oau004301 umg8900 data configuration and routine maintenance r003 issue2.0 20050622

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    ISSUE

    Fixed Network Curriculum

    Development Section

    OAU004301 UMG8900 Data

    Configuration and Routine

    maintenance R003

    2.0

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    Introduction

    Before configuring the data, you should first have

    some knowledge about the networking and user

    requirements, and collect the basic information

    required by data configuration.

    The configuration should follow the basic sequence

    and configuration requirement.

    This course mainly introduces the basic procedures,

    configuration method, basic configuration principles,

    and hardware and interface configuration.

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    Objectives

    Know basic procedures, method,and principles of configuration;

    Master UMG8900 DataConfiguration;

    Master UMG8900 RoutineOperation and Maintenance.

    Upon completion of this course, you will be able to:

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    References

    U-SYS UMG8900 Data Configuration Manual

    Data Configuration

    U-SYS UMG8900 Universal Media Gateway

    Operation Manual

    Routine Operation and maintenance

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    Course Contents

    Data Configuration

    Routine operation

    Routine maintenance

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    Procedure of Data Configuration

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    Configuration Overview

    The data configuration of UMG8900 is mainly completed

    through the MML command.

    LMT client software mainly completes the configuration management

    and maintenance of system.

    Before performing data configuration, firstly collect the

    detailed networking information .

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    Data Collection

    MGW Side Related Parameter MGC Side Related Parameter

    IP address androute over theinterface

    Consider the whole network to planIP address and

    routeConsider the whole

    network to plan

    MGW ID Plan in advance MGC ID Plan in advance

    Transmissionprotocol type

    Keep consistent with MGCTransmission

    protocol typeKeep consistent with

    MGW

    AuthenticationMode

    Consistent with MGCAuthentication

    ModeConsistent with MGW

    SCTP protocolinitializationparameter

    When the transmission protocol

    type is SCTP, configure SCTO

    initialization parameter

    according to actual condition

    SCTP protocolinitializationparameter

    Consistent with MGW

    Call processingmetrics

    Distribution rate between PPU and

    CMU. Plan in advance.

    Media resourceprocessingmetrics

    Distribution rate between CMU and

    VPU. Plan in advance.

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    Logical board and Physical board

    Logical Board:

    It means the boards are classified and named based on the functions.

    Board type is corresponding to the logical board.

    Physical Board:

    It finally reflects the distinction in software/hardware configuration of

    board.

    Hardwaretype is corresponding to the physical board.

    For Example :OMU is loglic Board name;FOMU is Physical Board name.

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    Hardware Configuration Procedure

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    Introduction to Frame

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    Frame Configuration Command

    Add a central switch frame:

    ADD FRM: FN=1, FT=CONTROL;

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    Principle for Board Configuration

    In the main control frame, the FOMU, FNET and FCLKboards have been added by default.

    FOMU is inserted in the front slot 7 and slot 8 in the main

    control frame (plug-in frame 1), FCLK is in the back slot 0 and 1

    (plug-in frame 1). FOMU/FMPU and FNET must be inserted

    front and back opposite each other.

    Front-inserted boards : FOMU, FMPU, FFLU, FCMF, FVPU,

    FSPF and FHRU.

    Back-inserted boards : FTNU, TCLU, FCLK, FBLU, FCMB

    and FNET.

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    Principle for Board Configuration

    All the interface boards can be inserted in any back slots except

    slot 6, 7, 8 and 9 (Only FCLK can be inserted in the back slot 0

    and 1 of main control frame):

    FG1O, FE8T, FP4L, A4LM/A/B/C, FA4L, E32 and S2L/A/B/C.

    Some boards have strict front-back opposite plug-in requirement.

    The boards with front-back plug-in requirement include:

    FFLU (front) and FBLU (back),

    FHRU (front) and FG1O and E1GM/A/B/C, FA4L, FBAP, FBFE, FBGE,

    FE8T (Back),

    FMPU/FOMU (front) and FNET (back).

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    Configure cascading between 2 frame

    Configure cascading between the main control frame and the central switch

    frame:

    ADD FRMLNK: TP=TNU, LKBN=0;

    Configure the cascading between the service frame and the central switch

    frame:

    ADD FRMLNK: TP=BLU, BN=0, LKBN=1;

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    SSM: Synchronous Status Message

    SSM, namely the synchronous status message, and is also

    called synchronous quality information.

    SSM is used to reflect the level of synchronous timing signal

    directly in synchronous timing transmission link.

    For the line clock source, SSM is extracted by the line interface

    board and reported to FOMU, and then FOMU configures the

    SSM of line clock source to clock module.

