993.2 de-activation. If the number of successful SOS procedures in the
downstream direction performed within a 120-second interval exceeds MAX-SOS-ds, the modem shall transition
to the L3 state. The valid range of values is 1 to 15. A special value of 0 indicates that there is no
limit on the maximum allowed number of SOS recoveries within this time interval.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65546 |
vdsl2LConfProfMaxSosUsThis parameter is used in G.993.2 de-activation. If the number of successful SOS procedures in the
upstream direction performed within a 120-second interval exceeds MAX-SOS-ds, the modem shall transition
to the L3 state. The valid range of values is 1 to 15. A special value of 0 indicates that there is no
limit on the maximum allowed number of SOS recoveries within this time interval.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65547 |
vdsl2LConfProfSnrmoffsetRocDsThe parameter is defined as the SNR Margin offset for the ROC channel in the downstream direction.
The parameter is used in the specification of the Channel Initialization Policy (see 12.3.7.1/G.993.2).
The valid range of SNR margin offset values is from 0 to (310*0.1) dB with 0.1 dB steps.
Unit: 0.1dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65548 |
vdsl2LConfProfSnrmoffsetRocUsThe parameter is defined as the SNR Margin offset for the ROC channel in the upstream direction.
The parameter is used in the specification of the Channel Initialization Policy (see 12.3.7.1/G.993.2).
The valid range of SNR margin offset values is from 0 to (310*0.1) dB with 0.1 dB steps.
Unit: 0.1dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65549 |
vdsl2LConfProfInpminRocDsThis parameter contains the minimum impulse noise protection to apply on the ROC in the downstream direction.
The minimum impulse noise protection is an integer ranging from 0 to 16.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65550 |
vdsl2LConfProfInpminRocUsThis parameter contains the minimum impulse noise protection to apply on the robust ROC in the upstream direction.
The minimum impulse noise protection is an integer ranging from 0 to 16.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65551 |
vdsl2LConfProfInmIatoDsThe parameter of downstream impulse noise monitoring inter arrival time offset.
This is the Inter Arrival Time Offset that the xTU receiver shall use to determine
in which bin of the Inter Arrival Time histogram the IAT is reported.
The valid values for INMIATO ranges from 3 to 511 DMT symbols in steps of 1 DMT symbol.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65552 |
vdsl2LConfProfInmIatsDsThe parameter of downstream impulse noise monitoring inter arrival time step.
This is the Inter Arrival Time Step that the xTU receiver shall use to determine
in which bin of the Inter Arrival Time histogram the IAT is reported.
The valid values for INMIATS ranges from 0 to 7 in steps of 1.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65553 |
vdsl2LConfProfInmCcDsThe parameter of Downstream impulse noise monitoring cluster continuation value.
This is the Cluster Continuation value that the xTU receiver shall use
in the cluster indication process described in the relevant ITU-T Recommendation.
The valid values for INMCC range from 0 to 64 DMT symbols in steps of 1 DMT symbol.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65554 |
vdsl2LConfProfInmInpeqModeDsThe parameter of Downstream impulse noise monitoring equivalent impulse noise protect mode.
This is the INM Equivalent INP Mode that the xTU receiver shall use in the computation of the Equivalent INP,
as defined in the relevant ITU-T Recommendation. The valid values for INM_INPEQ_MODE are 0, 1, 2, 3, and 4.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65555 |
vdsl2LConfProfInmIatoUsThe parameter of upstream impulse noise monitoring inter arrival time offset.
This is the Inter Arrival Time Offset that the xTU receiver shall use to determine
in which bin of the Inter Arrival Time histogram the IAT is reported.
The valid values for INMIATO ranges from 3 to 511 DMT symbols in steps of 1 DMT symbol.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65556 |
vdsl2LConfProfInmIatsUsThe parameter of upstream impulse noise monitoring inter arrival time step.
This is the Inter Arrival Time Step that the xTU receiver shall use to determine
in which bin of the Inter Arrival Time histogram the IAT is reported.
The valid values for INMIATS ranges from 0 to 7 in steps of 1.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65557 |
vdsl2LConfProfInmCcUsThe parameter of upstream impulse noise monitoring cluster continuation value.
This is the Cluster Continuation value that the xTU receiver shall use
in the cluster indication process described in the relevant ITU-T Recommendation.
The valid values for INMCC range from 0 to 64 DMT symbols in steps of 1 DMT symbol.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65558 |
vdsl2LConfProfInmInpeqModeUsThe parameter of upstream impulse noise monitoring equivalent impulse noise protect mode.
This is the INM Equivalent INP Mode that the xTU receiver shall use in the computation of the Equivalent INP,
as defined in the relevant ITU-T Recommendation. The valid values for INM_INPEQ_MODE are 0, 1, 2, 3, and 4.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65559 |
vdsl2LConfProfL3TimeThis minimum time (in seconds) between an Entry into the
L3 state and the L0 or L2 state.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65560 |
vdsl2LConfProfRtxModeDsThe mode of operation of G.998.4 retransmission in downstream direction.
Options:
1. forbidden(0) - G.998.4 retransmission not allowed.
2. preferred(1) - G.998.4 retransmission is preferred.
3. forced(2) - Force the use of the G.998.4 retransmission.
4. testmode(3) - Force the use of the G.998.4 retransmission in test mode.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65561 |
vdsl2LConfProfRtxModeUsThe mode of operation of G.998.4 retransmission in upstream direction.
Options:
1. forbidden(0) - G.998.4 retransmission not allowed.
2. preferred(1) - G.998.4 retransmission is preferred.
3. forced(2) - Force the use of the G.998.4 retransmission.
4. testmode(3) - Force the use of the G.998.4 retransmission in test mode.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65562 |
vdsl2LConfProfLeftrThreshDsIf retransmission is used in downstream direction, this parameter specifies the
threshold for declaring a near-end leftr defect. The value is coded as a fraction of the
NDR with valid range from 0.01 to 0.99 with increments of 0.01. A special value means the
ETR shall be used as the default threshold for declaring a leftr defect.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65563 |
vdsl2LConfProfLeftrThreshUsIf retransmission is used in upstream direction, this parameter specifies the
threshold for declaring a near-end leftr defect. The value is coded as a fraction of the
NDR with valid range from 0.01 to 0.99 with increments of 0.01. A special value means the
ETR shall be used as the default threshold for declaring a leftr defect.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65564 |
vdsl2LConfProfForceInpDsThis parameter indicates that the framer settings of the
bearer shall be selected such that the impulse noise protection
computed according to the formula specified in the relevant
Recommendation is greater or equal to the minimal impulse noise
protection requirement.
This flag shall have the same value for all the bearers of one
line in the same direction.rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65565 |
vdsl2LConfProfForceInpUsThis parameter indicates that the framer settings of the
bearer shall be selected such that the impulse noise protection
computed according to the formula specified in the relevant
Recommendation is greater or equal to the minimal impulse noise
protection requirement.
This flag shall have the same value for all the bearers of one
line in the same direction.rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65566 |
vdsl2LConfProfAeleModeThis parameter defines the UPBO electrical length estimation mode to be used
in the Alternative Electrical Length Estimation method (ELE-M1) in 7.2.1.3.2.2/G.993.2.
The value of this parameter is 0, 1, 2 or 3.
0-ELE_M0, 1-ELE_DS, 2-ELE_PB, 3-ELE_MINrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65567 |
vdsl2LConfProfUpboElmtThis parameter defines the UPBO electrical length minimum threshold percentile
in percent used in the Alternative Electrical Length Estimation method (ELE-M1)
in clause 7.2.1.3.2.2/G.993.2. It is set by network management via the CO-MIB.
The parameter ranges from 0 to 15 percent in steps of 1 percent.
This value is communicated to the VTU-R via G.994.1 at start-up.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65568 |
vdsl2LconfProfUpboKlAutoThis parameter defines the mode in which kl0 is computed when vdsl2LconfProfUpboKlf is auto.
Options:
1
2
3
4
4294967295rw Unsigned32(1..4 | 4294967295) .1.3.6.1.4.1.2011.6.115.1.5.1.2.1.65569 |
vdsl2LineConfProfModeSpecTableThe table vdsl2LineConfProfModeSpecTable extends the
VDSL2 line configuration profile by VDSL Mode Specific
parameters.
A row in this table that has an index of
vdsl2LconfProfVdslMode == defMode(1), is called a
'mandatory' row.
A row in this table that has an index such that
vdsl2LconfProfVdslMode is not equal to defMode(1),
is called an 'optional' row.
When a row in the vdsl2LineConfProfTable table
(the parent row) is created, the SNMP agent will
automatically create a 'mandatory' row in this table.
When the parent row is deleted, the SNMP agent will
automatically delete all associated rows in this table.
Any attempt to delete the 'mandatory' row using the
vdsl2LConfProfModeSpecRowStatus attribute will be
rejected by the SNMP agent.
The manager MAY create an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute if
the parent row exists.
The manager MAY delete an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute at
any time.
If the actual transmission mode of a DSL line does not
match one of the 'optional' rows in this table, then
the line will use the PSD configuration from the
'mandatory' row.
The indexes of this table are vdsl2LConfProfProfileName
and vdsl2LconfProfVdslMode. SEQUENCE OF Vdsl2LineConfProfModeSpecEntry .1.3.6.1.4.1.2011.6.115.1.5.1.3 |
vdsl2LineConfProfModeSpecEntryThe table vdsl2LineConfProfModeSpecTable extends the
VDSL2 line configuration profile by VDSL Mode Specific
parameters.
A row in this table that has an index of
vdsl2LconfProfVdslMode == defMode(1), is called a
'mandatory' row.
A row in this table that has an index such that
vdsl2LconfProfVdslMode is not equal to defMode(1),
is called an 'optional' row.
When a row in the vdsl2LineConfProfTable table
(the parent row) is created, the SNMP agent will
automatically create a 'mandatory' row in this table.
When the parent row is deleted, the SNMP agent will
automatically delete all associated rows in this table.
Any attempt to delete the 'mandatory' row using the
vdsl2LConfProfModeSpecRowStatus attribute will be
rejected by the SNMP agent.
The manager MAY create an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute if
the parent row exists.
The manager MAY delete an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute at
any time.
If the actual transmission mode of a DSL line does not
match one of the 'optional' rows in this table, then
the line will use the PSD configuration from the
'mandatory' row.
The indexes of this entry are vdsl2LConfProfProfileName
and vdsl2LconfProfVdslMode. Vdsl2LineConfProfModeSpecEntry .1.3.6.1.4.1.2011.6.115.1.5.1.3.1 |
vdsl2LconfProfVdslModeThe VDSL Mode is a way of categorizing the various VDSL
transmission modes into groups, each group (VDSL Mode) shares
the same PSD configuration.
There should be multiple entries in this table for a given
line profile in case multiple bits are set in
vdsl2LConfProfXtuTransSysEna for that profile. Vdsl2OperationModes (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.1 |
vdsl2LConfProfMaxNomPsdDsThe maximum nominal transmit PSD in the downstream
direction during initialization and Showtime. It ranges from
-600 to -300 units of 0.1 dBm/Hz. (physical values are -60 to
-30 dBm/Hz).
Unit: 0.1 dBm/Hzrw Integer32(-600..-300) UNITS "0.1 dBm/Hz" .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.2 |
vdsl2LConfProfMaxNomPsdUsThe maximum nominal transmit PSD in the upstream direction
during initialization and Showtime. It ranges from -600 to
-300 units of 0.1 dBm/Hz. (physical values are -60 to
-30 dBm/Hz).
Unit: 0.1 dBm/Hzrw Integer32(-600..-300) UNITS "0.1 dBm/Hz" .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.3 |
vdsl2LConfProfMaxNomAtpDsThe maximum nominal aggregate transmit power in the
downstream direction during initialization and Showtime. It
ranges from 0 to 255 units of 0.1 dBm (physical values are 0
to 25.5 dBm).
Unit: 0.1 dBmrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.4 |
vdsl2LConfProfMaxNomAtpUsThe maximum nominal aggregate transmit power in the upstream
direction during initialization and Showtime. It ranges from
0 to 255 units of 0.1 dBm (physical values are 0 to 25.5
dBm).
Unit: 0.1 dBmrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.5 |
vdsl2LConfProfMaxAggRxPwrUsThe maximum upstream aggregate receive power over the relevant
set of sub-carriers. The xTU-C should verify that the
upstream power cutback is such that this maximum aggregate
receive power value is honored. It ranges from -255 to 255
units of 0.1 dBm (physical values are -25.5 to 25.5 dBm).
A value of all means that there is no limit.
Unit: 0.1 dBmrw Integer32(-255..255) UNITS "0.1 dBm" .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.6 |
vdsl2LConfProfPsdMaskDsThis configuration parameter defines the downstream PSD mask
applicable at the U C2 reference point.
