ZTE-AN-PON-BASE-MIB

MIB Reference — IPNetwork Monitor

All MIBsZTE-AN-PON-BASE-MIB

Organization: ZTE Corporation

Last Updated: 2011-11-02

Category: ZTE Access Node (ZTE-AN) Management

Description:

Defines ZTE access node base PON management objects shared across EPON and GPON platform modules.

Imported Objects

From IF-MIB

InterfaceIndex
ifIndexOBJECT-TYPE

From INET-ADDRESS-MIB

InetAddress
InetAddressPrefixLength
InetAddressType

From SNMPv2-CONF

MODULE-COMPLIANCE
NOTIFICATION-GROUP
OBJECT-GROUP

From SNMPv2-SMI

Counter64
Integer32
IpAddress
MODULE-IDENTITY
NOTIFICATION-TYPE
OBJECT-TYPE
Unsigned32
enterprises

From SNMPv2-TC

DateAndTime
DisplayString
MacAddress
RowStatus
TEXTUAL-CONVENTION

From ZTE-AN-IF-MIB

zxAnSubIfIndexOBJECT-TYPE

From ZTE-AN-PON-TC-MIB

ZxAnPonOnuIndex

From ZTE-AN-SMI

zxAnPonOBJECT-IDENTITY

What Is ZTE-AN-PON-BASE-MIB?

ZTE-AN-PON-BASE-MIB is a ZTE access-node module that provides the shared base object structure used across ZTE's EPON and GPON platform-specific PON management MIBs. It organizes management data into base objects, notifications, ONU type information, OAM objects, GIS/location data, and rogue-ONU management. It is strongly oriented toward hardware/software status monitoring, making ZTE-AN-PON-BASE-MIB SNMP monitoring central to PON fault detection: its OAM objects convey PON link operational state between OLT and ONU, its notification objects carry PON fault/alarm traps, and its rogue-ONU management objects flag unauthorized devices attempting to join the network. As a 'base' module it is explicitly designed to be shared and extended by ZTE's separate EPON- and GPON-specific MIBs, making it a foundational dependency within ZTE's PON MIB suite. It is deployed on ZTE OLT (Optical Line Terminal) access nodes managing subscriber ONUs in FTTH access networks.

IPNetwork Monitor allows you to monitor SNMP objects defined in ZTE-AN-PON-BASE-MIB. Use the built-in SNMP Monitoring Browser to explore available variables, view their current values and descriptions, and select the objects you want to monitor. You can then create SNMP monitors, configure thresholds, and receive alerts when monitored values change.

What Can Be Monitored

  • PON OAM link status
  • ONU type/model identification
  • rogue ONU detection
  • PON fault notifications
  • ONU location/GIS data

Supported Devices

  • ZTE ZXA10 C600 — current-generation combo GPON/XGS-PON/EPON OLT access platform, backplane over-provisioned for future 50G PON

Monitoring Examples

zxAnPonBaseNotifications defines the trap objects an NMS would subscribe to for PON-related fault events; zxAnPonOamObjects exposes OAM link-level status between OLT and ONU, used to detect a dying-gasp or signal-loss condition on a subscriber's ONU; zxAnPonRogueOnuMgmt lets an admin detect and manage an unauthorized/rogue ONU attempting to join the PON, and zxAnPonOnuTypeObjects reports the ONU hardware/model type discovered on each PON port.

