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MBTS GO configuration
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7/14/2019 3. MBTS GSM V100R007 Initial Data Configuration Based on LMT
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MBTS Initial Data
Configuration basedon LMT
www.huawei.com
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved.
7/14/2019 3. MBTS GSM V100R007 Initial Data Configuration Based on LMT
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References BSC6900 LMT User Guide
BSC6900 Initial Configuration Guide
BTS3900 Initial Configuration Guide
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page1
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Objectives Upon completion of this course, you will be able to:
Know the principle of data configuration
Master BTS3900 GSM initial data configuration through
Web LMT
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page2
Understand the meaning of some important parameters
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Contents1. Web LMT Introduction
2. Steps of Data Configuration
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page3
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Web LMT Introduction The LMT provides graphical user interface (GUI) for you
to operate and maintain the BSC6900 and BTS. The alarm management, trace management, performance
monitoring, and device maintenance can be performed
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page4
through menu operations.
The MML commands can be run for data configuration
and O&M on the Web-LMT.
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Web LMT Introduction
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page5
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MML Command Window
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page6
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Contents1. Web LMT Introduction
2. Steps of Data Configuration
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page7
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Steps of Data ConfigurationSTART
Configuring the Logical Data
Configuring the Equipment Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page8
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring a Clock for a BTS
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Configuring the Equipment Data ADD BTS1
2
3
ADD BTSCABINET
ADD BTSRXUCHAIN
4 ADD BTSRXUBRD
Configuring the Logical Data
Configuring the Equipment Data
START
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page9
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring the BTS Clock
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Step 1 ADD BTS ADD BTS: < BTSID>, <BTSNAME>, <BTSTYPE>, < BTSDESC >,
<SEPERATEMODE>,<SERVICEMODE>,<FLEXABISMODE >,
<ABISBYPASSMODE>,<ISCONFIGEDRING >,<MPMODE >,<MAINPORTNO >, <IPPHYTRANSTYPE > ,<SRANMODE>,
<RFUCFGBYSLOT>, <WORKMODE>,
<TSASSIGNOPTISW>,<BTS3012SRANMODE>,<MainBMPMode>,<INTRA
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page10
BBPOOLSWITCH>; BTSID: ID of the BTS. The BTS ID must not conflict with other BTS IDs
in the BSC.
BTSNAME: Name of the BTS. The BTS name must not conflict with
other BTS names in the BSC.
BTSTYPE: Type of the BTS
BTSDESC: Peer equipment type of the BTS. This parameter indicates
whether to connect the BTS to the BSC or cascade the BTS to
another BTS.
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Step 1 ADD BTS ADD BTS
SEPERATEMODE: Whether to enable the BTS to support the
separation between the physical and logical.
SERVICEMODE: Service type of the BTS.
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page11
FLEXABISMODE: Service timeslot assignment mode for theBTS.
ABISBYPASSMODE: Whether to enable the BTS to support
the bypass function.
ISCONFIGEDRING: Whether to enable a BTS to support ring
topology.
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Step 1 ADD BTS ADD BTS
MPMODE: Timeslot multiplexing mode at the Abis interface of
the BTS.
MAINPORTNO: Number of the port to which the active OML
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page12
o t e BTS is connected
PPHYTRANSTYPE: Type of the physical IP transmission
medium
SRANMODE: Whether to enable the BTS to identify an object in the BTS in normalized mode, for example, to identify a
board by the slot No., subrack No., and cabinet No. and to
identify a transmission port by the port No. in a board
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Step 2 ADD BTSCABINET ADD BTSCABINET: <IDTYPE>, <BTSID>,<BTSNAME>,<CN>,
<SRANMODE>, <TYPE>, <CABINETDESC>, <ISMAINCABINET>,
<MAINCABINETSRN>;
CN: Number of the cabinet where the BTS board is located.
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page13
SRANMODE: Whether the data configuration of theSingleRAN BTS supports normalized SingleRAN mode.