This MIB PSD mask may impose PSD restrictions in addition
to the Limit PSD mask defined in the relevant Recommendation
(e.g., G.992.5, G.993.2).
This is a string of 32 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 6-8 - Same, for a 3rd breakpoint.
This architecture continues until octets 94-95, which are
associated with a 32nd breakpoint.
Each subcarrier index is an unsigned number in the range 0 and
(NSCds - 1). Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 32, all remaining
octets are set to the value 0xff. Note that the content of this
object should be correlated with the sub-carriers mask and with
the RFI setup.rw Vdsl2PsdMaskDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.7 |
vdsl2LConfProfPsdMaskUsThis configuration parameter defines the upstream PSD
mask applicable at the U R2 reference point. This MIB
PSD mask may impose PSD restrictions in addition to the
Limit PSD mask defined in the relevant Recommendations
(e.g., ITU-T Recommendations G.992.3, G.993.2).
This is a string of 16 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 45-47 - Same, for a 3rd breakpoint.
This architecture continues until octets 45-47, which are
associated with a 16th breakpoint.
Each subcarrier index is an unsigned number in the range 0 and
(NSCus - 1). Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 16, all remaining
octets are set to the value 0xff. Note that the content of this
object should be correlated with the sub-carriers mask and with
the RFI setup.rw Vdsl2PsdMaskUs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.8 |
vdsl2LConfProfPsdMaskSelectUsThe selected upstream PSD mask. This parameter is used only
for annexes J and M of G.992.3 and G.992.5, and the same
selection is used for all relevant enabled bits in
vdsl2LConfProfXtuTransSysEna.
The value is defined as below:
0-Invalid value
1-ADLU-32/EU-32
2-ADLU-36/EU-36
3-ADLU-40/EU-40
4-ADLU-44/EU-44
5-ADLU-48/EU-48
6-ADLU-52/EU-52
7-ADLU-56/EU-56
8-ADLU-60/EU-60
9-ADLU-64/EU-64rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.9 |
vdsl2LConfProfPSDClassMaskIn order to reduce the number of configuration possibilities,
the limit PSD masks are grouped in the following PSD mask classes:
- Class 998 Annex A: D-32, D-64.
- Class 997-M1c Annex B: 997-M1c-A-7.
- Class 997-M1x Annex B: 997-M1x-M-8, 997-M1x-M.
- Class 997-M2x Annex B: 997-M2x-M-8, 997-M2x-A, 997-M2x-M.
- Class 998-M1x Annex B: 998-M1x-A, 998-M1x-B, 998-M1x-NUS0.
- Class 998-M2x Annex B: 998-M2x-A, 998-M2x-M, 998-M2x-B, 998-M2x-NUS0.
- Class HPE17 Annex B: HPE17-M1-NUS0.
- Class HPE30 Annex B: HPE30-M1-NUS0.
- Class 997E17-M2x Annex B: 997E17-M2x-NUS0.
- Class 997E30-M2x Annex B: 997E30-M2x-NUS0.
- Class 998E17-M2x Annex B: 998E17-M2x-NUS0, 998E17-M2x-NUS0-M, 998E17-M2x-A.
- Class 998ADE17-M2x Annex B: 998ADE17-M2x-NUS0-M, 998ADE17-M2x-A, 998ADE17-M2x-B.
- Class 998E30-M2x Annex B: 998E30-M2x-NUS0, 998E30-M2x-NUS0-M.
- Class 998ADE30-M2x Annex B: 998ADE30-M2x-NUS0-M, 998ADE30-M2x-NUS0-A.rw Vdsl2PSDClassMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.10 |
vdsl2LConfProfProfilesThis configuration parameter contains the G.993.2
profiles to be allowed by the near-end xTU on this line.rw Vdsl2Profiles (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.11 |
vdsl2LConfProfBandOptUsageDefines the VDSL link use of the optional frequency
range [25kHz - 138kHz] (Opt).
Options:
1. unused(1) - indicates Opt is unused
2. used(2) - indicates Opt usage is for upstream
Huawei defined.rw Vdsl2BandOptUsage (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.12 |
vdsl2LConfProfModeSpecRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
templates.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.13 |
hwVdsl2ConfProfVirtualNoiseModeDsThis parameter enables the transmitter referred
virtual noise in the downstream direction.
If set to 1, the virtual noise is disabled.
If set to 2, the virtual noise is enabled.rw Vdsl2VirtualNoise (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.65535 |
hwVdsl2ConfProfVirtualNoiseModeUsThis parameter enables the transmitter referred
virtual noise in the upstream direction.
If set to 1, the virtual noise is disabled.
If set to 2, the virtual noise is enabled.rw Vdsl2VirtualNoise (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.65536 |
hwVdsl2ConfProfVirtualNoiseDsThis configuration parameter defines the downstream
transmitter referred virtual noise (TXREFVNds).
The TXREFVNds shall be specified through a set of breakpoints.
Each breakpoint shall consist of a subcarrier index,
with a subcarrier spacing of 4.3125 kHz,
and a noise PSD level (expressed in dBm/Hz) at that subcarrier.
The set of breakpoints can then be represented as
[(t1, PSD1), (t2, PSD2),..., (tN, PSDN)].
The subcarrier index shall be coded as an unsigned integer.
The noise level shall be coded as an 8-bit unsigned integer
representing the noise level -40 dBm/Hz (coded as 0) to -140 dBm/Hz
(coded as 200), in steps of 0.5 dBm/Hz.
Values from 201 to 255 are special values indicating a noise
level of 0 W/Hz. The maximum number of breakpoints is 32.rw Vdsl2VirtualNoiseDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.65537 |
hwVdsl2ConfProfVirtualNoiseUsThis configuration parameter defines the upstream
transmitter referred virtual noise (TXREFVNus).
The TXREFVNus shall be specified through a set of breakpoints.
Each breakpoint shall consist of a subcarrier index t,
with a subcarrier spacing of 4.3125 kHz, and a noise PSD level
(expressed in dBm/Hz) at that subcarrier.
The set of breakpoints can then be represented as
[(t1, PSD1), (t2, PSD2), ... , (tN, PSDN)].
The subcarrier index shall be coded as an unsigned integer.
The noise level shall be coded as an 8-bit unsigned integer
representing the noise level -40 dBm/Hz (coded as 0) to -140 dBm/Hz
(coded as 200), in steps of 0.5 dBm/Hz.
Values from 201 to 255 are special values indicating
a noise level of 0 W/Hz. The maximum number of breakpoints is 16.rw Vdsl2VirtualNoiseUs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.65538 |
hwVdsl2ConfProfAutoProfileEnable or disable the G.993.2 profiles adaptive function.
If set to 1, the G.993.2 profiles adaptive function is disabled.
If set to 2, the G.993.2 profiles adaptive function is enabled.rw Vdsl2AutoProfile (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.1.3.1.65539 |
vdsl2ProfileChannel OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.5.2 |
vdsl2ChConfProfileTableThe table vdsl2ChConfProfileTable contains VDSL2 channel
profile configuration. The index of this table is
vdsl2ChConfProfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2ChConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.2.1 |
vdsl2ChConfProfileEntryThe table vdsl2ChConfProfileTable contains VDSL2 channel
profile configuration.
The index of this entry is vdsl2ChConfProfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2ChConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.2.1.1 |
vdsl2ChConfProfProfileNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.1 |
vdsl2ChConfProfMinDataRateDsIf retransmission is not used in downstream direction,this parameter specifics
minimum data rate for the bearer channel on downstream direction. The rate is
coded in steps of 1000 bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.2 |
vdsl2ChConfProfMinDataRateUsIf retransmission is not used in upstream direction,this parameter specifics
minimum data rate for the bearer channel on upstream direction. The rate is
coded in steps of 1000 bit/s
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.3 |
vdsl2ChConfProfMinResDataRateDsMinimum Reserved Data Rate on Downstream direction. The
minimum reserved net data rate for the bearer channel, coded
in bit/s. This parameter is used only if the Rate Adaptation
Mode in the direction of the bearer channel (i.e.,
Vdsl2LineConfRaModeDs) is set to DynamicRa.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.4 |
vdsl2ChConfProfMinResDataRateUsMinimum Reserved Data Rate on Upstream direction. The minimum
reserved net data rate for the bearer channel, coded in
bit/s. This parameter is used only if the Rate Adaptation
Mode in the direction of the bearer channel (i.e.,
Vdsl2LineConfRaModeUs) is set to DynamicRa.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.5 |
vdsl2ChConfProfMaxDataRateDsIf retransmission is not used in downstream direction,this parameter specifics
maximum data rate for the bearer channel on downstream direction. The rate is
coded in steps of 1000 bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.6 |
vdsl2ChConfProfMaxDataRateUsIf retransmission is not used in upstream direction,this parameter specifics
maximum data rate for the bearer channel on upstream direction. The rate is
coded in steps of 1000 bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.7 |
vdsl2ChConfProfMinDataRateLowPwrDsMinimum Data Rate in Low Power state on Downstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s, during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.8 |
vdsl2ChConfProfMinDataRateLowPwrUsMinimum Data Rate in Low Power state on Upstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s, during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.9 |
vdsl2ChConfProfMaxDelayDsIf retransmission is not used in downstream direction,this parameter
is maximum interleave delay on downstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Downstream direction. The XTUs shall choose the S (factor)
and D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayDs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.10 |
vdsl2ChConfProfMaxDelayUsIf retransmission is not used in upstream direction,this parameter
is maximum interleave delay on upstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Upstream direction. The XTUs shall choose the S (factor) and
D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayUs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.11 |
vdsl2ChConfProfMinProtectionDsIf retransmission is not used in downstream direction,this parameter
is minimum impulse noise protection for the bearer channel on downstream
direction. The minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionDs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.12 |
vdsl2ChConfProfMinProtectionUsIf retransmission is not used in upstream direction,this parameter
is minimum impulse noise protection for the bearer channel on upstream
direction. The minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionUs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.13 |
vdsl2ChConfProfMaxBerDsMaximum Bit Error Ratio on Downstream direction. The maximum
bit error ratio for the bearer channel. The parameter can
take the following values (for 1E-3, 1E-5 or 1E-7).
Options:
1. eminus3 (1) - 1E-3
2. eminus5 (2) - 1E-5
3. eminus7 (3) - 1E-7rw Vdsl2MaxBer (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.14 |
vdsl2ChConfProfMaxBerUsMaximum Bit Error Ratio on Upstream direction. The maximum
bit error ratio for the bearer channel. The parameter can
take the following values (for 1E-3, 1E-5 or 1E-7).
Options:
1. eminus3 (1) - 1E-3
2. eminus5 (2) - 1E-5
3. eminus7 (3) - 1E-7rw Vdsl2MaxBer (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.15 |
vdsl2ChConfProfUsDataRateDsIf retransmission is not used in downstream direction,this parameter
is data rate threshold upshift for downstream direction. An
'Up-shift rate change' event is triggered when the actual
downstream data rate exceeds, by more than the threshold, the
data rate at the last entry into Showtime. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.16 |
vdsl2ChConfProfDsDataRateDsIf retransmission is not used in downstream direction,this parameter
is data rate threshold downshift for downstream direction. A
'Down-shift rate change' event is triggered when the actual
downstream data rate is below the data rate at the last entry
into Showtime, by more than the threshold. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.17 |
vdsl2ChConfProfUsDataRateUsIf retransmission is not used in upstream direction,this parameter
is data rate threshold up shift for upstream direction. An
'Up-shift rate change' event is triggered when the actual
upstream data rate exceeds, by more than the threshold, the
data rate at the last entry into Showtime. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.18 |
vdsl2ChConfProfDsDataRateUsIf retransmission is not used in upstream direction,this parameter
is data rate threshold downshift for upstream direction. A
'Down-shift rate change' event is triggered when the actual
upstream data rate is below the data rate at the last entry
into Showtime, by more than the threshold. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.19 |
vdsl2ChConfProfImaEnabledIMA Mode Enable. The parameter enables the IMA operation mode
in the ATM Data Path. Relevant only if the channel is of ATM
Data Path. When in 'enable' state, the ATM data path should
comply with the requirements for IMA transmission.rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.20 |
vdsl2ChConfProfDataPathModeThe channel data path mode.