OIDs
OID symbolicOID numericTypeAccessDescription
zxAnPonBaseMib1.3.6.1.4.1.3902.1082.500.1The MIB module for the management of PON.
zxAnPonBaseObjects1.3.6.1.4.1.3902.1082.500.1.2
zxAnPonOnuTypeObjects1.3.6.1.4.1.3902.1082.500.1.2.2
zxAnPonOnuTypeTable1.3.6.1.4.1.3902.1082.500.1.2.2.2not-accessibleConfiguration of ONU type.
zxAnPonOnuTypeEntry1.3.6.1.4.1.3902.1082.500.1.2.2.2.1not-accessibleEntry of zxAnPonOnuTypeTable. For the default ONU type such as ZTE-F641,ZTE-F622, ZTE-F625, ZTE-F621, ZTE-F601, ZTE-F640, ZTE-F628, ZTE-9806, ZTE-D400, ZTE-D402, ZTE-D420, ZTE-D421, ZTE-D422, ZTE-F401, ZTE-F420, ZTE-F425, ZTE-F429, ZTE-F430, ZTE-F435, ZTE-F500, ZTE-F803, ZTE-F820, ZTE-F821, ZTE-F822, set operation is prohibited. The multi-variables binding rule should be complied with when a manager configures ONU type. According to this rule, all the related mib variables must be included in one SNMP set operation. There are two types of variables: mandatory and optional. All of the mandatory variables must be included in one SNMP set operation. Optional variables may be included in one SNMP set operation with the mandatory variables, but must not be used alone. To create or modify ONU type, the mandatory variables are as follows: mandatoty: zxAnPonOnuTypePonType.
STR zxAnPonOnuTypeName1.3.6.1.4.1.3902.1082.500.1.2.2.2.1.1DisplayStringnot-accessibleName of ONU type.
INT zxAnPonOnuTypePonType1.3.6.1.4.1.3902.1082.500.1.2.2.2.1.2INTEGERread-createPON type.There are two types: -epon: Ethernet Passive Optical Network -gpon: Gigabit-Capable PON.
STR zxAnPonOnuTypeDesc1.3.6.1.4.1.3902.1082.500.1.2.2.2.1.3DisplayStringread-createDescription of ONU type. eg. the interface attributes of ONU type. This variable must comply with the multi-variables binding rule described in zxAnPonOnuTypeEntry.
I32 zxAnPonOnuTypeAttr11.3.6.1.4.1.3902.1082.500.1.2.2.2.1.4Integer32read-createFor EPON: This attribute indicates protect type, 1-none, 2-typeC, 3-typeD, default value is 1. For GPON: This attribute indicates the maximum number of T-CONT, default value is 255. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr21.3.6.1.4.1.3902.1082.500.1.2.2.2.1.5Integer32read-createFor EPON: This attribute indicates speed, 1-1G, 2-10G Symmetric, 3-10G Asymmetric, default value is 1. For GPON: This attribute indicates the maximum number of GEM port, default value is 255. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr31.3.6.1.4.1.3902.1082.500.1.2.2.2.1.6Integer32read-createFor EPON: This attribute indicates ONU auto dispatch enable status, 1-enable, 2-disable, default value is 1. For GPON: This attribute indicates maximum number of switch per slot, default value is 255. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr41.3.6.1.4.1.3902.1082.500.1.2.2.2.1.7Integer32read-createFor GPON: This attribute indicates maximum number of flow per switch, default value is 255. This attribute is not used for EPON. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr51.3.6.1.4.1.3902.1082.500.1.2.2.2.1.8Integer32read-createFor GPON: This attribute indicates maximum number of IP host. MSB : Most Significant Byte LSB : Least Significant Byte | MSB | Byte 2 | Byte 1 | LSB | |--------------|--------------|-----------------|-----------------| | | |IPv6 host number | IPv4 host number| | (8bits) | (8bits) | (8bits) | (8bits) | |-----------------------------------------------------------------| IPv4 host default number is 2. IPv6 host default number is 0. This attribute is not used for EPON. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr61.3.6.1.4.1.3902.1082.500.1.2.2.2.1.9Integer32read-createFor GPON: This attribute indicates service ability of ONU type, there are three service mode :N:1,1:M,1:P. If support the service mode,set the corresponding bit to 1, if not support, set to 0. Default value is 7. | MSB LSB| |-----|-----------|-----------|-----------| | ... | 1:P | 1:M | N:1 | | ... | (1bits) | (1bits) | (1bits) | +-----+-----------+-----------+-----------+ This attribute is not used for EPON. This variable must comply with the multi-variables binding rule described in 'zxAnPonOnuTypeEntry'.