    If the external synchronous reference source of clock module is

    2048kbit/s signal, the clock module can extract SSM from signal.

    For GPS reference source, FOMU does not set the SSM level

    and its level is PRC constantly.

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    Reference Source Selection

    SSM participates in control?

    According to the SSM level

    Based on priority

    In sequence:

    GPS, Line1, Line2, Ext

    Manual mode?

    Specify the master

    reference source and

    handover is not performed

    End

    Reference Source Selection

    Y

    Y

    N

    N

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    Clock Configuration Command

    Designate line clock as the clock source and grade 2 as the clock grade:

    MOD CLK: MODE=MANUAL, GRADE=TWO, SRC=LINE1;

    Configure clock to extract clock from the port 0 on the E32 0:

    SET LINECLK: LINE=LINE1, BT=E32, BN=0, PN=0;

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    Two-Frame Cascading

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    Board Configuration Command

    Add boards to the main control frame:

    ADD BRD: FN=1, SN=1, BP=FRONT, BT=VPU, HBT=FVPB,

    BS=LOADSHARE, BN=1, ADS=ACTIVE;

    ADD BRD: FN=1, SN=6, BP=BACK, BT=TCLU, HBT=TCLU,

    BS=ONEBACKUP, BN=0;

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    Configuration Procedure

    Add MGC

    Signalling link configuration

    modification

    Call process distribution rate configuration:

    PPU:CMU

    End

    Is it necessary to modify

    SCTP parameter?

    N

    Y

    Media resource process distribution rate:

    CMU:TCU

    Activate MGW device

    MGW

    configuration

    Interface IP configuration, route

    configuration and firewall configuration

    (optional)

    Interface configuration is

    completed?

    Y

    N

    Y

    Set MGW label

    Y

    N

    Is it necessary to modify

    H.248 parameter?

    H.248 protocol parameter configuration

    N

    Set package forwarding (optional)

    SCTP initialization parameter

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    Relationship between MGW tables

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    Configure IP interface

    Configure the IP address of the OMU 0:

    ADD IPADDR: BT=OMU, BN=0, IFT=ETH, IFN=0,

    IPADDR="10.1.1.1", MASK="255.255.255.0";

    Configure the route from the OMU 0 to the SoftX3000:

    ADD ROUTE: BT=OMU, BN=0, DSTIP="192.168.0.1",

    DSTMASK="255.255.255.0", RTTYPE=NEXTHOP,

    NEXTHOP="10.1.1.254";

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    MGW Control Data Configuration

    Configure VMGW

    SET VMGW: VMGWID=0, MIDTYPE=IP, MID="10.1.1.1:5555",IPNUM=50000, TDMNUM=30000;

    Configure the master MGC ID

    ADD MGC: VMGWID=0, MGCIDX=0, MIDTYPE=IP,

    MID="192.168.0.1:2944", MSS=MASTER; Configure H.248 protocol :

    SET H248PARA: VMGWID=0, CT=BINARY, TT=UDP;

    Configure an H.248 signaling link

    ADD H248LNK: BN=0, LINKID=0, VMGWID=0, MGCIDX=0,

    PEERIP="192.168.0.1", PEERPORT=2944, LOCALIP="10.1.1.1",

    LOCALPORT=5555, LINKNAME="To-Master MGC";

    Activate the VMGW:ACT VMGW: VMGWID=0;

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    SG Configuration Procedure

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    Configure SS7 LINK

    Configure M2UA link set and links to the SoftX3000:

    ADD L2UALKS: PROTYPE=M2UA, LKS=0;

    Configure M2UA links from the SPF 0 to the master SoftX3000:

    ADD L2UALNK: PROTYPE=M2UA, BN=0, LNKNO=0, LKS=0,

    LOCALPN=6666, LOCALIP1="10.1.1.3", REMOTEPN=2904,

    REMOTEIP1="192.168.0.1", PRIO=0;

    Configure MTP2 links to the PSTN switch

    ADD MTP2LNK: LNKNO=0, LKS=0, BINIFID=1,

    LNKTYPE=M2UA64K, IFBT=E32, IFBN=0, E1T1N=1,

    STRTTS=16, SPFBN=0, SUBBN=0, BITREVERSE=OFF;

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    TDM Bearer Configuration Process

    UMG8900 only needs to accomplish the configuration of various

    types of circuits.

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    IP Bearer Configuration Procedure

    IP Bearer Configuration

    Route (Optional)& gateway configuration

    Interface IP addressconfiguration of HRB

    Set VPU bearer relationship

    End

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    IP Bearer Configuration

    Configure TDM connections to the PSTN switch.