TYPE: Type of a cabinet.
CABINETDESC: Descriptive information of the BTS cabinet
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Step 3 ADD BTSRXUCHAIN ADD BTSRXUCHAIN: <IDTYPE>, <BTSID>, <BTSNAME>, <RCN>,
<TT>,<HCN>,<HSRN>,<HSN>,<HPN>,<TCN>,<TSRN>,<TSN>,<TP
N>
RCN: Number of the RXU chain or ring
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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TT: RXU topology type, that is, RXU ring topology or RXUchain topology.
HCN: Number of the cabinet where the head board of the
RXU chain or ring is located
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Step 3 ADD BTSRXUCHAIN ADD BTSRXUCHAIN:
HSRN: Number of the subrack where the head board of theRXU chain or ring is located.
HSN: Number of the slot where the head board of the RXU
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page15
chain or ring is located.
HPN: The number of the optical port of the head board in
the RXU chain or ring.
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Step 4 ADD BTSRXUBRD ADD BTSRXUBRD: <IDTYPE>, <BTSID>, <BT>,<CN>,<SRN>,
<SN>,<RXUNAME>,<RXUCHAINNO>,< RXUPOS>
BT: Type of the newly added RXU board
CN: Number of the cabinet where the BTS board is located.
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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: um er o e su rac w ere e oar s oca e
SN: Number of the slot where the BTS board is located
RXUNAME: Name of an RXU
RXUCHAINNO: Number of the RXU chain where the board is
located
RXUPOS: Position of the RXU board on an RXU chain.
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Step 4 SET BTSRXUBP SET BTSRXUBP: <IDTYPE><BTSID><RXUIDTYPE><RXUCHAINNO
><RXUPOS ><RXUTYPE><SndRcvMode ><WORKINGSTANDARD >
SndRcvMode: RFU Antennal Sending Receiving Mode
GUI Value Range: SGL_ANTENNA(Single Feeder[1TX + 1RX]),
SGLDOUBLE_ANTENNA(Single Feeder[1TX + 2RX]),
Transmission
DataClock data ACT BTSLogical Data
Equipment
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page17
DOUBLE_ANTENNA(Double Feeder[2TX + 2RX]),
DOUBLEFOUR_ANTENNA(Double Feeder[2TX + 4RX]),
DOUBLESINGLE_ANTENNA(Double Feeder[1TX + 1RX]),
DOUBLEDOUBLE_ANTENNA(Double Feeder[1TX + 2RX])
WORKINGSTANDARD: Working mode of the RXU board
GSM_AND_UMTS(GSM AND UMTS), UMTS(UMTS), GSM(GSM),
GSM_AND_LTE(GSM AND LTE), LTE(LTE)
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Configuring the Logical Data
Configuring a GSM Cell5
6
7
Configuring the TRX
Configuring theBinding Between a
GSM Cell and a BTS
Configuring the Logical Data
Configuring the Equipment Data
START
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page18
Configuring theBinding Between a
Logical TRX and a
Physical TRX Board
8
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring the BTS Clock
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Step 5 Configuring a Cell Configuring a GSM cell involves configuring a cell, mapping
between the cell and the OPC and frequencies for the cell.
ADD GCELL
This command is used to add GSM internal cells.
Transmissio
n DataClock data ACT BTSLogical Data
Equipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page19
ADD GCELLOSPMAP
This command is used to add the mapping between a cell and
an originating signaling point (OSP).
ADD GCELLFREQ
This command is used to add frequencies to a GSM internal
cell.
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Step 5 Configuring a CellADD GCELL ADD GCELL: <CELLID>, <CELLNAME>, <TYPE>, <MCC>, <MNC>,
<LAC>, <CI>;
CELLID: Index of a cell, uniquely identifying a cell in a BSC
CELLNAME: Name of a cell uni uel identif in a cell in a BSC
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page20
TYPE: This parameter specifies the frequency band of new
cells.