I32 zxAnPonOnuTypeAttr71.3.6.1.4.1.3902.1082.500.1.2.2.2.1.10Integer32read-createThe OLT OMCI management mode. | MSB | Byte 2 | Byte 1 | LSB | |-------------------------------------------------------------| | Reserved | Reserved | Reserved |Reserved WiFi | | (8bits) | (8bits) | (8bits) |(7bits) (1bit)| |-------------------------------------------------------------| Bits 1 - 31 are reserved for future use. Bit 0 represents WiFi service, default value is 0. If the bit is set to 1, WiFi service is managed via non-OMCI. If the bit is set to 0, WiFi service is managed via OMCI. This attribute is not used for EPON.
I32 zxAnPonOnuTypeAttr81.3.6.1.4.1.3902.1082.500.1.2.2.2.1.11Integer32read-createA set of capabilities information about ONU. | MSB |Byte2|Byte1| LSB | |---------------------------------------------------------------------------| |Rese-|Rese-|Rese-|Rese-| GIS |Extended| | |Multicast| OMCI | |rved |rved |rved |rved |Function | OMCI | MGC | VRG | Address |Sending| |(8bi-|(8bi-|(8bi-|(1bi-| Enabling|Enabling| Mode | | Range | Mode | | ts) | ts) | ts) | ts)-|(1bit) | (1bit) |(2bits)|(1bit)| (1bit) |(1bit) | |----------------------- --------------------------------------------------| Bits 7 - 31 are reserved for future use. Bit 0 represents OMCI sending mode, default value is 0. If the bit is set to 1, OLT sends OMCI by synchronous mode. If the bit is set to 0, OLT sends OMCI by asynchronous mode. Bit 1 represents default multicast address range mode, default value is 0. If the bit is set to 1, default multicast address range is all-inclusive mode(224.0.0.0-239.255.255.255). If the bit is set to 0, default multicast address range is none. Bit 2 represents VRG enabling status, default value is 0. If the bit is set to 1, VRG function of the ONU is enabled. If the bit is set to 0, VRG function of the ONU is disabled. This attribute is not used for EPON. Bit 3 and bit 4 represent MGC configuration mode, default value is 0. If both of two bits are set to 0, the MGC configuration mode is private. If bit 3 is set to 1 and bit 4 is set to 0, the MGC configuration mode is ITU-T. If bit 3 is set to 0 and bit 4 is set to 1, the MGC configure mode is both. Bit 5 represents extended OMCI enabling status, default value is 0. If the bit is set to 1, extended OMCI is enabled. If the bit is set to 0, extended OMCI is disabled. This attribute is not used for EPON. Bit 6 represents PON GIS function is supported or not, default value is 0. If the bit is set to 1, GIS function is supported. If the bit is set to 0, GIS function is not supported.
I32 zxAnPonOnuTypeAttr91.3.6.1.4.1.3902.1082.500.1.2.2.2.1.12Integer32read-createA set of capabilities information about ONU. | MSB | Byte 2 | Byte 1 | LSB | |-------------------------------------------------------------| | Reserved | Reserved | Reserved | VEIP Number | | (8bits) | (8bits) | (8bits) | (8bits) | |-------------------------------------------------------------| The LSB represents the number of VEIP port. The value 0 represents the system default. This attribute is not used for EPON.