    ADD TDMIU: BN=0, BT=S2L, TIDFV=0, TIDLV=4095,

    VMGWID=0;

    ADD TDMIU: BN=3, BT=S2L, TIDFV=12288, TIDLV=16383,

    RT=INSIDE, VMGWID=0;

    Configure gateway address:

    ADD GWADDR: BT=HRB, BN=0, IPADDR="10.10.1.254",

    MASK="255.255.255.0";

    Configure bearer relation:

    ADD BEARREL: BN=0, IP="10.10.1.1";

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    RSP Configuration Procedure

    RSP Configuration

    Add Asynchronous Tone

    Configure RSPFrames and Boards

    Configure TDM Resource

    End

    Configure E1 on RSP Board

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    Configure RSP

    Add UAM frames

    ADD UAFRM: FN=1, PN=0, RN=0, RFN=1, FT=RSP10, FM=MAIN,

    BN=0, VMGWNO=0;

    Add boards to the master frame:

    ADD UABRD: FN=1, SN=3, BT=ASL; Configure asynchronous tones:

    ADD ATONE: BT=VPU, BN=0, TONEID=RINGTONE;

    Configure RSP E1 connections

    ADD UACFG: FN=1, SN=9(RSP), E1SRC=E32, BN=0(SPF), SBN=0,

    BN0=2, PN0=0, BN1=2, PN1=1;

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    Debug RSP Configuration

    1. Check if the physical ports are connected via the command DSP

    E1PORT.2. Check the board status of E32, TNU, SPF and OMU.

    3. Check if the time slot of asynchronous tone is configured via the

    command LST ATONE.

    4. Check if the time slot type of RSP frame is correctly configured via

    the command LST TDMIU.

    5. Check if E1 of RSP is correctly configured via the command LST

    RSPCFG.

    6. Check if the clock board status is normal.

    7. Check if the semi-permanent connection status to RSP board is

    normal via the command LST TDMSPC.

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    Course Contents

    Data Configuration

    Routine Operation

    Routine Maintenance

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    Local Maintenance Terminal System

    LMT system:

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    Local Maintenance Terminal System

    UMG8900 Operation Online Help:

    It is used for viewing help information of systems.

    UMG8900 Operation and Maintenance System:

    It is used for data configuration, device operation and maintenance

    and right setting, and so on.

    UMG8900 Alarm Management System:

    It is used for alarm query and process.

    UMG8900 Performance Management System:

    It is used for creating performance measure task and displaying

    results.

    UMG8900 Trace Viewer:

    It is used for viewing the traced messages during off line.

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    Operation and Maintenance System

    There are two modes to start the operation and maintenance system:

    Run [Start/programs/Huawei UMG8900 local maintenance

    terminal/UMG8900 V100R003/UMG8900 Operation and

    Maintenance System].

    On the alarm management system interface, select [System/Open

    Operation and Maintenance System], or click on the tool bar.

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    Main interface of operation and maintenance system

    (1)

    (2)

    (3)

    (4)

    (6)

    (5)(1) Menu bar (2) Tool bar (3) Navigator window

    (4) Information

    output window

    (5) Status bar a (6) Status bar b

    1.Main interface of operation and maintenance system

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    Alarm Management System

    (1)

    (2)

    (3)

    (4)(1) Menu bar (2) Tool bar (3) Navigator

    window

    (4) Status bar

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    Performance Management System

    (1)

    (2)

    (3)

    (4)

    (5)

    (6)

    (1) Menu bar (2) Tool bar (3) Navigator

    window

    (4) Information

    output window

    (5) Task information

    window

    (5) Status bar

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    Trace Viewer

    (1)

    (2)

    (3)

    (1) Menu bar (2) Tool bar (3) Navigator

    window

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    Login Infomation

    User name/User description: admin

    Password/Confirm password: 9061mgw

    site ip:omu board ip (for example:190.1.30.1);

    site name:random define (for example:Local Host);

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    System Management Routine command

    Command Function

    LST FILE List the related information of various types of data files at OMU.

    BCK FILE Dump the specified file manually to the server set by MOD MFTP.

    ADD

    FTPUSR

    Add an FTP user. The user information includes user name,

    password, working directory and authority.

    SET

    FTPSRV

    Open/Close FTP server and set timeout for server at the same time.

    CPY Copy the source files to the destination directory.

    CRE

    RTSTTSK

    Create a routine test task for the specified device on the BAM.

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    Command Function

    DSP IPIFQuery the status of the link layer protocol on an interface and the statistics

    information of sending/receiving packets.

    DSP E1PORT Query the status of the E1/T1 interface.

    DSP TDMSTATQuery the statuses of TDM timeslots so as to learn about which timeslots

    are occupied and which timeslots are idle in the current E1/T1 interface.