Options:
1. atm(1) - ATM
2. ptm(2) - PTM
3. both(3) - ATM and PTM
Huawei defined.rw Vdsl2DataPathMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.21 |
vdsl2ChConfProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
templates.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.22 |
vdsl2ChConfProfPhyRcontrolDsTo enable or disable the retransmission function.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.23 |
vdsl2ChConfProfPhyRcontrolUsTo enable or disable the retransmission function.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.24 |
vdsl2ChConfProfInpMaxDsMaximum Impulse Noise Protection on downstream direction.rw Vdsl2SymbolProtectionDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.25 |
vdsl2ChConfProfInpMaxUsMaximum Impulse Noise Protection on upstream direction.rw Vdsl2SymbolProtectionDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.26 |
vdsl2ChConfProfMinRtxRatioDsThis object is used to config the minimum retransmission band width parameter downstream.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.27 |
vdsl2ChConfProfMinRtxRatioUsThis object is used to config the minimum retransmission band width parameter upstream.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.28 |
vdsl2ChConfProfMinRSoverheadDsThis object is used to config the minimum RSoverhead parameter downstream..rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.29 |
vdsl2ChConfProfMinRSoverheadUsThis object is used to config the minimum RSoverhead parameter upstream..rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.30 |
vdsl2ChConfProfErasureDecodingTo enable or disable the erasure decoding of a channel.
Options:
1. enable(1)
2. disable(2)rw Vdsl2ProfSwitchType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.31 |
vdsl2ChConfProfMinSosBrDsThis parameter specifies the minimum net data rate required for a valid SOS request in
the downstream direction. The valid range of values is from 0 to 524280Kbps in steps of 8Kbps.
Unit: 8Kbpsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.32 |
vdsl2ChConfProfMinSosBrUsThis parameter specifies the minimum net data rate required for a valid SOS request in
the upstream direction.The valid range of values is from 0 to 524280Kbps in steps of 8Kbps.
Unit: 8Kbpsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.33 |
vdsl2ChConfProfMinEtrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
minimum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.34 |
vdsl2ChConfProfMinEtrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.35 |
vdsl2ChConfProfMaxEtrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
maximum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.36 |
vdsl2ChConfProfMaxEtrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
maximum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.37 |
vdsl2ChConfProfMaxNdrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
maximum net data rate for the bearer channel. The values range in steps of 1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.38 |
vdsl2ChConfProfMaxNdrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
maximum net data rate for the bearer channel.The values range in steps of 1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.39 |
vdsl2ChConfProfMaxDelayRtxDsIf retransmission is used in downstream direction, this parameter specifies
the maximum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 1 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.40 |
vdsl2ChConfProfMaxDelayRtxUsIf retransmission is used in upstream direction, this parameter specifies
the maximum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 1 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.41 |
vdsl2ChConfProfMinDelayRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 0 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.42 |
vdsl2ChConfProfMinDelayRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 0 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.43 |
vdsl2ChConfProfMinInpShineRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 63, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.44 |
vdsl2ChConfProfMinInpShineRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 63, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.45 |
vdsl2ChConfProfMinInp8ShineRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 127, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.46 |
vdsl2ChConfProfMinInp8ShineRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 127, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.47 |
vdsl2ChConfProfShineRatioRtxDsIf retransmission is used in downstream direction, this parameter specifies
the SHINE ratio (detailed definition see G.998.4).
The values range from 0 to 0.100 in increments of 0.001.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.48 |
vdsl2ChConfProfShineRatioRtxUsIf retransmission is used in upstream direction, this parameter specifies
the SHINE ratio (detailed definition see G.998.4).
The values range from 0 to 0.100 in increments of 0.001.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.49 |
vdsl2ChConfProfMinInpReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 7, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.50 |
vdsl2ChConfProfMinInpReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 7, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.51 |
vdsl2ChConfProfMinInp8ReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 13, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.52 |
vdsl2ChConfProfMinInp8ReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 13, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.53 |
vdsl2ChConfProfIatReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the inter-arrival time that shall be assumed for REIN protection.
Options:
1. frequency100Hz(0) - an inter-arrival time derived from a REIN at 100 Hz
2. frequency120Hz(1) - an inter-arrival time derived from a REIN at 120 Hzrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.54 |
vdsl2ChConfProfIatReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the inter-arrival time that shall be assumed for REIN protection.
Options:
1. frequency100Hz(0) - an inter-arrival time derived from a REIN at 100 Hz
2. frequency120Hz(1) - an inter-arrival time derived from a REIN at 120 Hzrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.55 |
vdsl2ChConfProfInitPolicyThis parameter indicates which policy shall be applied to
determine the transceiver configuration parameters at
initialization. The valid values for CIPOLICY are 0,1 and 2.
Those policies are defined in the respective recommendations.
Options:
1. policy0 (1) - Policy 0 according to the applicable standard
2. policy1 (2) - Policy 1 according to the applicable standard
3. policy2 (3) - Policy 2 according to the applicable standardrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.2.1.1.56 |
vdsl2ProfileAlarmConf OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.5.3 |
vdsl2LineAlarmConfTemplateTableThe table vdsl2LineAlarmConfTemplateTable contains VDSL2 line
alarm configuration template.
The index of this table is vdsl2LAlarmConfTempTemplateName.
A default template with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor
specific values, unless otherwise specified in this
document. SEQUENCE OF Vdsl2LineAlarmConfTemplateEntry .1.3.6.1.4.1.2011.6.115.1.5.3.1 |
vdsl2LineAlarmConfTemplateEntryThe table vdsl2LineAlarmConfTemplateTable contains VDSL2 line
alarm configuration template.
The index of this entry is vdsl2LAlarmConfTempTemplateName.
A default template with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor
specific values, unless otherwise specified in this
document. Vdsl2LineAlarmConfTemplateEntry .1.3.6.1.4.1.2011.6.115.1.5.3.1.1 |
vdsl2LAlarmConfTempTemplateNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.1 |
vdsl2LAlarmConfTempLineProfileThe value of this object identifies the row in the VDSL2 Line
Thresholds Configuration Profile Table
(vdsl2LineAlarmConfProfileTable) that applies to this VDSL2
line.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.2 |
vdsl2LAlarmConfTempChan1ConfProfileThe value of this object identifies the row in the VDSL2
Channel Thresholds Configuration Profile Table
(vdsl2ChAlarmConfProfileTable) that applies for VDSL2
bearer channel #1. The channel profile name specified here
must match the name of an existing row in the
vdsl2ChAlarmConfProfileTable table.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.3 |
vdsl2LAlarmConfTempChan2ConfProfileThe value of this object identifies the row in the VDSL2
Channel Thresholds Configuration Profile Table
(vdsl2ChAlarmConfProfileTable) that applies for VDSL2
bearer channel #2. The channel profile name specified here
must match the name of an existing row in the
vdsl2ChAlarmConfProfileTable table. If the channel is unused,
then the object is set to a zero length string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.4 |
vdsl2LAlarmConfTempChan3ConfProfileThe value of this object identifies the row in the VDSL2
Channel Thresholds Configuration Profile Table
(vdsl2ChAlarmConfProfileTable) that applies for VDSL2
bearer channel #3. The channel profile name specified here
must match the name of an existing row in the
vdsl2ChAlarmConfProfileTable table.
This object may be set to a non-zero length string only if
vdsl2LAlarmConfTempChan2ConfProfile contains a non-zero
length string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.5 |
vdsl2LAlarmConfTempChan4ConfProfileThe value of this object identifies the row in the VDSL2
Channel Thresholds Configuration Profile Table
(vdsl2ChAlarmConfProfileTable) that applies for VDSL2
bearer channel #4. The channel profile name specified here
must match the name of an existing row in the
vdsl2ChAlarmConfProfileTable table.
This object may be set to a non-zero length string only if
vdsl2LAlarmConfTempChan3ConfProfile contains a non-zero
length string.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.6 |
vdsl2LAlarmConfTempRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.3.1.1.7 |
vdsl2LineAlarmConfProfileTableThe table vdsl2LineAlarmConfProfileTable contains VDSL2
line PM thresholds profiles. The index of this table is
vdsl2LineAlarmConfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor
specific values, unless otherwise specified in this
document. SEQUENCE OF Vdsl2LineAlarmConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.3.2 |
vdsl2LineAlarmConfProfileEntryThe table vdsl2LineAlarmConfProfileTable contains VDSL2
line PM thresholds profiles.
The index of this entry is vdsl2LineAlarmConfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor
specific values, unless otherwise specified in this
document. Vdsl2LineAlarmConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.3.2.1 |
vdsl2LineAlarmConfProfileNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.1 |
vdsl2LineAlarmConfProfileXtucThresh15MinFecsA threshold for the vdsl2PMLCurr15MFecs counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.2 |
vdsl2LineAlarmConfProfileXtucThresh15MinEsA threshold for the vdsl2PMLCurr15MEs counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.3 |
vdsl2LineAlarmConfProfileXtucThresh15MinSesA threshold for the vdsl2PMLCurr15MSes counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.4 |
vdsl2LineAlarmConfProfileXtucThresh15MinLossA threshold for the vdsl2PMLCurr15MLoss counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.5 |
vdsl2LineAlarmConfProfileXtucThresh15MinUasA threshold for the vdsl2PMLCurr15MUas counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.6 |
vdsl2LineAlarmConfProfileXturThresh15MinFecsA threshold for the vdsl2PMLCurr15MFecs counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.7 |
vdsl2LineAlarmConfProfileXturThresh15MinEsA threshold for the vdsl2PMLCurr15MEs counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.8 |
vdsl2LineAlarmConfProfileXturThresh15MinSesA threshold for the vdsl2PMLCurr15MSes counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.9 |
vdsl2LineAlarmConfProfileXturThresh15MinLossA threshold for the vdsl2PMLCurr15MLoss counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.10 |
vdsl2LineAlarmConfProfileXturThresh15MinUasA threshold for the vdsl2PMLCurr15MUas counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.11 |
vdsl2LineAlarmConfProfileThresh15MinFailedFullIntA threshold for the vdsl2PMLCurrInit15MfailedFullInits
counter.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.12 |
vdsl2LineAlarmConfProfileThresh15MinFailedShrtIntA threshold for the vdsl2PMLCurrInit15MFailedShortInits
counter.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.13 |
vdsl2LineAlarmConfProfileRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
templates.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.14 |
vdsl2LineAlarmConfProfileThresh15MinFullIntA threshold for the vdsl2PMLCurrInit15MFullInits
counter.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.15 |
vdsl2LineAlarmConfProfileXtucThresh15MinLeftrsA threshold for the vdsl2PMLCurr15MLeftrs counter,
when vdsl2PMLCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.16 |
vdsl2LineAlarmConfProfileXturThresh15MinLeftrsA threshold for the vdsl2PMLCurr15MLeftrs counter,
when vdsl2PMLCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.
Unit: secondsrw HCPerfIntervalThreshold UNITS "seconds" .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.17 |
hwVdsl2LineAlarmConfProfileDyingGaspAlarmSwitchThis object enable/disable the report of LOSS-OF-POWER
alarm in a VDSL line.
Options:
1. enable(1) - The report of LOSS-OF-POWER alarm in a VDSL line is enabled
2. disable(2) - The report of LOSS-OF-POWER alarm in a VDSL line is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.18 |
hwVdsl2LineAlarmConfProfileActiveFailAlarmSwitchThis object enable/disable the active fail alarm switch.
Options:
1. enable(1) - The active fail alarm switch is enabled
2. disable(2) - The active fail alarm switch is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.19 |
hwVdsl2LineAlarmConfProfileRateChangeAlarmSwitchThis object enable/disable the active rate change alarm switch.
Options:
1. enable(1) - The active rate change alarm switch is enabled
2. disable(2) - The active rate change alarm switch is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.20 |
hwVdsl2LineAlarmConfProfileLegacyCpeAlarmSwitchThis object enable/disable the legacy cpe alarm switch.
Options:
1. enable(1) - The legacy cpe alarm switch is enabled
2. disable(2) - The legacy cpe alarm switch is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.21 |
hwVdsl2LineAlarmConfProfileVictAbnormalVariationAlarmSwitchThis object enable/disable alarm switch that the port
receives abnormal crosstalk.
Options:
1. enable(1) - The alarm switch that the port receives
abnormal crosstalk is enabled
2. disable(2) - The alarm switch that the port receives
abnormal crosstalk is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.22 |
hwVdsl2LineAlarmConfProfileDistAbnormalVariationAlarmSwitchThis object enable/disable the alarm switch that the port
causes abnormal crosstalk.
Options:
1. enable(1) - The alarm switch that the port causes
abnormal crosstalk is enabled
2. disable(2) - The alarm switch that the port causes
abnormal crosstalk is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.23 |
hwVdsl2LineAlarmConfProfileReceivedESAbnormalAlarmSwitchThis object enable/disable the alarm switch that The port
receives abnormal error sample messages.
Options:
1. enable(1) - The alarm switch that the port receives
abnormal error sample messages is enabled
2. disable(2) - The alarm switch that the port receives
abnormal error sample messages is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.24 |
hwVdsl2LineAlarmConfProfileNonVectoringCPEActivatedAlarmSwitchThis object enable/disable the alarm switch that the port is
activated in none-vectoring mode.