I32 zxAnPonOnuTypeAttr101.3.6.1.4.1.3902.1082.500.1.2.2.2.1.13Integer32read-createA set of capabilities information about ONU. | MSB | Byte 2 | Byte 1 | LSB | |------------------------------------------------------------------| | Reserved | Reserved | Reserved |Reserved|Speed Mode| | (8bits) | (8bits) | (8bits) | (4bits)|(4bits) | |------------------------------------------------------------------| Bits 4 - 31 are reserved for future use. Bits 0 - 3 represents the ONU speed mode, 1 - GPON, 2 - XG-PON, 3 - XGS-PON, 4 - automatic, the default value is 4. This attribute is not used for EPON.
ROW zxAnPonOnuTypeRowStatus1.3.6.1.4.1.3902.1082.500.1.2.2.2.1.50RowStatusread-createThe status of this conceptual row. The supported actions of this conceptual row only include: 'createAndGo' and 'destroy'. To create a row in this table, a manager must set this object to createAndGo(4). In particular, a newly created row cannot be created until the corresponding zxAnPonOnuTypeName and zxAnPonOnuTypePonType have been set. To delete a row in this table, a manager must set this object to destroy(6). To get this object, the agent always returns active(1).
zxAnPonOnuIfAttrTable1.3.6.1.4.1.3902.1082.500.1.2.2.3not-accessibleConfiguration of ONU interface attributes.
zxAnPonOnuIfAttrEntry1.3.6.1.4.1.3902.1082.500.1.2.2.3.1not-accessibleEntry of zxAnPonOnuIfAttrTable. Entries in the zxAnPonOnuIfAttrTable are created and deleted using the zxAnPonOnuIfAttrRowStatus object, modify is prohibited.
I32 zxAnPonOnuIfId1.3.6.1.4.1.3902.1082.500.1.2.2.3.1.1Integer32not-accessibleThe most significant 16 bits indicate the type of this interface: ETH(10), E1(20), T1(21), DS1(22), POTS(30), RF(40), WiFi(50), COM(60), VEIP(70), xDSL(80). The least significant 16 bits indicate the ID of this interface: the first 8 bits specifies the slot ID associated with this UNI, the second 8 bits specifies the port ID associated with this UNI. eg.the zxAnPonOnuIfId for eth_0/1 is 655361(0xA0001).
I32 zxAnPonOnuIfAttr11.3.6.1.4.1.3902.1082.500.1.2.2.3.1.2Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr21.3.6.1.4.1.3902.1082.500.1.2.2.3.1.3Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr31.3.6.1.4.1.3902.1082.500.1.2.2.3.1.4Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr41.3.6.1.4.1.3902.1082.500.1.2.2.3.1.5Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr51.3.6.1.4.1.3902.1082.500.1.2.2.3.1.6Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr61.3.6.1.4.1.3902.1082.500.1.2.2.3.1.7Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr71.3.6.1.4.1.3902.1082.500.1.2.2.3.1.8Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr81.3.6.1.4.1.3902.1082.500.1.2.2.3.1.9Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr91.3.6.1.4.1.3902.1082.500.1.2.2.3.1.10Integer32read-createReserved for future use.
I32 zxAnPonOnuIfAttr101.3.6.1.4.1.3902.1082.500.1.2.2.3.1.11Integer32read-createReserved for future use.
ROW zxAnPonOnuIfAttrRowStatus1.3.6.1.4.1.3902.1082.500.1.2.2.3.1.50RowStatusread-createThe status of this conceptual row. The supported actions of this conceptual row only include: 'createAndGo' and 'destroy'. To create a row in this table, a manager must set this object to createAndGo(4). To delete a row in this table, a manager must set this object to destroy(6). To get this object, the agent always returns active(1).
zxAnPonOamObjects1.3.6.1.4.1.3902.1082.500.1.2.4
zxAnPonRogueOnuMgmt1.3.6.1.4.1.3902.1082.500.1.2.4.1
zxAnPonRogueOnuCtrl1.3.6.1.4.1.3902.1082.500.1.2.4.1.1