MCC: Mobile country code
MNC: Mobile network code
LAC: Location area code
CI: Identity code of a cell
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Step 5 Configuring a CellADD GCELLOSPMAP ADD GCELLOSPMAP: <IDTYPE>, <CELLID>, <CELLNAME>,
<OPC>;
IDTYPE: Type of an index
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page21
BSC6900.
CELLNAME: Name of a cell. This parameter uniquely
identifies a cell in a BSC6900.
OPC: Code of the original signaling point (OSP) in the
signaling network.
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Step 5 Configuring a CellADD GCELLFREQ ADD GCELLFREQ: <IDTYPE>, <CELLID>, <FREQ1>,<FREQ2>;
FREQ1: Frequency 1
FREQ2: Frequency 2
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page22
EXAMPLE ADD GCELLFREQ: IDTYPE=BYID, CELLID=0, FREQ1=1,
FREQ2=2;
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Step 6 Configuring the TRX Configuring the TRX for the BTS. This involves
configuring the logical TRX and BCCH.
ADD GTRX
This command is used to add a logical TRX and configure the
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page23
binding between the logical TRX and the cell
SET GTRXCHAN (Optional)
This command is used to set the TRX channel attributes and
specify the BCCH.
SET GTRXDEV (Optional)
This command is used to set the device attributes of a TRX.
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Step 6 Configuring the TRXADD GTRX
ADD GTRX: < IDTYPE>, <CELLID>, <TRXID>, <FREQ>,
<ISMAINBCCH>;
TRXID: Index of a TRX, uniquely identifying a TRX in a
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page24
.
FREQ: Frequency of the TRX, Value Range: 0~1023
ISMAINBCCH: Whether to enable the TRX to carry the main
BCCH in the cell
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Step 6 Configuring the TRXSET GTRXCHAN SET GTRXCHAN: <TRXID>,<CHNO>,<CHTYPE>,<GPRSCHPRI>,
<TSPRIORITY>;
TRXID: ID of the TRX. The TRX ID must be globally unique
CHNO: Number of the channel in the TRX
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page25
CHTYPE: Type and function of the channel
GRRSCHPRI: EGPRS priority type of the channel
TSPRIORITY: Assignment priority level of the channel. If this
parameter is less, the assignment priority level of the
channel is higher. Value Range: 0~7
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Step 6 Configuring the TRXSET GTRXDEV (Optional) SET GTRXDEV: <POWL >,<POWT >,<OPTL >,<SDFLAG >,
<TCHAJFLAG >,<PL8PSK >,<RCVMD > ,<SNDMD >, <CPS >…..
POWL: Power Level
POWT: Power Type
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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SDFLAG: Shut Down Enabled
TCHAJFLAG: TCH Rate Adjust Allow
PL8PSK: TRX 8PSK Level
RCVMD: Receive Mode SNDMD: Send Mode
CPS: Allow Dynamic Shutdown TRX
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Step 6 Configuring the TRXSET GTRXDEV (Optional) SET GTRXDEV: <POWL >,<POWT >,<OPTL >,<SDFLAG >,
<TCHAJFLAG >,<PL8PSK >,<RCVMD > ,<SNDMD >, <CPS >…..
POWL: Power Level
POWT: Power Type
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page27
SDFLAG: Shut Down Enabled
TCHAJFLAG: TCH Rate Adjust Allow
PL8PSK: TRX 8PSK Level
RCVMD: Receive Mode SNDMD: Send Mode
CPS: Allow Dynamic Shutdown TRX
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Step 7 Configuring the BindingBetween a GSM Cell and a BTS ADD CELLBIND2BTS: <IDTYPE>, <CELLID>, <BTSID>;
IDTYPE: Type of an index
CELLID: Index of a cell, uniquely identifying a cell in a
BSC6900.
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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CELLNAME: Name of a cell. This parameter uniquely
identifies a cell in a BSC6900.
BTSID: Index of the BTS, uniquely identifying a BTS in a
BSC6900.
BTSNAME: Name of the BTS, uniquely identifying a BTS in a
BSC6900.
