spd_sran7.0_cme-based data configuration methods and key points_20120420-a-1.2
TRANSCRIPT
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Copyright 2010 Huawei Technologies Co., Ltd. All rights reserved.
CME-based DataConfiguration Methods and
Key Points
OSS DevelopmentDept.1 - CME Development Department
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References
CME V9R12 Product Manual
BSC6900 GU V9R14 Product Manual
MBTS GL V1R5Product Manual
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Objectives
After completing the course, you should be able to:
Understand the CME-based MBTS data configuration process.
Accomplish MBTS data configuration.
After completing the course, you should be able to:
Know the concept and methods of data configuration by using CME.
Know the data configuration methods for SRAN7.0 site deployment.
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration
4. MBTS Data Check
5. MBTS Activation Data Export
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References
CME V9R12 Product Manual
BSC6900 GU V9R14 Product Manual
MBTS GL V1R4 Product Manual
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Objectives
After completing the course, you should be able to:
Understand CME-based MBTS data configuration procedure
Accomplish MBTS data configuration
After completing the course, you should be able to:
Know the concept and methods of data configuration by using CME
Know the data configuration methods for SRAN7.0 site deployment
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration Site Deployment
4. MBTS Data Check
5. MBTS Activation Data Export
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CME Main Window
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CME Concept
Current Data Area
The CME configuration areas consist of one current data area and
multiple planned data areas.
The current data area stores configuration data. The data can only be
viewed.
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CME Concept
Planned Data Area
The planned data area is used for planning and configuring data. Users
can create multiple planned data areas based on the data in the current
data area to perform different configuration tasks.
By dividing planned data areas, users can have their own workspace,
which allows multiple engineers to work in parallel. The modifications in
one area do not affect the services on the live network before the
modified configuration data is activated. This enhances the reliability and
security of configuration data.
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Data Configuration of the Current Data
Area and the Planned Data Area
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Data Configuration Process
Configuration preparation Start Connect an NE to the M2000
Start the CME client
Synchronize the data on the live
network with current area
Create a Planned Area
Create a BTS (GUI)
Adjust MBTS data configuration
Check data consistency
Export an activation script
Prepare
Configure
Export
Set primary/secondary
technology mode
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration
4. MBTS Data Check
5. MBTS Activation Data Export
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Contents
1. MBTS Data Preparation
1.1 Configuration Scenario
1.2 Prepare Data
1.3 Create Planned Data Areas on CME
1.4 Set MBTS Primary/Secondary Mode on CME
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Configuration Scenario
Working in single mode
Use the MRFU/MRRU module and work only in GSM mode.
Use the MRFU/MRRU module and work only in LTE mode.
Working in dual modes Working in combined cabinet mode means that the RFU module is
working in either GSM mode or LTE mode.
Working in co-module means that an MRFU/MRRU supports functions
of both the GSM and LTE modes.
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Configuration Preparation
Collect the MBTS planned data
Collect the common device data of the BTS and eNodeB
Collect the BTS data
Collect the transport layer data and radio layer data of the eNodeB
Prepare the MBTS template
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Start the CME Client
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Create a Planned Data Area
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MBTS Primary/Secondary Technology
Management
The CME allows users to set the primary/secondary technology for an MBTS. The
parameter values of the BTS of the primary technology serve as references for
displaying common parameters of MBTS common devices (common MRRU/MRFU
excluded) on the GUI, checking data consistency, and modifying data.
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration
4. MBTS Data Check
5. MBTS Activation Data Export
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Choose the method of site deployment based on the capacity and mode of
BTS.
Site Deployment Mode
You should determine the method of site deployment before preparing data. Generally, the
combination of two methods is adopted. For batch site deployment, a special BTS, whose
data configuration is different from others, cannot be created by preparing data in batches.
You need to create the special BTS on the GUI. In addition, you also need to complete the
template data of a typical configuration scenario on the GUI before the batch site deployment.
Small-scaled site
deployment
Site deployment
scenario
Batch site
deployment
Be applicable to the scenario: The
number/model of BTSs is less than 2
Be applicable the scenario: The BTSs
have much data with the same model.