NUM zxAnPonRogueOnuOltIndex1.3.6.1.4.1.3902.1082.500.1.2.4.1.1.1InterfaceIndexread-writeSame as ifIndex: |-------------+----------|------------|---------|---------| |InterfaceType| rack No. | Shelf No. | Slot No.| Port No.| | 1 (4bits) | (4bits) | (8bits) | (8bits) | (8bits) | +-------------+----------+------------+---------+---------+ The multi-variables binding rule should be complied with when a manager configures rogue ONU control. According to this rule, all the related mib variables must be included in one SNMP set operation. There are two types of variables: mandatory and optional. All of the mandatory variables must be included in one SNMP set operation. Optional variables may be included in one SNMP set operation with the mandatory variables, but must not be used alone. To configure rogue ONU control, the mandatory and optional variables are as follows: mandatoty: zxAnPonRogueOnuOltIndex, zxAnPonRogueOnuIndex
ZXA zxAnPonRogueOnuIndex1.3.6.1.4.1.3902.1082.500.1.2.4.1.1.2ZxAnPonOnuIndexread-writeRepresents the normal ONU index.
INT zxAnPonRogueOnuState1.3.6.1.4.1.3902.1082.500.1.2.4.1.1.3INTEGERread-writeThis object indicates the control action. -rogueOn:open the transmit power. -rogueOff:close the transmit power. -shutDown:shutdown the transceiver.
I32 zxAnPonRogueOnuRecoverTime1.3.6.1.4.1.3902.1082.500.1.2.4.1.1.4Integer32read-writeThis object indicates the recovery time. When 'zxAnPonRogueOnuState' is 'rogueOn', 'zxAnPonRogueOnuRecoverTime' is invalid.
zxAnPonRogueOnuDetectInfoTable1.3.6.1.4.1.3902.1082.500.1.2.4.1.2not-accessibleThis table is defined to control rogue ONU.
zxAnPonRogueOnuDetectInfoEntry1.3.6.1.4.1.3902.1082.500.1.2.4.1.2.1not-accessibleEntry of zxAnPonRogueOnuDetectInfoTable. The multi-variables binding rule should be complied with when a manager configures rogue ONU detect. According to this rule, all the related mib variables must be included in one SNMP set operation. There are two types of variables: mandatory and optional. All of the mandatory variables must be included in one SNMP set operation. Optional variables may be included in one SNMP set operation with the mandatory variables, but must not be used alone. To configure rogue ONU detect, the mandatory and optional variables are as follows: mandatoty: zxAnRogueOnuDetectEnable, zxAnRogueOnuLocatingEnable, zxAnRogueOnuAutoCloseEnable.
I32 zxAnRogueOnuSlot1.3.6.1.4.1.3902.1082.500.1.2.4.1.2.1.1Integer32not-accessibleThe OLT slot to be configured rogue ONU detection.
INT zxAnRogueOnuDetectEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.2.1.2INTEGERread-writeThis object indicates the rogue ONU detection mode. -enabled(1): enable the rogue ONU detection -disabled(2): disable the rogue ONU detection.
INT zxAnRogueOnuLocatingEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.2.1.3INTEGERread-writeThis object indicates the rogue ONU locating mode. -enabled(1): locating the rogue ONU -disabled(1): not locating the rogue ONU. When 'zxAnRogueOnuDetectEnable' is 'enabled', you can configure 'zxAnRogueOnuLocatingEnable'. When 'zxAnRogueOnuDetectEnable' is 'disabled', you can not configure 'zxAnRogueOnuLocatingEnable'. This object is not supported for C600 serial.
INT zxAnRogueOnuAutoCloseEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.2.1.4INTEGERread-writeThis object indicates the rogue ONU shutdown mode. -enabled(1): shutdown the rogue ONU automatically -disabled(2): shutdown the rogue ONU manually When 'zxAnRogueOnuLocatingEnable' is 'enabled', you can configure 'zxAnRogueOnuAutoCloseEnable'. When 'zxAnRogueOnuLocatingEnable' is 'disabled', you can not configure 'zxAnRogueOnuAutoCloseEnable'. This object is not supported for C600 serial.
zxAnPonRogueOnuInfoTable1.3.6.1.4.1.3902.1082.500.1.2.4.1.3not-accessibleThis table is defined to get rogue ONU information.
zxAnPonRogueOnuInfoEntry1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1not-accessibleIt is an entry in the zxAnPonRogueOnuInfoTable. The index 'ifIndex' represents the normal OLT index