Options:
1. enable(1) - The alarm switch that the port is activated
in none-vectoring mode is enabled
2. disable(2) - The alarm switch that the port is activated
in none-vectoring mode is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.25 |
hwVdsl2LineAlarmConfProfileFreqRetrainReachThresholdAlarmSwitchThis object enable/disable the alarm switch that the port
frequently retrain times in 15 minutes reach the threshold.
Options:
1. enable(1) - The alarm switch that the port frequently retrain
times in 15 minutes reach the threshold is enabled
2. disable(2) - The alarm switch that the port frequently retrain
times in 15 minutes reach the threshold is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.26 |
hwvdsl2LineAlarmConfProfilePSConfigAbnormalAlarmSwitchThis object enable/disable the pilot sequence configuration abnormal alarm switch.
Options:
1. enable(1) - The pilot sequence configuration abnormal alarm switch is enabled
2. disable(2) - The pilot sequence configuration abnormal alarm switch is disabledrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.3.2.1.27 |
vdsl2ChAlarmConfProfileTableThe table vdsl2ChAlarmConfProfileTable contains VDSL2
channel PM thresholds profiles.
The index of this table is vdsl2ChAlarmConfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2ChAlarmConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.3.3 |
vdsl2ChAlarmConfProfileEntryThe table vdsl2ChAlarmConfProfileTable contains VDSL2
channel PM thresholds profiles.
The index of this entry is vdsl2ChAlarmConfProfileName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2ChAlarmConfProfileEntry .1.3.6.1.4.1.2011.6.115.1.5.3.3.1 |
vdsl2ChAlarmConfProfileNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.1 |
vdsl2ChAlarmConfProfileXtucThresh15MinCodingViolationsA threshold for the vdsl2PMChCurr15MCodingViolations
counter, when vdsl2PMChCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.2 |
vdsl2ChAlarmConfProfileXtucThresh15MinCorrectedA threshold for the vdsl2PMChCurr15MCorrectedBlocks
counter, when vdsl2PMChCurrUnit is XTUC {1}.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.3 |
vdsl2ChAlarmConfProfileXturThresh15MinCodingViolationsA threshold for the vdsl2PMChCurr15MCodingViolations
counter, when vdsl2PMChCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.4 |
vdsl2ChAlarmConfProfileXturThresh15MinCorrectedA threshold for the vdsl2PMChCurr15MCorrectedBlocks
counter, when vdsl2PMChCurrUnit is XTUR {2}.
The value 0 means that no threshold is specified for the
associated counter.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.5 |
vdsl2ChAlarmConfProfileMonitoringRateDsThe channel monitoring rate downstream.
Huawei defined. When the value you set is larger than
the value of the rate downstream defined in the channel
profile, it will not be successful. The value 0 means
that no threshold is specified for the associated
counter.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.6 |
vdsl2ChAlarmConfProfileMonitoringRateUsThe channel monitoring rate upstream.
Huawei defined. When the value you set is larger than
the value of the rate upstream defined in the channel
profile, it will not be successful. The value 0 means
that no threshold is specified for the associated
counter.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.7 |
vdsl2ChAlarmConfProfileRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
templates.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.3.3.1.8 |
vdsl2ProfileTIMode OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.5.4 |
vdsl2ServProfTableThe table vdsl2ServProfTable contains xDSL line
service configuration.
The index of this table is vdsl2ServProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2ServProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.1 |
vdsl2ServProfEntryThe table vdsl2ServProfTable contains xDSL line
service configuration.
The index of this entry is vdsl2ServProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2ServProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.1.1 |
vdsl2ServProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.1 |
vdsl2ServProfDataPathModeThis parameter indicates the VDSL2 line data path modes.
Options:
1. atm (1) - atm mode
2. ptm (2) - ptm moderw Vdsl2DataPathModeType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.2 |
vdsl2ServProfBitSwapEnablingDsEnables or disables the bit swap downstream of a line.
Options:
1. enable(1) - Enable the bit swap downstream of a line
2. disable(2) - Disable the bit swap downstream of a line
huawei defined.rw Vdsl2ProfSwitchType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.3 |
vdsl2ServProfBitSwapEnablingUsEnables or disables the bit swap upstream of a line.
Options:
1. enable(1) - Enable the bit swap upstream of a line.
2. disable(2) - Disable the bit swap upstream of a line.
huawei defined.rw Vdsl2ProfSwitchType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.4 |
vdsl2ServProfRaModeThe mode of operation of a rate-adaptive xTU-R in the transmit
direction.
Options:
1. manual (1) - No Rate-Adaptation. The initialization
process attempts to synchronize to a
specified rate.
2. rainit (2) - Rate-Adaptation during initialization process
only, which attempts to synchronize to a rate
between minimum and maximum specified values.
3. dynamic (3) - Rate-Adaptation during show timerw Vdsl2RaMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.5 |
vdsl2ServProfCh1EnablingThis parameter indicates whether the bearer 1 of VDSL2 line is enabling.
Options:
1. enable(1) - Enable the bearer 1 of VDSL2 line.
2. disable(2) - Disable the bearer 1 of VDSL2 line.
huawei defined.rw Vdsl2ChEnabling (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.6 |
vdsl2ServProfCh1MinDataRateDsIf retransmission is not used in downstream direction,this parameter specifics
minimum data rate for the bearer channel on downstream direction. coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.7 |
vdsl2ServProfCh1MinDataRateUsIf retransmission is not used in upstream direction,this parameter specifics
minimum data rate for the bearer channel on upstream direction. coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.8 |
vdsl2ServProfCh1MinResDataRateDsMinimum Reserved Data Rate on Downstream direction. The
minimum reserved net data rate for the bearer channel, coded
in bit/s. This parameter is used only if the Rate Adaptation
Mode of the bearer channel (i.e., vdsl2ServProfRaMode) is set
to Dynamic.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.9 |
vdsl2ServProfCh1MinResDataRateUsMinimum Reserved Data Rate on Upstream direction. The minimum
reserved net data rate for the bearer channel, coded in
bit/s. This parameter is used only if the Rate Adaptation
Mode of the bearer channel (i.e., vdsl2ServProfRaMode) is set
to Dynamic.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.10 |
vdsl2ServProfCh1MaxDataRateDsIf retransmission is not used in downstream direction,this parameter specifics
maximum data rate for the bearer channel on downstream direction. coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.11 |
vdsl2ServProfCh1MaxDataRateUsIf retransmission is not used in upstream direction,this parameter specifics
maximum data rate for the bearer channel on upstream direction. coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.12 |
vdsl2ServProfCh1MinDataRateLowPwrDsMinimum Data Rate in Low Power state on Downstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s., during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.13 |
vdsl2ServProfCh1MinDataRateLowPwrUsMinimum Data Rate in Low Power state on Upstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s, during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.14 |
vdsl2ServProfCh1RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #1 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
vdsl2ServProfCh1RaRatioDs is the ratio of excess data
rate to be assigned to all other bearer channels on Downstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.15 |
vdsl2ServProfCh1RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #1 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
vdsl2ServProfCh1RaRatioUs is the ratio of excess data
rate to be assigned to all other bearer channels on Upstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.16 |
vdsl2ServProfCh2EnablingThis parameter indicates whether the bearer 2 of VDSL2 line is enabling.
Options:
1. enable(1) - Enable the bearer 2 of VDSL2 line.
2. disable(2) - Disable the bearer 2 of VDSL2 line.
huawei defined.rw Vdsl2ChEnabling (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.17 |
vdsl2ServProfCh2MinDataRateDsMinimum Data Rate on Downstream direction. The minimum net
data rate for the bearer channel, coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.18 |
vdsl2ServProfCh2MinDataRateUsMinimum Data Rate on Upstream direction. The minimum net data
rate for the bearer channel, coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.19 |
vdsl2ServProfCh2MinResDataRateDsMinimum Reserved Data Rate on Downstream direction. The
minimum reserved net data rate for the bearer channel, coded
in bit/s. This parameter is used only if the Rate Adaptation
Mode of the bearer channel (i.e., vdsl2ServProfRaMode) is set
to Dynamic.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.20 |
vdsl2ServProfCh2MinResDataRateUsMinimum Reserved Data Rate on Upstream direction. The minimum
reserved net data rate for the bearer channel, coded in
bit/s. This parameter is used only if the Rate Adaptation
Mode of the bearer channel (i.e., vdsl2ServProfRaMode) is set
to Dynamic.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.21 |
vdsl2ServProfCh2MaxDataRateDsMaximum Data Rate on Downstream direction. The maximum net
data rate for the bearer channel, coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.22 |
vdsl2ServProfCh2MaxDataRateUsMaximum Data Rate on Upstream direction. The maximum net data
rate for the bearer channel, coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.23 |
vdsl2ServProfCh2MinDataRateLowPwrDsMinimum Data Rate in Low Power state on Downstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s, during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.24 |
vdsl2ServProfCh2MinDataRateLowPwrUsMinimum Data Rate in Low Power state on Upstream direction.
The minimum net data rate for the bearer channel, coded in
bit/s, during the low power state (L1 in G.992.2, L2 in
G.992.3).
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.25 |
vdsl2ServProfCh2RaRatioDsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #2 when performing rate
adaptation on Downstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
vdsl2ServProfCh2RaRatioDs is the ratio of excess data
rate to be assigned to all other bearer channels on Downstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.26 |
vdsl2ServProfCh2RaRatioUsRate Adaptation Ratio. The ratio (in %) that should be taken
into account for the bearer channel #2 when performing rate
adaptation on Upstream. The ratio refers to the available
data rate in excess of the Minimum Data Rate, summed over all
bearer channels. Also, the 100 -
vdsl2ServProfCh2RaRatioUs is the ratio of excess data
rate to be assigned to all other bearer channels on Upstream
direction. The sum of rate adaptation ratios over all bearers
on the same direction shall be equal to 100%.
Unit: percentsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.27 |
vdsl2ServProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.28 |
hwvdsl2ServProfMinEtrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
minimum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.29 |
hwvdsl2ServProfMinEtrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.30 |
hwvdsl2ServProfMaxEtrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
maximum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.31 |
hwvdsl2ServProfMaxEtrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
maximum expected throughput for the bearer channel.The values range in steps of
1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.32 |
hwvdsl2ServProfMaxNdrRtxDsIf retransmission is used in downstream direction, this parameter specifies the
maximum net data rate for the bearer channel. The values range in steps of 1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.33 |
hwvdsl2ServProfMaxNdrRtxUsIf retransmission is used in upstream direction, this parameter specifies the
maximum net data rate for the bearer channel.The values range in steps of 1000 bit/s.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.1.1.34 |
vdsl2SpectrumProfTableThe table vdsl2SpectrumProfTable contains VDSL2 line
spectrum configuration.
The index of this table is vdsl2SpectrumProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2SpectrumProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.2 |
vdsl2SpectrumProfEntryThe table vdsl2SpectrumProfTable contains VDSL2 line
spectrum configuration.
The index of this entry is vdsl2SpectrumProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2SpectrumProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.2.1 |
vdsl2SpectrumProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.1 |
vdsl2SpectrumProfXtuTransSysEnaxTU Transmission System Enabling (xTSE). A list of the
different coding types enabled in this profile. It is coded
in a bit-map representation with 1 or more bits set. A bit
set to '1' means that the XTUs may apply the respective
coding for the VDSL line. A bit set to '0' means that
the XTUs cannot apply the respective coding for the VDSL
line. All 'reserved' bits should be set to '0'.rw Vdsl2TransmissionModeType (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.2 |
vdsl2SpectrumProfScMaskDsSub-carriers mask. A bitmap of 512 bits that allows masking
up to 512 downstream sub-carriers, depending on NSCds. If bit
i (0 <= i < NSCds) is set to '1', the respective
downstream sub-carrier i is masked, and if set to '0', the
respective sub-carrier is unmasked. Note that there should
always be unmasked sub-carriers (i.e., the object cannot be
all 1's). Also note that if NSCds < 512, all bits
i (NSCds i <= 512) should be set to '1'.rw Vdsl2ScMaskDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.3 |
vdsl2SpectrumProfScMaskUsSub-carriers mask. A bitmap of 64 bits that allows masking
up to 64 downstream sub-carriers, depending on NSCds. If
bit i (0 <= i < NSCus) is set to '1', the respective
upstream sub-carrier i is masked, and if set to '0', the
respective sub-carrier is unmasked. Note that there
should always be unmasked sub-carriers (i.e., the object
cannot be all 1's). Also note that if NSCus <
64, all bits i (NSCus < i <= 64) should be set to '1'.rw Vdsl2ScMaskUs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.4 |
vdsl2SpectrumProfVDSLtoneblackoutThe subset of subcarriermask that shall be
used to mask the subcarriers.