Complete site deployment on the GUI
Create a batch of BTS data files in excel by
2G/3G summary data files (BTS negotiation
and planning data files/IUB data files). Import a
batch of BTS data in excel format into CME tocreate MML scripts.
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Contents
3. MBTS Data Configuration
3.1 Configure the Template MBTS Data (GUI)
3.2 Configure the MBTS Data in Batches (Summary)
3.3 Expand Single Mode to Dual Mode in Batches
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Configure the MBTS Data Template (GUI)
Start
Create an eNodeB
End
Create a BTS
Bind BTS and eNodeB
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Process for Adding eNodeB Data
Start
Create an eNodeB
Add eNodeB basic information
Create eNodeB device data
Create eNodeB transport layer data
Create eNodeB radio layer data
Create eNodeB configuration data
End
Step 1 Create a Logical eNodeB
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Step 1 Create a Logical eNodeB
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S 2 C fi N d B D i D
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Step 2 Configure eNodeB Device Data
Configure the Cabinet Data and the BBU3900
Data
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Step 2 Configure eNodeB Device Data
Configure the Cabinet Data and the
BBU3900 Data
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Step 2 Configure eNodeB Device Data
Configure the Radio Frequency Unit (RFU)
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Step 3 Create eNodeB Device Data
If the RF module in the same slot, subrack, and cabinet is
configured for the BTSs, the module runs in dual modes. The
BTS with the RF module is called co-module BTS. If the
module in the same cabinet supports either of dual modes,
the BTSs are called combined cabinet
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Step 2 Configure eNodeB Device Data
Configure the Monitoring Unit
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Step 2 Configure eNodeB Device Data
Configure the Powder Module
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Step 2 Configure eNodeB Device Data
Configure the Antenna Data
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Step 2 Configure eNodeB Device Data
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Step 2 Configure eNodeB Device Data
Configure the User-defined Alarm
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Step 3 Create eNodeB Transport Layer Data
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BTS Data Configuration Process (Abis TDM
Transmission)
Start
Add a BTS
Add a cell
Set a ARFCN
Add a TRX
Check BTS data
End
Activate BTS data
Configure device data
Bind logical TRXs to cells
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BTS Network Topology
1. Area for selecting
interface boards
4. Area for displaying
cells and TRXs
2. Area for displaying
operation buttons
5. Area for displaying
information
In left pane of the topology
view, the area marked 19
represents BSC interface
boards.
6. Area for searching,
refreshing and Help
12
34
5
6
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Step 1 Add a BTS
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Step 1 Add a BTS
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Step 2 Add a Cell
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Step 3 Configure an ARFCN
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Step 4 Add a TRX Board
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Step 4 Add a RUX Board
If the RF module in the same slot, subrack, and cabinet is
configured for the BTSs, the module runs in dual modes.
The BTS with the RF module is called co-module BTS. If
the module in the same cabinet supports either of dual
modes, the BTSs are called combined cabinet base
stations.
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Step 5 Bind Logical TRXs to Cells
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Step 5 Bind Logical TRXs to Cells
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Step 6 Configure Device Data About BTS.
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Configuration Rules of the Board
Board
Type Configuration Principle Slot Number Subrack Number
DEMU It is configured manually. 0, 1 2
Remarks: The
APMU and DTCU
boards can be
configured in slots
0 to 23 in subrack
5.
APMU
DPMUIt is configured manually. 25
DTCU It is configured manually. 6, 7
FMU/FMU
AIt is configured manually. 811
GATM It is configured manually. 16, 17
GTMU It is configured automatically. 6
0UBFA It is configured automatically. 16
UEIU It is configured manually.18, 19
UPEU It is configured automatically.
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Step 7 Check BTS Data
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Step 8 Activate BTS Data
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(Optical) Export MML ScriptsClick here
S C f (
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BTS Data Configuration Process (Abis
IP Transmission)Start
Configure IP address for the port/device
Add BTSs/cells
Configure ARFCNs
Add TRX boards
Set IP address and IP attributes of theBTS
End
Configure device data
Bind logical TRXs to cells
Verify/Activate BTS data
The procedure is the
same as that of TDM
configuration.