I32 zxAnPonRogueOnuInstIndex1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.1Integer32not-accessibleThe instance No. of the rogue ONU.
INT zxAnPonRogueOnuAuthStatus1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.2INTEGERread-onlyThe rogue ONU authentication status, 'authenticated' means this ONU is authenticated and 'unauthenticated' means this ONU is discovered by OLT but not authenticated.
I32 zxAnPonRogueOnuId1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.3Integer32read-onlyThe unique ONU ID of the specified PON port, value 0 means ONU is discovered by OLT but not authenticated.
MAC zxAnPonRogueOnuMacAddress1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.4MacAddressread-onlyThe MAC address of the rogue ONU, only for EPON ONU.
STR zxAnPonRogueOnuSerialNumber1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.5DisplayStringread-onlyThe SN of the rogue ONU, only for GPON ONU.
DAT zxAnPonRogueOnuDetectedTime1.3.6.1.4.1.3902.1082.500.1.2.4.1.3.1.6DateAndTimeread-onlyThe date and time when the rogue ONU is detected.
zxAnPonPortRogueOnuConfTable1.3.6.1.4.1.3902.1082.500.1.2.4.1.4not-accessibleThe PON port rogue ONU management table. This table only is used for C600 serial.
zxAnPonPortRogueOnuConfEntry1.3.6.1.4.1.3902.1082.500.1.2.4.1.4.1not-accessibleThe PON port rogue ONU management entry.
INT zxAnPortRogueOnuLocatingEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.4.1.1INTEGERread-writeThe rogue ONU locating mode. enabled(1): locating the rogue ONU disabled(2): not locating the rogue ONU.
INT zxAnPortRogueOnuAutoCloseEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.4.1.2INTEGERread-writeThe rogue ONU shutdown mode. enabled(1): shutdown the rogue ONU automatically disabled(2): shutdown the rogue ONU manually.
INT zxAnPortRogueOnuDetectEnable1.3.6.1.4.1.3902.1082.500.1.2.4.1.4.1.3INTEGERread-writeThe rogue ONU detection mode. enabled(1) enable the rogue ONU detection function disabled(2): disable the rogue ONU detection function.
zxAnPonRxOpticalPowerTable1.3.6.1.4.1.3902.1082.500.1.2.4.2not-accessibleReceived optical power on OLT side from ONU.
zxAnPonRxOpticalPowerEntry1.3.6.1.4.1.3902.1082.500.1.2.4.2.1not-accessibleEntry of zxAnPonRxOpticalPowerTable. The index 'zxAnPonOnuIndex' represents the normal ONU index.
ZXA zxAnPonOnuIndex1.3.6.1.4.1.3902.1082.500.1.2.4.2.1.1ZxAnPonOnuIndexnot-accessibleThis attribute represents the index of ONU.
I32 zxAnPonRxOpticalPower1.3.6.1.4.1.3902.1082.500.1.2.4.2.1.2Integer32read-onlyMeasured the received optical power. 65535000 means N/A, ONU is not in service. -80000 means no signal received.
zxAnPonRxOpticalPowerThreshTable1.3.6.1.4.1.3902.1082.500.1.2.4.4not-accessibleReceived threshold of transceiver on OLT side.
zxAnPonRxOpticalPowerThreshEntry1.3.6.1.4.1.3902.1082.500.1.2.4.4.1not-accessibleEntry of zxAnPonRxOpticalPowerThreshTable. The index 'zxAnPonOnuIndex' represents the normal ONU index.
I32 zxAnPonRxPowerRisingAlarmThresh1.3.6.1.4.1.3902.1082.500.1.2.4.4.1.1Integer32read-writeRising alarm threshold of received power.
I32 zxAnPonRxPowerFallingAlarmThresh1.3.6.1.4.1.3902.1082.500.1.2.4.4.1.2Integer32read-writeFalling alarm threshold of received power.
U32 zxAnPonRxPowerDetectPeriod1.3.6.1.4.1.3902.1082.500.1.2.4.4.1.3Unsigned32read-writeDetect period.
INT zxAnPonRxPowerRestoreDefault1.3.6.1.4.1.3902.1082.500.1.2.4.4.1.4INTEGERread-writeThe action of the ONU, when do the action, the 'zxAnPonRxPowerRisingAlarmThresh' value and 'zxAnPonRxPowerFallingAlarmThresh' value will be restored to the system defaule value.
zxAnPonGisObjects1.3.6.1.4.1.3902.1082.500.1.2.5