It is a string of bands consist of begin tone index
and end tone index.
for example :0-10,20-50,100-4095
It can contain as most as 8 bands.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.5 |
vdsl2SpectrumProfRfiBandsThe subset of PSD mask breakpoints that shall be
used to notch an RFI band.
It is a string of bands consist of begin tone index
and end tone index.
for example :0-10,20-50,100-4095
It can contain as most as 16 bands.rw OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.6 |
vdsl2SpectrumProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.7 |
hwvdsl2SpectrumProfRtxModeDsThe mode of operation of G.998.4 retransmission in downstream direction.
Options:
1. forbidden(0) - G.998.4 retransmission not allowed.
2. preferred(1) - G.998.4 retransmission is preferred.
3. forced(2) - Force the use of the G.998.4 retransmission.
4. testmode(3) - Force the use of the G.998.4 retransmission in test mode.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.8 |
hwvdsl2SpectrumProfRtxModeUsThe mode of operation of G.998.4 retransmission in upstream direction.
Options:
1. forbidden(0) - G.998.4 retransmission not allowed.
2. preferred(1) - G.998.4 retransmission is preferred.
3. forced(2) - Force the use of the G.998.4 retransmission.
4. testmode(3) - Force the use of the G.998.4 retransmission in test mode.rw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.9 |
hwvdsl2SpectrumProfProfLeftrThreshDsIf retransmission is used in downstream direction, this parameter specifies the
threshold for declaring a near-end leftr defect. The value is coded as a fraction of the
NDR with valid range from 0.01 to 0.99 with increments of 0.01. A special value means the
ETR shall be used as the default threshold for declaring a leftr defect.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.10 |
hwvdsl2SpectrumProfProfLeftrThreshUsIf retransmission is used in upstream direction, this parameter specifies the
threshold for declaring a near-end leftr defect. The value is coded as a fraction of the
NDR with valid range from 0.01 to 0.99 with increments of 0.01. A special value means the
ETR shall be used as the default threshold for declaring a leftr defect.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.2.1.11 |
vdsl2SpectrumProfModeSpecTableThe table vdsl2SpectrumProfModeSpecTable extends the
VDSL2 line configuration profile by VDSL Mode Specific
parameters.
A row in this table that has an index of
vdsl2LconfProfVdslMode == defMode(1), is called a
'mandatory' row.
A row in this table that has an index such that
vdsl2LconfProfVdslMode is not equal to defMode(1),
is called an 'optional' row.
When a row in the vdsl2LineConfProfTable table
(the parent row) is created, the SNMP agent will
automatically create a 'mandatory' row in this table.
When the parent row is deleted, the SNMP agent will
automatically delete all associated rows in this table.
Any attempt to delete the 'mandatory' row using the
vdsl2LConfProfModeSpecRowStatus attribute will be
rejected by the SNMP agent.
The manager MAY create an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute if
the parent row exists.
The manager MAY delete an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute at
any time.
If the actual transmission mode of a DSL line does not
match one of the 'optional' rows in this table, then
the line will use the PSD configuration from the
'mandatory' row.
The indexes of this table are vdsl2SpectrumProfName and
vdsl2SpectrumProfXdslMode. SEQUENCE OF Vdsl2SpectrumProfModeSpecEntry .1.3.6.1.4.1.2011.6.115.1.5.4.3 |
vdsl2SpectrumProfModeSpecEntryThe table vdsl2SpectrumProfModeSpecTable extends the
VDSL2 line configuration profile by VDSL Mode Specific
parameters.
A row in this table that has an index of
vdsl2LconfProfVdslMode == defMode(1), is called a
'mandatory' row.
A row in this table that has an index such that
vdsl2LconfProfVdslMode is not equal to defMode(1),
is called an 'optional' row.
When a row in the vdsl2LineConfProfTable table
(the parent row) is created, the SNMP agent will
automatically create a 'mandatory' row in this table.
When the parent row is deleted, the SNMP agent will
automatically delete all associated rows in this table.
Any attempt to delete the 'mandatory' row using the
vdsl2LConfProfModeSpecRowStatus attribute will be
rejected by the SNMP agent.
The manager MAY create an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute if
the parent row exists.
The manager MAY delete an 'optional' row in this table
using the vdsl2LConfProfModeSpecRowStatus attribute at
any time.
If the actual transmission mode of a DSL line does not
match one of the 'optional' rows in this table, then
the line will use the PSD configuration from the
'mandatory' row.
The indexes of this entry are vdsl2SpectrumProfName
and vdsl2SpectrumProfXdslMode. Vdsl2SpectrumProfModeSpecEntry .1.3.6.1.4.1.2011.6.115.1.5.4.3.1 |
vdsl2SpectrumProfXdslModeThe xDSL Mode is a way of categorizing the various xDSL
transmission modes into groups, each group (xDSL Mode) shares
the same PSD configuration.
There should be multiple entries in this table for a given
line profile in case multiple bits are set in
vdsl2LConfProfXtuTransSysEna for that profile. Vdsl2OperationModes (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.1 |
vdsl2SpectrumProfMaxNomPsdDsThe maximum nominal transmit PSD in the downstream
direction during initialization and Showtime. It ranges from
-600 to -300 units of 0.1 dBm/Hz. (physical values are -60 to
-30 dBm/Hz).
Unit: 0.1 dBm/Hzrw Integer32(-600..-300) UNITS "0.1 dBm/Hz" .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.2 |
vdsl2SpectrumProfMaxNomPsdUsThe maximum nominal transmit PSD in the upstream direction
during initialization and Showtime. It ranges from -600 to
-300 units of 0.1 dBm/Hz. (physical values are -60 to
-30 dBm/Hz).
Unit: 0.1 dBm/Hzrw Integer32(-600..-300) UNITS "0.1 dBm/Hz" .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.3 |
vdsl2SpectrumProfMaxNomAtpDsThe maximum nominal aggregate transmit power in the
downstream direction during initialization and Showtime. It
ranges from 0 to 255 units of 0.1 dBm (physical values are 0
to 25.5 dBm).
Unit: 0.1 dBmrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.4 |
vdsl2SpectrumProfMaxNomAtpUsThe maximum nominal aggregate transmit power in the upstream
direction during initialization and Showtime. It ranges from
0 to 255 units of 0.1 dBm (physical values are 0 to 25.5
dBm).
Unit: 0.1 dBmrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.5 |
vdsl2SpectrumProfMaxAggRxPwrUsThe maximum upstream aggregate receive power over the relevant
set of sub-carriers. The xTU-C should verify that the
upstream power cutback is such that this maximum aggregate
receive power value is honored. It ranges from -255 to 255
units of 0.1 dBm (physical values are -25.5 to 25.5 dBm).
A value of all means that there is no limit.
Unit: 0.1 dBmrw Integer32(-255..255) UNITS "0.1 dBm" .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.6 |
vdsl2SpectrumProfPsdMaskDsThis configuration parameter defines the downstream PSD mask
applicable at the U-C2 reference point.
This MIB PSD mask may impose PSD restrictions in addition
to the Limit PSD mask defined in the relevant Recommendation
(e.g., G.992.5, G.993.2).
This is a string of 32 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 6-8 - Same, for a 3rd breakpoint.
This architecture continues until octets 94-95, which are
associated with a 32nd breakpoint.
Each subcarrier index is an unsigned number in the range 0 and
(NSCds - 1). Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 32, all remaining
octets are set to the value 0xff. Note that the content of this
object should be correlated with the sub-carriers mask and with
the RFI setup.rw Vdsl2PsdMaskDs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.7 |
vdsl2SpectrumProfPsdMaskUsThis configuration parameter defines the upstream PSD
mask applicable at the U R2 reference point. This MIB
PSD mask may impose PSD restrictions in addition to the
Limit PSD mask defined in the relevant Recommendations
(e.g., ITU-T Recommendations G.992.3, G.993.2).
This is a string of 16 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 45-47 - Same, for a 3rd breakpoint.
This architecture continues until octets 45-47, which are
associated with a 16th breakpoint.
Each subcarrier index is an unsigned number in the range 0 and
(NSCus - 1). Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 16, all remaining
octets are set to the value 0xff. Note that the content of this
object should be correlated with the sub-carriers mask and with
the RFI setup.rw Vdsl2PsdMaskUs (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.8 |
vdsl2SpectrumProfUpsPsdMaskSelectionThis configuration parameter defines which upstream PSD mask is enabled.
This parameter is used only for Annexes J and M of ITU T Recs G.992.3 and G.992.5.
As only one selection parameter is defined in the MIB,
the same selection value applies to all relevant modes enabled in the XTSE line configuration parameter.
It ranges from 1 to 9 and selects the mask with the following definition
This object is defaulted adlu-32/eu-32.rw Vdsl2UpsPsdMaskSelection (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.9 |
vdsl2SpectrumProfPmModePower management state Enabling. Defines the power states the
ATU-C or ATU-R may autonomously transition to on this line.
Options:
1. allowTransitionsToIdle (0)
2. allowTransitionsToLowPower (1)
A bit with a '1' value means that the ATU is allowed to transit
into the respective state and a '0' value means that the ATU is
not allowed to transit into the respective state.rw Vdsl2LConfProfPmMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.10 |
vdsl2SpectrumProfL0TimeThis minimum time (in seconds) between an Exit from the L2
state and the next Entry into the L2 state. It ranges from 0
to 255 seconds.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.11 |
vdsl2SpectrumProfL2TimeThis minimum time (in seconds) between an Entry into the
L2 state and the first Power Trim in the L2 state and between
two consecutive Power Trims in the L2 State.
It ranges from 0 to 255 seconds.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.12 |
vdsl2SpectrumProfL2AtprThe maximum aggregate transmit power reduction (in dB) that
can be performed at transition of L0 to L2 state or through a
single Power Trim in the L2 state.
Unit: dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.13 |
vdsl2SpectrumProfL2AtprtThe total maximum aggregate transmit power reduction
(in dB) that can be performed in an L2 state. This is the
sum of all reductions of L2 Request (i.e., at transition of
L0 to L2 state) and Power Trims.
Unit: dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.14 |
vdsl2SpectrumProfModeSpecRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.3.1.15 |
vdsl2SpectrumProfSubProfTableThe table vdsl2SpectrumProfSubProfTable extends the
VDSL2 line configuration profile by profile parameters.
The indexes of this table are vdsl2SpectrumProfName,
vdsl2SpectrumProfXdslMode, and vdsl2SpectrumProfSubProfiles. SEQUENCE OF Vdsl2SpectrumProfSubProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.4 |
vdsl2SpectrumProfSubProfEntryThe table vdsl2SpectrumProfSubProfTable extends the
VDSL2 line configuration profile by profile parameters.
The indexes of this entry are vdsl2SpectrumProfName,
vdsl2SpectrumProfXdslMode, and vdsl2SpectrumProfSubProfiles. Vdsl2SpectrumProfSubProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.4.1 |
vdsl2SpectrumProfSubProfilesThis configuration parameter contains the G.993.2 profiles
to be allowed by the near-end xTU on this line.
This object is defaulted Profile17a. Vdsl2SubProfiles (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.1 |
vdsl2SpectrumProfSubProfilesWeightThis configuration parameter contains the G.993.2 profiles' weight
to be allowed by the near-end xTU on this line. This object is defaulted
priorityWeight1.rw Vdsl2SubProfilesWeight (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.2 |
vdsl2SpectrumProfPsdClassMask(CLASSMASK).
In order to reduce the number of configuration
possibilities, the limit Power Spectral Density masks
(see LIMITMASK) are grouped in PSD mask classes.
Each class is designed such that the PSD levels of each
limit PSD mask of a specific class are equal in their
respective passband above 276 kHz.
This parameter is defined per VDSL2 Annex enabled in the
xdsl2LConfProfXtuTransSysEna object. It selects a single
PSD mask class per Annex that is activated at the
VTU-O. This object is defaulted A998/B997M1c/C998.rw Vdsl2TIPsdClassMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.3 |
vdsl2SpectrumProfPsdLimitMask(LIMITMASK).
This configuration parameter contains the G.993.2 limit
PSD masks of the selected PSD mask class, enabled by the
near-end xTU on this line for each class of profiles.
This parameter is defined per VDSL2 Annex enabled in the
xdsl2LConfProfXtuTransSysEna object.
Through this parameter several limit PSD masks of the
selected PSD mask class (xdsl2LConfProfClassMask) may be
enabled. The enabling parameter is coded in a bitmap
representation (0 if the associated mask is not allowed,
1 if it is allowed).This object is defaulted AnnexB998-M2x-B.rw Vdsl2PsdLimitMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.4 |
vdsl2SpectrumProfUs0PsdMaskThis parameter contains the US0 PSD masks to be allowed by
the near-end xTU on the line. This parameter is only defined for G.993.2 Annex A.
It is represented as a bitmap (0 if not allowed and 1 if allowed) with the following definitions.