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Step 8 Configuring the BindingBetween a Logical and Physical TRX Configuring the binding between a logical TRX and a
physical TRX board in the BTS cabinet.
ADD TRXBIND2PHYBRD: <TRXID>, <TRXTP>, <TRXPN>,
<RXUIDTYPE>,<CN>,<SRN>, <SN>,<ANTPASSNO>;
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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TRXID: Index of a TRX, uniquely identifying a TRX in aBSC6900.
TRXTP: Type of the TRX board bound to the TRX
TRXPN: Number of the channel bound to the TRX on the TRXboard.
RXUIDTYPE: Index type of the RXU. GUI Value Range:
RXUNAME(By RXU Name), RXUPOS(By RXU Position No),
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Step 8 Configuring the BindingBetween a Logical and Physical TRX ADD TRXBIND2PHYBRD:
CN: Number of the cabinet where the BTS board is located.
SRN: Number of the subrack where the BTS board is located.
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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ANTPASSNO: Number of the antenna feeder channel mapped
to the RXU.
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Configuring the Transmission Data
1
Configuring the Logical Data
Configuring the Equipment Data
START
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page31
IP Over E1
TDM/HDLC
2
3
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring the BTS Clock
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IP-Based Networking on the AbisInterface IP over Ethernet Networking (Layer 2)
In this networking mode, the BSC6900 and the base station
communicate with each other through the IP network, and the
data transmitted between them is processed by the switch
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according to the data link layer protocol. TheFG2a/GOUa/FG2c/GOUc/FG2d/GOUd board of the BSC6900
functions as the Abis interface board and provides FE/GE ports
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IP-Based Networking on the AbisInterface IP over Ethernet Networking (Layer 3)
In this networking mode, the BSC6900 and the base station
communicate with each other through the IP network, and the
data transmitted between them is processed by the router
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page33
according to the IP protocol. TheFG2a/GOUa/FG2c/GOUc/FG2d/GOUd board of the BSC6900
functions as the Abis interface board and provides FE/GE ports
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IP-Based Networking on the AbisInterface IP over E1 Networking
In this networking mode, the BSC6900 and the base station
communicate with each other through the SDH/PDH network.
The PEUa/POUc board functions as the Abis interface board. The
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page34
PEUa board provides E1/T1 ports, and the POUc board providesSTM-1 ports and OC-3 ports.
Equipment Transmission
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Step 1 SET ETHPORT: <SRN>, <SN>, < BRDTYPE >, < PTYPE >, < PN
>,< AUTO> (Optional)
Run this command to set attributes of an Ethernet port on the
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page35
FG2a, GOUa, FG2d, FG2c, GOUd and GOUc boards.
Step 2 SET ETHREDPORT :<SRN>, <SN>, <PN> (Optional)
Run this command to add active and standby Ethernet ports.
Equipment Transmission
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Step 1 SET ETHPORT: <SRN>, <SN>, < BRDTYPE >, < PTYPE >, < PN
>,< AUTO> (Optional)
Run this command to set attributes of an Ethernet port on the
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
Copyright © 2012 Huawei Technologies Co., Ltd. All rights reserved. Page36
FG2a, GOUa, FG2d, FG2c, GOUd and GOUc boards.
Step 2 SET ETHREDPORT :<SRN>, <SN>, <PN> (Optional)
Run this command to add active and standby Ethernet ports.
Cl k dL i l DEquipment Transmission
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Step 3 ADD DEVIP: <SRN>, <SN>, <DEVTYPE >, <IPADDR >, <MASK
> (Optional)
Run this command to add a device IP address for a board. The
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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device IP address is the logical IP address of the board. As an
expansion of the port IP address, the logical IP address is used to
communicate with peer devices
Example
ADD DEVIP: SRN=0, SN=24, DEVTYPE=LOGIC_IP,
IPADDR="10.171.35.123";
Cl k d t ACT BTSL i l D tEquipment Transmission
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Step 4 ADD ETHIP: <SRN>, <SN>, <PN >, <IPINDEX>, <IPADDR >,
<MASK > Run the ADD ETHIP command to add the port IP address of the
FG2a, GOUa, FG2d, FG2c, GOUd and GOUc boards.