zxAnPonGisGlobalObjects1.3.6.1.4.1.3902.1082.500.1.2.5.1
I32 zxAnPonGisLongitude1.3.6.1.4.1.3902.1082.500.1.2.5.1.1Integer32read-writeThe longitude of the PON equipment.
I32 zxAnPonGisLatitude1.3.6.1.4.1.3902.1082.500.1.2.5.1.2Integer32read-writeThe latitude of the PON equipment.
I32 zxAnPonGisElevation1.3.6.1.4.1.3902.1082.500.1.2.5.1.3Integer32read-writeThe elevation of the PON equipment.
I32 zxAnPonGisHorizontalError1.3.6.1.4.1.3902.1082.500.1.2.5.1.4Integer32read-writeThe horizontal error of the PON equipment. It caused by the changing of horizontal location during the measurement.
I32 zxAnPonGisAltitudeError1.3.6.1.4.1.3902.1082.500.1.2.5.1.5Integer32read-writeThe altitude error of the PON equipment. It caused by the changing of altitude location during the measurement.
OCT zxAnPonGisAreaCode1.3.6.1.4.1.3902.1082.500.1.2.5.1.6OCTET STRINGread-writeThe GIS area code of the PON equipment. It references from the latest version 2013 of NBS(National Bureau of Statistics of China), http://www.stats.gov.cn/tjsj/tjbz/tjyqhdmhcxhfdm/2013/index.html.
U32 zxAnPonGisTimestamp1.3.6.1.4.1.3902.1082.500.1.2.5.1.7Unsigned32read-writeThe timestamp of GIS generated by BUAPP. The offset time based on 0 hour 0 minute 0 second Jan 1st 1970 in seconds.
OCT zxAnPonGisDigest1.3.6.1.4.1.3902.1082.500.1.2.5.1.8OCTET STRINGread-writeThe GIS digest.
OCT zxAnPonGisCheckCode1.3.6.1.4.1.3902.1082.500.1.2.5.1.9OCTET STRINGread-writeThe GIS check code. In order to prevent user input wrong information, the OLT will generate a new check code according to the calculation of above 8 variables, and compare the new check code with the check code generated by BUAPP.
zxAnPonBaseNotifications1.3.6.1.4.1.3902.1082.500.1.3
zxAnPonOamTraps1.3.6.1.4.1.3902.1082.500.1.3.1
NTF zxAnPonRxPowerHighAlm1.3.6.1.4.1.3902.1082.500.1.3.1.1Alarm for received power.
NTF zxAnPonRxPowerHighClr1.3.6.1.4.1.3902.1082.500.1.3.1.2Restore of alarm for received power.
NTF zxAnPonRxPowerLowAlm1.3.6.1.4.1.3902.1082.500.1.3.1.3Alarm for received power.
NTF zxAnPonRxPowerLowClr1.3.6.1.4.1.3902.1082.500.1.3.1.4Restore of alarm for received power.
zxAnPonBaseConformance1.3.6.1.4.1.3902.1082.500.1.4
zxAnPonCompliances1.3.6.1.4.1.3902.1082.500.1.4.1
zxAnPonCompliance1.3.6.1.4.1.3902.1082.500.1.4.1.1The compliance statement for entities which implement the ZTE-AN-PON-BASE-MIB.
zxAnPonGroups1.3.6.1.4.1.3902.1082.500.1.4.2
zxAnPonOnuTypeGroup1.3.6.1.4.1.3902.1082.500.1.4.2.2A collection of objects for ONU type configuration.
zxAnPonOamGroup1.3.6.1.4.1.3902.1082.500.1.4.2.4A collection of objects for OLT diagnose.
zxAnPonGisGroup1.3.6.1.4.1.3902.1082.500.1.4.2.6A collection of objects for ONU gis configuration data.
zxAnPonTrapGroup1.3.6.1.4.1.3902.1082.500.1.4.2.20A collection of notifications.

FAQ

What does ZTE-AN-PON-BASE-MIB let an operator monitor on a ZTE OLT?
It provides the base objects shared across ZTE's EPON and GPON platform MIBs for tracking PON OAM link status between the OLT and its ONUs, ONU type/model identification, and location/GIS data, plus notification objects that carry PON fault and alarm traps back to the management station.

How is ZTE-AN-PON-BASE-MIB used to catch unauthorized devices joining a fiber network?
Its rogue-ONU management objects flag ONUs attempting to join the PON without authorization, so an operator watching an OLT dashboard can detect and block unauthorized devices trying to piggyback on subscriber fiber lines in an FTTH deployment.

RFC description

ZTE Access Network Passive Optical Network base MIB for OLT equipment management including C200/C220/C300/C320 products.

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