This object is defaulted ADLU-32/EU-32.rw Vdsl2Us0PsdMask (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.5 |
vdsl2SpectrumProfUs0DisableThis configuration parameter indicates if the use of US0 is disabled
for each limit PSD mask enabled in the LIMITMASK parameter. This object is defaulted Unused.rw Vdsl2Us0Disable (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.6 |
vdsl2SpectrumProfSubProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.4.1.7 |
vdsl2DpboProfTableThe table vdsl2DpboProfTable contains VDSL2 DPBO
configuration.
The index of this table is vdsl2DpboProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2DpboProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.5 |
vdsl2DpboProfEntryThe table vdsl2DpboProfTable contains VDSL2 DPBO
configuration.
The index of this entry is vdsl2DpboProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2DpboProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.5.1 |
vdsl2DpboProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.1 |
vdsl2DpboProfWkMdMaskThis configuration parameter defines the current enabled DPBO working mode mask.
DPBO working mode enabling:1-ADSL, 2-ADSL2+ 3-VDSL2.
Options:
1. current enabled dpbo work mode:ADSL
2. current enabled dpbo work mode:ADSL2+
3. current enabled dpbo work mode:ADSL,ADSL2+
4. current enabled dpbo work mode:VDSL2
5. current enabled dpbo work mode:ADSL,VDSL2
6. current enabled dpbo work mode:ADSL2+,VDSL2
7. current enabled dpbo work mode:ADSL,ADSL2+,VDSL2rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.2 |
vdsl2DpboProfEpsdThis parameter defines the PSD mask that is assumed to be permitted at the exchange.
This parameter shall use the same format as PSDMASKds.The maximum number of breakpoints
for DPBOEPSD is 16.
This is a string of 16 pairs of values in the following
structure:
Octets 0+1 - Index of 1st sub-carrier used in the context
of a first breakpoint.
Octet 2 - The PSD reduction for the sub-carrier indicated in
octets 0 and 1.
Octets 3-5 - Same, for a 2nd breakpoint.
Octets 6-8 - Same, for a 3rd breakpoint.
This architecture continues until octets 45-47, which are
associated with a 16th breakpoint.
Each subcarrier index is an unsigned number in the range 1 and
NSCds. Each PSD reduction value is in the range 0 (0dBm/Hz) to
255 (-127.5dBm/Hz) with steps of 0.5dBm/Hz. Valid values are
in the range 0 to 190 (0 to -95dBm/Hz).
When the number of breakpoints is less than 16, all remaining
octets are set to the value 0xff.rw Vdsl2DpboEpsd (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.3 |
vdsl2DpboProfEselThis configuration parameter defines the assumed electrical length of
cables (E-side cables) connecting exchange based DSL services to a remote
flexibility point (cabinet), that hosts the xTU-C that is subject to
spectrally shaped downstream power back-off depending on this length.
For this parameter the electrical length is defined as the loss (in dB)
of an equivalent length of hypothetical cable at a reference frequency
defined by the network operator or in spectrum management regulations.
DPBOESEL shall be coded as an unsigned integer representing an electrical
length from 0 dB (coded as 0) to 255.5 dB (coded as 511) in steps of 0.5 dB.
All values in the range are valid.If DPBOESEL is set to zero, the DPBO in
this section shall be disabled.
Unit: 0.5dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.4 |
vdsl2DpboProfEscmThis configuration parameter defines a cable model in terms of three scalars
DPBOESCMA, DPBOESCMB and DPBOESCMC that shall be used to describe the frequency
dependent loss of E-side cables.Parameters DPBOESCMA, DPBOESCMB, DPBOESCMC shall be
coded as unsigned integers representing a scalar value from -1 (coded as 0) to 1.5
(coded as 640) in step of 1/256. All values in the range are valid.
Octets 0+1 DPBOESCMA
Octets 2+3 DPBOESCMB
Octets 4+5 DPBOESCMCrw Vdsl2DpboEscm (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.5 |
vdsl2DpboProfMusDPBOMUS defines the assumed Minimum Usable receive Signal PSD (in dBm/Hz) for
exchange based services, used to modify parameter DPBOFMAX defined below. It
shall be coded as an unsigned integer representing a PSD level from 0 dBm/Hz
(coded as 0) to -127.5 dBm/Hz (coded as 255) in steps of 0.5 dBm/Hz.
All values in the range are valid.
Unit: -0.5dBm/Hzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.6 |
vdsl2DpboProfFminDPBOFMIN defines the minimum frequency from which the DPBO shall be applied.
It shall be coded as a 16 bits unsigned integer representing a frequency in
multiple of 4.3125 KHz. The range of valid values is from 0 kHz (coded as 0)
to 8832 kHz (coded as 2048).
Unit: 4.3125 KHzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.7 |
vdsl2DpboProfFmaxDPBOFMAX defines the maximum frequency at which DPBO may be applied. It shall be
coded as a 16 bits unsigned integer representing a frequency in multiple of 4.3125 KHz.
The range of valid values is from 138 kHz (coded as 32) to 29997.75 kHz (coded as 6956).
Unit: 4.3125 KHzrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.8 |
vdsl2DpboProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.9 |
vdsl2DpboProfEselMinDPBOESELMIN in dB is the minimum of all main cable losses for the KVz supplied when using
the SOL model (expansion of a KVz and VDSL2 provision of additional KVz areas from this KVz
using cross-cables to additional KVz), including the KVz at the MSAN site. This value must
be adjustable as the minimum requirement via the SNMP interface in the configuration profile
for each VDSL2 port, and is set individually for each MSAN site and usage. As an option,
As an option, adjustment can be done for each MSAN or line card, thus taking effect for
entire port groups. It is used only for determining the MUF.
Unit: 0.5dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.5.1.65535 |
vdsl2UpboProfTableThe table vdsl2UpboProfTable contains VDSL2 upbo
configuration. The index of this table is vdsl2UpboProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2UpboProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.6 |
vdsl2UpboProfEntryThe table vdsl2UpboProfTable contains VDSL2 upbo
configuration .
The index of this entry is vdsl2UpboProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2UpboProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.6.1 |
vdsl2UpboProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.1 |
vdsl2UpboProfPsdBandThis parameter defines the UPBO reference PSD used to compute the upstream power back-off
for each upstream band. A UPBOPSD defined for each band shall consist of two
parameters [a, b]. Parameter a shall be coded as an unsigned 12-bit number from 40 dBm/Hz
(coded as 0) to 80.95 dBm/Hz (coded as 4095) in steps of 0.01 dBm/Hz; and b shall be coded
as an unsigned 12 bit number from 0 (coded as 0) to 40.95 dBm/Hz (coded as 4095) in steps
of 0.01 dBm/Hz. The UPBO reference PSD at the frequency f expressed in MHz shall be equal
to '-a-b(SQRT(f))'. The set of parameter values a = 40 dBm/Hz, b = 0 dBm/Hz is a special configuration
to disable UPBO in the respective upstream band.
Octets 0+1 - a[0]
Octets 2+3 - b[0]
Octets 4+5 - a[1]
Octets 6+7 - b[1]
Octets 8+9 - a[2]
Octets 10+11 - b[2]
Octets 12+13 - a[3]
Octets 14+15 - b[3]
Octets 16+17 - a[4]
Octets 18+19 - b[4]rw Vdsl2UpboPsdBand (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.2 |
vdsl2UpboProfKlThis parameter defines the electrical loop length expressed in dB at 1MHz, kl0, configured by
the CO-MIB. The value shall be coded as an unsigned 16 bit number in the range 0 (coded as 0)
to 128 dB (coded as 1280) in steps of 0.1 dB.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.3 |
vdsl2UpboProfKlfThis parameter is a flag that forces the VTU-R to use the electrical loop length of the CO-MIB
(UPBOKL) to compute the UPBO. The value shall be forced if the flag is set to 1. Otherwise, the
electrical loop length shall be autonomously selected by the VTU-O.rw Vdsl2UpboKlf (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.4 |
vdsl2UpboProfKlAutoThis parameter defines the mode in which kl0 is computed when Vdsl2UpboKlf is auto.
The value is defined as below:
1-max(kl0CO,kl0CPE)
2-min(kl0CO,kl0CPE)
3-kl0CO
4-kl0CPE
The default value is 3rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.5 |
vdsl2UpboProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.6 |
vdsl2UpboProfBoostModeThis object indicates whether the equalized FEXT UPBO method is supported or not.
Options:
1. disable(1) - The Equalized FEXT UPBO method is not supported
2. enable(2) - The Equalized FEXT UPBO method is supportedrw Vdsl2UpboBoostMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.65535 |
vdsl2UpboProfKl0RefBandOctets 0+1 - length[1]
Octets 2+3 - length[2]
Octets 4+5 - length[3]
Octets 6+7 - length[4]rw Vdsl2UpboKl0RefBand (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.6.1.65536 |
vdsl2NoiseMarginProfTableThe table vdsl2NoiseMarginProfTable contains VDSL2 noise margin
configuration.
The index of this table is vdsl2NoiseMarginProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2NoiseMarginProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.7 |
vdsl2NoiseMarginProfEntryThe table vdsl2NoiseMarginProfTable contains VDSL2 noise margin
configuration.
The index of this entry is vdsl2NoiseMarginProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2NoiseMarginProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.7.1 |
vdsl2NoiseMarginProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.1 |
vdsl2NoiseMarginProfTargetSnrmDsThe minimum Noise Margin the xTU-R receiver shall achieve,
relative to the BER requirement for each of the downstream
bearer channels, to successfully complete initialization.
The target noise margin ranges from 0 to 310 units of 0.1 dB
(Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.2 |
vdsl2NoiseMarginProfTargetSnrmUsThe minimum Noise Margin the xTU-C receiver shall achieve,
relative to the BER requirement for each of the upstream
bearer channels, to successfully complete initialization.
The target noise margin ranges from 0 to 310 units of 0.1 dB
(Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.3 |
vdsl2NoiseMarginProfMaxSnrmDsThe maximum Noise Margin the xTU-R receiver shall try to
sustain. If the Noise Margin is above this level, the xTU-R
shall request that the xTU-C reduce the xTU-C transmit power
to get a noise margin below this limit (if this functionality
is supported). The maximum noise margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB). A value of
all 1's means that there is no maximum.
Unit: 0.1 dBrw Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.4 |
vdsl2NoiseMarginProfMaxSnrmUsThe maximum Noise Margin the xTU-C receiver shall try to
sustain. If the Noise Margin is above this level, the xTU-C
shall request that the xTU-R reduce the xTU-R transmit power
to get a noise margin below this limit (if this functionality
is supported). The maximum noise margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB). A value of
all 1's means that there is no maximum.
Unit: 0.1 dBrw Unsigned32 UNITS "0.1 dB" .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.5 |
vdsl2NoiseMarginProfMinSnrmDsThe minimum Noise Margin the xTU-R receiver shall tolerate.
If the noise margin falls below this level, the xTU-R shall
request that the xTU-C increase the xTU-C transmit power.
If an increase to xTU-C transmit power is not possible, a
loss-of-margin (LOM) defect occurs, the xTU-R shall fail and
attempt to reinitialize and the NMS shall be notified. The
minimum noise margin ranges from 0 to 310 units of
0.1 dB (Physical values are 0 to 31 dB). A value of 0 means
that there is no minimum.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.6 |
vdsl2NoiseMarginProfMinSnrmUsThe minimum Noise Margin the xTU-C receiver shall tolerate.
If the noise margin falls below this level, the xTU-C shall
request that the xTU-R increase the xTU-R transmit power.
If an increase of xTU-R transmit power is not possible, a
loss-of-margin (LOM) defect occurs, the xTU-C shall fail and
attempt to re-initialize and the NMS shall be notified. The
minimum noise margin ranges from 0 to 310 units of
0.1 dB (Physical values are 0 to 31 dB). A value of 0 means
that there is no minimum.
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.7 |
vdsl2NoiseMarginProfRaUsNrmDsThe Downstream Up-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. If the downstream
noise margin is above this value and stays above it for
more than the time specified by the Vdsl2ServProfRaUsTimeDs,
the xTU-R shall attempt to increase the downstream net data
rate. The Downstream Up-shift Noise Margin ranges from 0 to
310 units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.8 |
vdsl2NoiseMarginProfRaUsNrmUsThe Upstream Up-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. If the upstream
noise margin is above this value and stays above it for more
than the time specified by the Vdsl2LineConfRaUsTimeUs, the
xTU-C shall attempt to increase the upstream net data rate.