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical Dataq p
DataTransmission
Data
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Step 5 ADD IPRT: <SRN>, <SN>, <DSTIP >, <DSTMASK >,
<NEXTHOP> (Optional)
When the BSC6900 and the BTS are on different network
segments, run the ADD IPRT command to add an IP route to the
BSC6900.
Clock data ACT BTSLogical DataEquipment Transmission
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Step 6 ADD BTSDEVIP: <IDTYPE>, <BTSID>, < BTSNAME >, <
PT >
Run this command to configure IP address on a BTS that uses the
IP transmission mode.
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical Dataq p
Data Data
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Step 7 SET BTSIP : <IDTYPE>, <BTSID>, <BTSNAME >, <BTSCOMTYPE >, < BTSIP>,< BSCIP>,< BTSMUTIP>
Run this command to set the communication address of a BTS that
uses the IP transmission mode.
Step 8 SET BTSETHPORT: <IDTYPE>, <BTSID>
Run this command to set the parameter settings of an Ethernet
port on a BTS that supports SingleRAN or uses the IP transmissionmode
Clock data ACT BTSLogical DataEquipment Transmission
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Step 9 ADD BTSIPRT: <IDTYPE>, <BTSID>, < BTSNAME >, <
RTIDX> (Optional)
Run this command to add the route to a BTS that uses the IP
transmission mode.
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical DataData Data
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Step 10 ADD BTSESN: <IDTYPE>, <BTSID>, <DEVTYPE>,<MAINDEVTAB>, <BAKDEVTAB>
Run this command to add an equipment serial number (ESN) so as
to response to the DHCP request from the BTS.
Clock data ACT BTSLogical DataEquipment Transmission
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Step 11 ADD ADJNODE: <IDTYPE>, <BTSID>, < BTSNAME >, <
RTIDX> (Optional)
Run this command to add an adjacent node. It indicates an
adjacent network device of BSC.
Configuring IP Over FE/GETransmission Data
Clock data ACT BTSLogical DataData Data
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Step 12 ADD IPPATH: <IDTYPE>, <BTSID>, <DEVTYPE>,<MAINDEVTAB>, <BAKDEVTAB>
Run this command to add an IP path.
IP path is an important transmission resource. It carries the userplane data between the BSC and other NEs.
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Clock data ACT BTSLogical DataEquipment
D tTransmission
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Step 1 ADD BTSCONNECT: <IDTYPE>, <BTSID>, <INPN>,
<DESTNODE>, <SRN>, <SN>, <PN>;
Run the ADD BTSCONNECT command to add a connection
Configuring IP Over E1Transmission Data
Clock data ACT BTSLogical DataData Data
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.