    LST TDMIU Query the configuration of timeslots on various TDM interface boards.

    DSP SCTPCON Query the SCTP connection information.

    DSP L2UALKS

    Query the status of the M2UA, IUA, V5UA link group.The status of the

    normal link group is ACTIVE.

    DSP L2UALNKDSP L2UALNKQuery the status of the M2UA, IUA, V5UA link.The status

    of the normal link is ACTIVE.

    Service Management Routine Command

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    Service Management Routine Command

    Command Function

    DSP H248LNKQuery the connection status of the H.248 signaling link.The status of the

    normal link is UP.

    DSP VMGW Query the status of the VMGW and the selected MGC.

    ACT/DEA VMGW Activate/Deactivate the VMGW.

    DSP CLK Query the status of the board clock.

    LST UATIDQuery the corresponding TID value on the port based on the location

    information of the user port.

    LST UAPOSQuery the location information of the user port based on the TID value on

    the port.

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    Course Contents

    Data Configuration

    Routine operation

    Routine maintenance

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    Maintenance Overview

    Basic tasks and main maintenance contents are described as follows.

    1.Make sure that the devices operate normally, and that their electric

    performance, mechanical performance, technical indices and various

    service indices conform to the standards.

    2.Perform network optimization, so as to ensure that the coverage area can

    obtain high communication quality.

    3.Fast and exactly remove various communication faults to ensure smooth

    communications.

    4.Perform the cooperation between entire networks in the whole running

    process to ensure a reliable internet operation.

    5.Make sure that new devices and capacity-expansion devices are correctly

    connected to the networks.

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    Common Methods

    I. Comparison method

    II. Substitution method

    III. Minimum system method

    IV. Protocol tracing analysis method

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    Basic Requirements for Maintenance Personnel

    I. Special qualification and skills

    II. Familiarity with the system and networking

    III. Operation

    IV. Instrument and meters

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    Equipment Room Maintenance

    I. Sudden maintenance

    II. Routine maintenance

    III. Periodic maintenance

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    Maintenance Table and Operation Guide

    I. Routine keep-watch maintenance table

    II. Maintenance task plan

    III. Itinerant checking maintenance

    IV. Designated maintenance

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    Network Management

    1. Performance statistics

    indices as running data, interface flow, resource utilization and data flow.

    2. Network optimization

    I. System investigation

    II. Data analysis

    III. Optimization scheme drawing and implementation

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    Routine Maintenance Operation Guide

    Routine maintenance mainly involves equipment room, device

    running status, functional subsystems, service bearer and

    media resources, signaling and description of routine

    maintenance items.

    Routine Maintenance Type:

    Daily Routine Maintenance

    Monthly (Quarterly) Maintenance

    Yearly Maintenance

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    Daily Routine Maintenance Items

    Maintenance items Operation

    Air conditioner Check the cooling degree, switch, etc. of the air conditioner.

    Power supply Check if the power supply has open circuit.

    transmissionCheck if interruption, error codes, etc. happening to the

    transmission system.

    Tools, meters anddocuments

    The tools, meters and maintenance documents shall be completeand intact; otherwise additional explanation shall be given.

    On-duty personnel

    tasks

    Sum up the jobs on duty, including the description and the

    handling of the faults discovered on this duty and the left faults of

    the last duty.

    Troubles remainedDescribe the faults that have not been completely fixed yet,

    including the fixing status and the fault severity.

    Monitor check

    The chief operator checks the on-duty jobs to make sure that jobs

    are smoothly handed over, faults are fixed and the equipment

    room is normally running.

    Monthly (Quarterly) Maintenance Operation

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    Monthly (Quarterly) Maintenance Operation

    Guide

    1. Termination System

    2. System

    3. Cabinet

    4. Power Supply5. Grounding wire

    6. Spare Parts

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    Confidential Information of Huawei.No Spreading without Permission. Security Level: Internal

    Yearly Maintenance Operation Guide

    1.Functional Subsystem

    Maintenance items

    Referenced standards

    The correctness of statistics

    reports

    Check if the statistics system is correct by means of comparison.

    2.Connection

    Maintenance items

    Referenced standards

    Trunk connectionTrunk connections are reliable, trunks are complete and intact, and labels are

    easily recognizable.

    Network cable

    connection

    Network cable connections are reliable, network cables are complete and intact,

    the hub is intact and labels are clear and explicit.

    Optical path

    connection

    The optical paths between racks are reliable, optical fibers are complete and

    intact, without being crushed to be flat or folded; labels are clear and explicit.

    Connection cables

    between racks

    The connection cables between racks are reliable, various cables are complete

    and intact, and labels are easily recognizable.

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