The Upstream Up-shift Noise Margin ranges from 0 to 310 units
of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.9 |
vdsl2NoiseMarginProfRaUsTimeDsThe Downstream Up-Shift Time Interval, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. The interval of
time that the downstream noise margin should stay above the
Downstream Up-shift Noise Margin before the xTU-R shall
attempt to increase the downstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.10 |
vdsl2NoiseMarginProfRaUsTimeUsThe Upstream Up-Shift Time Interval, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. The interval of
time the upstream noise margin should stay above the
Upstream Up-shift Noise Margin before the xTU-C shall
attempt to increase the upstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.11 |
vdsl2NoiseMarginProfRaDsNrmsDsThe Downstream Down-Shift Noise Margin value, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. If the downstream
noise margin is below this value and stays below that for more
than the time specified by the Vdsl2LineConfRaDsTimeDs, the
xTU-R shall attempt to decrease the downstream net data rate.
The Downstream Down-shift Noise Margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.12 |
vdsl2NoiseMarginProfRaDsNrmsUsThe Upstream Downshift Noise Margin value, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. If the upstream
noise margin is below this value and stays below that for more
than the time specified by the Vdsl2LineConfRaDsTimeUs, the
xTU-C shall attempt to decrease the upstream net data rate.
The Upstream Down-shift Noise Margin ranges from 0 to 310
units of 0.1 dB (Physical values are 0 to 31 dB).
Unit: 0.1 dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.13 |
vdsl2NoiseMarginProfRaDsTimeDsThe Downstream Downshift Time Interval, to be used when
Vdsl2LineConfRaModeDs is set to DynamicRa. The interval of
time the downstream noise margin should stay below the
Downstream Down-shift Noise Margin before the xTU-R shall
attempt to decrease the downstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.14 |
vdsl2NoiseMarginProfRaDsTimeUsThe Upstream Down-Shift Time Interval, to be used when
Vdsl2LineConfRaModeUs is set to DynamicRa. The interval of
time the upstream noise margin should stay below the Upstream
Down-shift Noise Margin before the xTU-C shall attempt to
decrease the upstream net data rate.
Unit: secondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.15 |
vdsl2NoiseMarginProfDsThresholdDsData Rate Threshold Downshift for downstream direction. A
'Down-shift rate change' event is triggered when the actual
downstream data rate is below the data rate at the last entry
into Showtime, by more than the threshold. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.16 |
vdsl2NoiseMarginProfUsThresholdDsData Rate Threshold Up shift for downstream direction. An
'Up-shift rate change' event is triggered when the actual
downstream data rate exceeds, by more than the threshold, the
data rate at the last entry into Showtime. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.17 |
vdsl2NoiseMarginProfDsThresholdUsData Rate Threshold Downshift for upstream direction. A
'Down-shift rate change' event is triggered when the actual
upstream data rate is below the data rate at the last entry
into Showtime, by more than the threshold. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.18 |
vdsl2NoiseMarginProfUsThresholdUsData Rate Threshold Up shift for upstream direction. An
'Up-shift rate change' event is triggered when the actual
upstream data rate exceeds, by more than the threshold, the
data rate at the last entry into Showtime. The parameter is
coded in bit/s.
Unit: bits/secondrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.19 |
vdsl2NoiseMarginProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.7.1.20 |
vdsl2DelayInpProfTableThe table vdsl2DelayInpProfTable contains VDSL2 delay inp
configuration. The index of this table is vdsl2DelayInpProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. SEQUENCE OF Vdsl2DelayInpProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.8 |
vdsl2DelayInpProfEntryThe table vdsl2DelayInpProfTable contains VDSL2 delay inp
configuration. The index of this entry is vdsl2DelayInpProfName.
A default profile with an index of 'DEFVAL' will
always exist and its parameters will be set to vendor-specific
values, unless otherwise specified in this document. Vdsl2DelayInpProfEntry .1.3.6.1.4.1.2011.6.115.1.5.4.8.1 |
vdsl2DelayInpProfNameThis object identifies a row in this table. OCTET STRING .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.1 |
vdsl2DelayInpProfForceINPThis parameter indicates that the framer settings of the
bearer shall be selected such that the impulse noise protection
computed according to the formula specified in the relevant
Recommendation is greater or equal to the minimal impulse noise
protection requirement.
This flag shall have the same value for all the bearers of one
line in the same direction.rw Vdsl2ForceINP (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.2 |
vdsl2DelayInpProfCh1MaxDelayDsIf retransmission is not used in downstream direction,this parameter
is maximum interleave delay on downstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Downstream direction. The XTUs shall choose the S (factor)
and D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayDs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.3 |
vdsl2DelayInpProfCh1MaxDelayUsIf retransmission is not used in upstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Upstream direction. The XTUs shall choose the S (factor) and
D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayUs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.4 |
vdsl2DelayInpProfCh1MinProtectionDsIf retransmission is not used in downstream direction,this parameter
is minimum impulse noise protection for the bearer channel on downstream
direction. The minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionDs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.5 |
vdsl2DelayInpProfCh1MinProtectionUsIf retransmission is not used in upstream direction,this parameter
is minimum impulse noise protection for the bearer channel on upstream
direction. The minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionUs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.6 |
vdsl2DelayInpProfCh2MaxDelayDsMaximum Interleave Delay on Downstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Downstream direction. The XTUs shall choose the S (factor)
and D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayDs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.7 |
vdsl2DelayInpProfCh2MaxDelayUsMaximum Interleave Delay on Upstream direction. The maximum
one-way interleaving delay introduced by the PMS-TC on
Upstream direction. The XTUs shall choose the S (factor) and
D (depth) values such that the actual one-way interleaving
delay (Vdsl2ChanStatusActDelay) is as close as possible to,
but less than or equal to, Vdsl2ChanConfMaxDelayUs. The
delay is coded in ms, with the value 0 indicating no delay
bound is being imposed.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.8 |
vdsl2DelayInpProfCh2MinProtectionDsMinimum Impulse Noise Protection on Downstream direction. The
minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionDs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.9 |
vdsl2DelayInpProfCh2MinProtectionUsMinimum Impulse Noise Protection on Upstream direction. The
minimum impulse noise protection for the bearer channel,
expressed in symbols. The parameter can take the following
values: noProtection (i.e., INP not required), halfSymbol
(i.e., INP length is 1/2 symbol) and 1-16 symbols in steps
of 1 symbol.
Unit: symbolsrw Vdsl2SymbolProtectionUs UNITS "symbols" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.10 |
vdsl2DelayInpProfRowStatusThis object is used to create a new row or to modify or
delete an existing row in this table.
A profile is activated by setting this object to 'active'.
When 'active' is set, the system will validate the profile.
Before a profile can be deleted or taken out of service
(by setting this object to 'destroy' or 'outOfService'),
it must be not referenced from all associated
lines.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.11 |
vdsl2DelayInpProfCh1PhyRcontrolDsTo enable or disable the retransmission function on downstream direction.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.12 |
vdsl2DelayInpProfCh1PhyRcontrolUsTo enable or disable the retransmission function on upstream direction.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.13 |
vdsl2DelayInpProfCh1INPmaxDsMaximum Impulse Noise Protection on downstream direction.
Options:
1. noProtection(1)
2. halfSymbol(2)
3. singleSymbol(3)
4. twoSymbols(4)
5. threeSymbols(5)
6. fourSymbols(6)
7. fiveSymbols(7)
8. sixSymbols(8)
9. sevenSymbols(9)
10. eightSymbols(10)
11. nineSymbols(11)
12. tenSymbols(12)
13. elevenSymbols(13)
14. twelveSymbols(14)
15. thirteeSymbols(15)
16. fourteenSymbols(16)
17. fifteenSymbols(17)
18. sixteenSymbols(18)
The value multiply 1/2 is the real value of Noise Protection values.
Unit: DMT Symbolrw Vdsl2SymbolProtectionDs UNITS "DMT Symbol" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.14 |
vdsl2DelayInpProfCh1INPmaxUsMaximum Impulse Noise Protection on upstream direction.
Options:
1. noProtection(1)
2. halfSymbol(2)
3. singleSymbol(3)
4. twoSymbols(4)
5. threeSymbols(5)
6. fourSymbols(6)
7. fiveSymbols(7)
8. sixSymbols(8)
9. sevenSymbols(9)
10. eightSymbols(10)
11. nineSymbols(11)
12. tenSymbols(12)
13. elevenSymbols(13)
14. twelveSymbols(14)
15. thirteeSymbols(15)
16. fourteenSymbols(16)
17. fifteenSymbols(17)
18. sixteenSymbols(18)
The value multiply 1/2 is the real value of Noise Protection values.
Unit: DMT Symbolrw Vdsl2SymbolProtectionUs UNITS "DMT Symbol" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.15 |
vdsl2DelayInpProfCh1MinRtxRatioDsMinimum rtxratio on downstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.16 |
vdsl2DelayInpProfCh1MinRtxRatioUsMinimum rtxratio on upstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.17 |
vdsl2DelayInpProfCh1MinRSoverheadDsThe minimum value of R/N on downstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.18 |
vdsl2DelayInpProfCh1MinRSoverheadUsThe minimum value of R/N on upstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.19 |
vdsl2DelayInpProfCh2PhyRcontrolDsTo enable or disable the retransmission function on downstream direction.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.20 |
vdsl2DelayInpProfCh2PhyRcontrolUsTo enable or disable the retransmission function on upstream direction.rw Vdsl2PhyRControl (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.21 |
vdsl2DelayInpProfCh2INPmaxDsMaximum Impulse Noise Protection on downstream direction.
Options:
1. noProtection(1)
2. halfSymbol(2)
3. singleSymbol(3)
4. twoSymbols(4)
5. threeSymbols(5)
6. fourSymbols(6)
7. fiveSymbols(7)
8. sixSymbols(8)
9. sevenSymbols(9)
10. eightSymbols(10)
11. nineSymbols(11)
12. tenSymbols(12)
13. elevenSymbols(13)
14. twelveSymbols(14)
15. thirteeSymbols(15)
16. fourteenSymbols(16)
17. fifteenSymbols(17)
18. sixteenSymbols(18)
The value multiply 1/2 is the real value of Noise Protection values.
Unit: DMT Symbolrw Vdsl2SymbolProtectionDs UNITS "DMT Symbol" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.22 |
vdsl2DelayInpProfCh2INPmaxUsMaximum Impulse Noise Protection on upstream direction.
Options:
1. noProtection(1)
2. halfSymbol(2)
3. singleSymbol(3)
4. twoSymbols(4)
5. threeSymbols(5)
6. fourSymbols(6)
7. fiveSymbols(7)
8. sixSymbols(8)
9. sevenSymbols(9)
10. eightSymbols(10)
11. nineSymbols(11)
12. tenSymbols(12)
13. elevenSymbols(13)
14. twelveSymbols(14)
15. thirteeSymbols(15)
16. fourteenSymbols(16)
17. fifteenSymbols(17)
18. sixteenSymbols(18)
The value multiply 1/2 is the real value of Noise Protection values.
Unit: DMT Symbolrw Vdsl2SymbolProtectionUs UNITS "DMT Symbol" .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.23 |
vdsl2DelayInpProfCh2MinRtxRatioDsMinimum rtxratio on downstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.24 |
vdsl2DelayInpProfCh2MinRtxRatioUsMinimum rtxratio on upstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.25 |
vdsl2DelayInpProfCh2MinRSoverheadDsThe minimum value of R/N on downstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.26 |
vdsl2DelayInpProfCh2MinRSoverheadUsThe minimum value of R/N on upstream direction.
Unit: 1/256rw Integer32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.27 |
hwvdsl2DelayInpProfCh1MaxDelayRtxDsIf retransmission is used in downstream direction, this parameter specifies
the maximum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 1 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.28 |
hwvdsl2DelayInpProfCh1MaxDelayRtxUsIf retransmission is used in upstream direction, this parameter specifies
the maximum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 1 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.29 |
hwvdsl2DelayInpProfCh1MinDelayRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 0 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.30 |
hwvdsl2DelayInpProfCh1MinDelayRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum for the instantaneous delay due to the effect of retransmission only
(see G.998.4 for detailed specification). The delay ranges from 0 to 63 ms by steps of 1 ms.
Unit: millisecondsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.31 |
hwvdsl2DelayInpProfCh1MinInpShineRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 63, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.32 |
hwvdsl2DelayInpProfCh1MinInpShineRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 63, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.33 |
hwvdsl2DelayInpProfCh1MinInp8ShineRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 127, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.34 |
hwvdsl2DelayInpProfCh1MinInp8ShineRtxUsIf retransmission is used in upstream direction, this parameter specifies the
minimum impulse noise protection against SHINE for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 127, inclusive.
Unit: symbolsrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.35 |
hwvdsl2DelayInpProfCh1ShineRatioRtxDsIf retransmission is used in downstream direction, this parameter specifies
the SHINE ratio (detailed definition see G.998.4).
The values range from 0 to 0.100 in increments of 0.001.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.36 |
hwvdsl2DelayInpProfCh1ShineRatioRtxUsIf retransmission is used in upstream direction, this parameter specifies
the SHINE ratio (detailed definition see G.998.4).