Step 2 ADD a PPP link (Optional)
ADD PPPLNK: <SRN>, <SN>, <BRDTYPE >, <PPPLNKN >,
<TSBITMAP> ,<LOCALIP>, <PEERIP>
ADD BTSPPPLNK: <IDTYPE>, <BTSID>, <PPPLNKN >, <PN
>, <TSBITMAP>
Clock data ACT BTSLogical DataEquipment
D tTransmission
D t
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Step 3 Add an MLPPP group (Optional)
ADD MPGRP: <SRN>, <SN>, <BRDTYPE >, <MPGRPN>,
<MPTYPE> , <LOCALIP> ,<PEERIP>
Configuring IP Over E1Transmission Data
C SgData Data
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, , , ,
<PPPLNKN> <TSBITMAP>
ADD BTSMPGRP: <IDTYPE>, <BTSIP>, <MPGRPN>,
<CN>,<SRN>,<SN> , <LOCALIP> ,<PEERIP>
ADD BTSMPLNK: <IDTYPE>, <BTSIP>, <MPGRPN>,
<PPPLNKN>, <PN>, <CN>,<SRN>,<SN> , <TSBITMAP >
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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Step 4 Add an adjacent node (ADD ADJNODE)
Step 5 Set set the IP address of the BTS(SET BTSIP)
Configuring IP Over E1Transmission Data
gData Data
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Step 6 ADD the ESN of the BTS(ADD BTSESN)
Step 7 Add an IP path (ADD IPPATH)
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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Configuring TDM/HDLCTransmission Data ADD BTSCONNECT: <IDTYPE>, <BTSID>, <INPN>,
<DESTNODE>, <SRN>, <SN>, <PN>;
INPN: Number of a BTS port
INCN: Number of the in-port cabinet on a BTS
Data Data
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INSRN: Number of the in-port subrack on a BTS
INSN: Number of the in-port slot on a BTS
DESTNODE: Type of the object the BTS is connected to. Value
range: BTS, BSC6900, and DXX
C fi i TDM/HDLC
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ADD BTSCONNECT:
SRN: Subrack number of the BSC6900 board that is connected tothe BTS
SN: Slot number of the BSC6900 board that is connected to the
Configuring TDM/HDLC
Transmission Data
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BTS
PN: Number of the port through which the BTS is connected to the
BSC6900
EXAMPLE
ADD BTSCONNECT: IDTYPE=BYID, BTSID=9, INPN=0,
DESTNODE=BSC, SRN=11, SN=0, PN=1;
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Configuring the BTS Clock
Configuring the Logical Data
Configuring the Equipment Data
START
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SET BTSIPCLKPARA1
SET BTSCLK2
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring the BTS Clock
TransmissionData
Clock data ACT BTSLogical DataEquipment
Data
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Set BTS IP Clock Server Set BTS IP Clock Server SET BTSIPCLKPARA :<BTSID>, <
CLKPRTTYPE >, < SYNMODE >,< SYNTIMEDAY >,<
SYNTIMEHOUR >, < SYNTIMEMIN >,< MASTERIPADDR >,
BTSID: Index of the BTS, uniquely identifying a BTS in a BSC6900.
DataData
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SYNMODE : Synchronization mode of the IP clock
SYNTIMEDAY : Interim synchronization period (in days
SYNTIMEHOUR : Interim synchronization period (in hours)
SYNTIMEMIN : Interim synchronization period (in minutes)
MASTERIPADDR : It must be the valid address of the A, B, or C
type and cannot be the broadcast address or network address
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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Set Clock Type of BTS SET BTSCLK (Optional): <BTSID>
<ClkType> <TRANSTYPE>
BTSID: BTS Index
CLOCK TYPE: INT_CLK(Internal Clock), TRCBSC_CLK(Trace
Set Clock Type of BTS
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oc , _ x erna ync c oc , _
Clock), IP_TRANSFER(Trace Transport Clock),
TRCGPS_CLK(Trace GPS Clock), UM_CLK(Um Clock),
PEER_CLK(Peer Clock), SYNETH_CLK(SynEth Clock)
TRANS TYPE: E1(E1), T1(T1), FE(FE)
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Activating the BTS Configuration
Configuring the Logical Data
Configuring the Equipment Data
START
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ACT BTS
END
Activating the BTS Configuration
Configuring the Transmission Data
Configuring the BTS Clock
Clock data ACT BTSLogical DataEquipment
DataTransmission
Data
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Activating the BTS Configuration CHK BTS: <IDTYPE>, <BTSID>;
Use this command to check the BTS data integrity.
ACT BTS: <IDTYPE>, <BTSID>;
IDTYPE: Index type of the BTS.
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BTSID: ID of the BTS.
BTSNAME: Name of the BTS
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Summary The concept of Web LMT
Initial GSM data configuration steps of BTS3900
Configuring the Equipment Data, Logical Data,
Transmission Data, Clock Data
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Activating the BTS Configuration
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Thank you. .