The values range from 0 to 0.100 in increments of 0.001.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.37 |
hwvdsl2DelayInpProfCh1MinInpReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 7, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.38 |
hwvdsl2DelayInpProfCh1MinInpReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 4.3125 kHz
and can take any integer value from 0 to 7, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.39 |
hwvdsl2DelayInpProfCh1MinInp8ReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 13, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.40 |
hwvdsl2DelayInpProfCh1MinInp8ReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the minimum impulse noise protection against REIN for the bearer channel if it is
transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The impulse
noise protection is expressed in DMT symbols with a subcarrier spacing of 8.625 kHz
and can take any integer value from 0 to 13, inclusive.rw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.41 |
hwvdsl2DelayInpProfCh1IatReinRtxDsIf retransmission is used in downstream direction, this parameter specifies
the inter-arrival time that shall be assumed for REIN protection.
Options:
1. frequency100Hz(0) - an inter-arrival time derived from a REIN at 100 Hz
2. frequency120Hz(1) - an inter-arrival time derived from a REIN at 120 Hzrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.42 |
hwvdsl2DelayInpProfCh1IatReinRtxUsIf retransmission is used in upstream direction, this parameter specifies
the inter-arrival time that shall be assumed for REIN protection.
Options:
1. frequency100Hz(0) - an inter-arrival time derived from a REIN at 100 Hz
2. frequency120Hz(1) - an inter-arrival time derived from a REIN at 120 Hzrw Enumeration .1.3.6.1.4.1.2011.6.115.1.5.4.8.1.43 |
vdsl2Scalar OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.6 |
vdsl2ScalarSC OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.6.1 |
vdsl2ScalarSCMaxInterfacesThis value determines the maximum number of
interfaces supported by vdsl2SCStatusTable,
vdsl2SCStatusBandTable, and vdsl2SCStatusSegmentTable.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.6.1.1 |
vdsl2ScalarSCAvailInterfacesThis value determines the currently available number of
interfaces listed in vdsl2SCStatusTable,
vdsl2SCStatusBandTable, and vdsl2SCStatusSegmentTable.ro Unsigned32 .1.3.6.1.4.1.2011.6.115.1.6.1.2 |
vdsl2Conformance OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.8 |
vdsl2Groups OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.8.1 |
vdsl2Compliances OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.8.2 |
vdsl2Mode OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.9 |
hwvdslmodecfgThis object is used to change VDSL management mode.
After the mode being changed, system will automatically
save data and reboot.rw Vdsl2CfgMode (HUAWEI-VDSL2-LINE-TC-MIB) .1.3.6.1.4.1.2011.6.115.1.9.1 |
vdsl2GlobalConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.10 |
vdsl2DpboEselGlobalConfigSwitchEnable/Disable VDSL port DPBOESEL shall Feature.
This object is defaulted disabled(2).
Options:
1. enabled(1) - enabled the switch
2. disabled(2) - disabled the switchrw Enumeration .1.3.6.1.4.1.2011.6.115.1.10.1 |
vdsl2DpboEselGlobalConfigValueThis configuration parameter defines the assumed electrical length of
cables (E-side cables) connecting exchange based DSL services to a remote
flexibility point (cabinet), that hosts the xTU-C that is subject to
spectrally shaped downstream power back-off depending on this length.
For this parameter the electrical length is defined as the loss (in dB)
of an equivalent length of hypothetical cable at a reference frequency
defined by the network operator or in spectrum management regulations.
DPBOESEL shall be coded as an unsigned integer representing an electrical
length from 0 dB (coded as 0) to 255.5 dB (coded as 511) in steps of 0.5 dB.
All values in the range are valid.If DPBOESEL is set to zero, the DPBO in
this section shall be disabled. This object is defaulted 84.
Unit: 0.5dBrw Unsigned32 .1.3.6.1.4.1.2011.6.115.1.10.2 |
vdsl2ProfileAutoNegotiationSwitchEnable/Disable the VDSL2 G993.2 profile auto-negotiation function.
Default values:disabled(2).
Options:
1. enabled(1) - enabled the switch
2. disabled(2) - disabled the switchrw Enumeration .1.3.6.1.4.1.2011.6.115.1.10.3 |
vdsl2MaximumInterleavedDepthSet the VDSL2 maximum interleaved depth function.
Default values:maxInterleavedDepth511(2).
Options:
1. maxInterleavedDepth64(1) - it means the interleaving depth up to 64 can be selected
2. maxInterleavedDepth511(2) - it means the interleaving depth up to 512 can be selectedrw Enumeration .1.3.6.1.4.1.2011.6.115.1.10.4 |
hwvdsl2AutoDeleteProfUnused OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.11 |
hwvdsl2AutoDeleteProfUnusedProfTypeThe profile type of deleting unused VDSL profile.
Options:
1. vdsl2LineConfTemplate(1) - VDSL2 line template
2. vdsl2LineConfProf(2) - VDSL2 line profile
3. vdsl2ChConfProfile(3) - VDSL2 channel profile
4. vdsl2LineAlarmConfTemplate(4) - VDSL2 alarm template
5. vdsl2LineAlarmConfProfile(5) - VDSL2 alarm profile
6. vdsl2ChAlarmConfProfile(6) - VDSL2 channel alarm profile
7. vdsl2ServProf(7) - VDSL2 service profile
8. vdsl2SpectrumProf(8) - VDSL2 spectrum profile
9. vdsl2DpboProf(9) - VDSL2 dpbo profile
10. vdsl2UpboProf(10) - VDSL2 upbo profile
11. vdsl2NoiseMarginProf(11) - VDSL2 noise-margin profile
12. vdsl2DelayInpProf(12) - VDSL2 inp-delay profile
13. vopDataRateConfProf(13) - XDSL data rate profile
14. vopLineSpectrumConfProf(14) - XDSL line spectrum profile
15. vopUPBOConfProf(15) - XDSL upbo profile
16. vopDPBOConfProf(16) - XDSL dpbo profile
17. vopRFIConfProf(17) - XDSL rfi profile
18. vopSNRMarginConfProf(18) - XDSL noise-margin profile
19. vopINPDelayConfProf(19) - XDSL inp-delay profile
20. vopVirtualNoiseConfProf(20) - XDSL virtual noise profile
21. vopModeSpecificPSDConfProf(21) - XDSL PSD profilerw Enumeration .1.3.6.1.4.1.2011.6.115.1.11.1 |
hwvdsl2AutoDeleteProfUnusedOperTypeThe operation type of deleting unused VDSL profile.
This object is defaulted all(2).
Options:
1. first(1) - Delete first profile
2. all(2) - Delete all profilerw Enumeration .1.3.6.1.4.1.2011.6.115.1.11.2 |
hwvdsl2Traps OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.15 |
hwvdsl2CommonTraps OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.15.1 |
hwvdsl2CommonTrapsPrefix OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.15.1.0 |
hwvdsl2ModeSwitchTrapVDSL mode switch trap.
This trap message is generated when the VDSL line mode fails
to be switched. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.1.0.1 |
hwvdsl2CurrentModeTrapVDSL current mode trap.
This trap message is generated when the current mode of the VDSL
line is reported to the NMS periodically. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.1.0.2 |
hwvdsl2PortStatusChangeTrapVDSL port status change trap.
This trap message is generated when the port status changes,
for example from up to down or from down to up.The parameter
information about the trap message describes the current
status of the link and the location where the trap message
is generated. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.1.0.3 |
hwvdsl2DeltOperResultTrapVDSL delt trap.
This trap message is generated when the result of the DELT performed
on the VDSL line is reported. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.1.0.4 |
hwvdsl2TemplateIDChangeTrapVDSL template change trap.
This trap message is generated when the VDSL templete changed. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.1.0.5 |
hwvdsl2AlarmTraps OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.15.2 |
hwvdsl2AlarmTrapsPrefix OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.15.2.0 |
hwvdsl2AutoDeactivateLackLicensesAlarmTrapThis trap message is generated when some xDSL ports or all the xDSL ports
are automatically deactivated due to lack of licenses. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.1 |
hwvdsl2PortAutoDeactiveLineFaultAlarmTrapThis trap message is generated when the VDSL port is automatically
deactivated due to the line fault. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.2 |
hwvdsl2PortReactiveAfterRecoverAlarmTrapThis trap message is generated when the VDSL port is re-activated
after the VDSL line recovers. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.3 |
hwvdsl2PerformanceStatiReachThresholdAlarmTrapThis trap message is generated when the line performance
statistics of the VDSL port reach the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.4 |
hwvdsl2DownstreamRateLowerThresholdAlarmTrapThis trap message is generated when the xDSL channel downstream
rate is lower than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.5 |
hwvdsl2ActivePortFailConfigParaAlarmTrapThis trap message is generated when it fails to activate the port
by using the VDSL line configuration parameters. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.6 |
hwvdsl2PerformanceStatisReachThresholdAlarmTrapThis trap message is generated when the channel performance statistics
of the VDSL port reach the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.7 |
hwvdsl2ChannelUpstreamLowerThresholdAlarmTrapThis trap message is generated when the xDSL channel upstream rate
is lower than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.8 |
hwvdsl2VTURPowerOffAlarmTrapThis trap message is generated when the VTU-R is powered off. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.9 |
hwvdsl2PortActiveRateChangeAlarmTrapThis trap message is generated when the VDSL port actived rate change. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.10 |
hwvdsl2ChipsetUnavailableAlarmTrapThis trap message is generated when the VDSL chipset is unavailable. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.11 |
hwvdsl2ChipsetRecoverAlarmTrapThis trap message is generated when the VDSL chipset recovers from unavailability. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.12 |
hwvdsl2ChannelUpstreamExcThreAlarmTrapThis trap message is generated when the xDSL channel upstream rate
increases to a value higher than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.13 |
hwvdsl2ChannelUpstreamRestoreThreAlarmTrapThis trap message is generated when the xDSL channel upstream rate
decreases to a value lower than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.14 |
hwvdsl2ChannelDownstreamExcThreAlarmTrapThis trap message is generated when the xDSL channel downstream rate
increases to a value higher than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.15 |
hwvdsl2ChannelDownstreamRestoreThreAlarmTrapThis trap message is generated when the xDSL channel downstream rate
decreases to a value lower than the threshold. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.16 |
hwvdsl2UnSuppVectorPortActFailAlarmTrapWhen the CPE connected to the port does not support vectoring and
cannot be activated in 993.2 mode, this trap is sent. NOTIFICATION-TYPE .1.3.6.1.4.1.2011.6.115.1.15.2.0.17 |
hwvdsl2TrapsVbOids OBJECT IDENTIFIER .1.3.6.1.4.1.2011.6.115.1.16 |
hwvdsl2LinePMThresholdItemIndicate the threshold item.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.16.1 |
hwvdsl2LinePMThresholdValueVDSL threshold valuero Integer32 .1.3.6.1.4.1.2011.6.115.1.16.2 |
hwvdsl2PortActFailReasonIndicate the the reason of the active port fail.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.16.3 |
hwvdsl2ChPMThresholdItemIndicate the threshold value of threshold item .ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.16.4 |
hwvdsl2ChPMCurrentValueIndicate the current value of threshold item.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.5 |
hwvdsl2ChPMThresholdValueIndicate the threshold value of threshold item.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.6 |
hwvdsl2LineActRateUsIndicate the line active data rate in
the upstream direction.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.7 |
hwvdsl2LineActRateDsIndicate the line active data rate in
the downstream direction.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.8 |
hwvdsl2ChipsetIDChipsetID, the chipset id of the board.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.9 |
hwvdsl2ModeSwitchResultVDSL mode switch result.
Options:
1. success(0) - success
2. fail(1) - failro Enumeration .1.3.6.1.4.1.2011.6.115.1.16.10 |
hwvdsl2LinePMCurrentValueIndicate the current value of threshold item.ro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.11 |
hwVdsl2RequestIDRequest IDro Integer32 .1.3.6.1.4.1.2011.6.115.1.16.12 |
hwACTChngeDescThe VDSL port actived rate change description.ro OCTET STRING .1.3.6.1.4.1.2011.6.115.1.16.13 |
hwVdsl2TemplateTypeType of the VDSL template ID.
Options:
1. lineConfTemplate(1) - VDSL2 line template
2. alarmConfTemplate(2) - VDSL2 alarm template
3. spectrumProf(3) - VDSL2 spectrum profile
4. dpboProf(4) - VDSL2 dpbo profile
5. upboProf(5) - VDSL2 upbo profile
6. serviceProf(6) - VDSL2 service profile
7. noiseMarginProf(7) - VDSL2 noise-margin profile
8. delayInpProf(8) - VDSL2 delay-inp profilero Enumeration .1.3.6.1.4.1.2011.6.115.1.16.14 |