C fi IP Add f P t f I t f
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Configure IP Address for Ports of Interface
Boards and the Device at the BSC Side
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Add a BTS
Set IP Address and IP Attributes at the BTS Side
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Set IP Address and IP Attributes at the BTS Side
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BTS Data Configuration Process (IP Over E1)
Start
Set IP address for the PPP or MLPPP link at the
BSC side
Add BTSs/cells
ConfigureARFCNs
Add TRX boards
Set IP address and IP attributes at the BTS side
End
Configure device data
Bind logical TRXs to cells
Verify/Activate BTS data
The procedure is thesame as that of Abis
IP transmission.
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Set IP Address for the PPP or MLPPP Link
Add BTS
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Add a BTS
C fi MBTS D t With t U i
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Configure MBTS Data Without Using
the Template Bind BTS and eNodeB
Start
Create an eNodeB
End
Create a BTS
Bind BTS and eNodeB
Bi d BTS d N d B
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Bind BTS and eNodeB
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Contents
3. MBTS Data Configuration
3.1 Configure the MBTS Template Data (GUI)
3.2 Configure MBTS Data in Batches (Summary)
3.3 Expand to Dual Modes from the Single Mode
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Contents
3.2 Configure MBTS Data in Batches (Summary)
1.1 Prepare the MBTS template
1.2 Define a Summary Data File
1.3 Import Summary Data Files for Site Deployment
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Scenario
Be suitable for batch sitedeployment
Type the planned data for
site deployment into the
CME planned file andcomplete data creation by
importing the files.
Create MBTSs by Exporting Planned Data
Data Plan Data Preparation Data Activation
CME
NE
Engineer
GBTS planned files
for site deployment
GSM Engineer
eNodeB planned
files for site
deployment
LTE Engineer
GBTS planneddata
eNodeB planneddata
Engineer
MBTS mapping
between GBTS
and eNodeB
MBTS template(including the
content of bothGBTS andeNodeB)
Engineer
Import ExportCreate MBTSwizard
ScriptfilesActivate
BSC
GBTS /eNodeB
GBTS /eNodeB
Engineer
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Configuration Procedure
Step 1 Specify the site deployment scenario.
Specify whether to deploy a new site or
expand based on the single mode.
Step 2 Specify the planned data file.
The GSM planned sheet: specify the planned
sheet in the GSM mode (sheet and the BTS
planned sheet for site deployment in single
mode).
The eNodeB planned sheet: specify theeNodeB planned sheet (sheet and the eNodeB
planned sheet for site deployment in single
mode).
The MBTS planned sheet: specify MBTS
mapping between GSM and LTE.
Step 3 Import the planned data file and check
consistency.
Import user-specified sheet data.
Check consistency of common board
parameters and reconfigure inconsistent
parameters.
Import planned
data files
eNodeB
planned
data
GBTS
planned
data
MBTS
mapping
Specify the site
deployment
scenario
Specify the
planned data file
Import eNodeB
planned data files
Import GBTS
planned data files
Import MBTS
mapping between
GBTS and eNodeB
Check/Adjust data
consistency of
common devices
Save as MBTS Templates
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Save as MBTS Templates
MBTS templates are of two types:
Default template
cannot be deleted or
modified.
User-defined template
can be added or deleted.
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Manage MBTS Templates
In theMain Viewnavigation tree in the left pane of the planned data area, select
an MBTS NE, and choose Advanced> Template Managementfrom the menu
bar. A dialog box for managing templates is displayed.
Default MBTS template
User-defined MBTS
template
Define the Summary Data File Open
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Define the Summary Data File Open
Summary Data Files
In the main CME window, chooseAdvanced > Customize Summary
Data Filefrom the menu bar. Select data sheets to be edited from the
displayed summary data files and click OK.
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Define the Summary Data File
Edit
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Summary Data Files Define the BTS planned configuration data in the summary data file. The defined
data in the summary is different from the template and needs configured
manually.
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Site Deployment with the Summary
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Site Deployment with the Summary
Template Specify the Scenario
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Site Deployment With the Summary
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Site Deployment With the Summary
Template Import a Planned Data File
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Site Deployment With the Summary
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Site Deployment With the Summary
Template Import a Planned Data File
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Site Deployment With the Summary
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Site Deployment With the Summary
Template Result Report
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Contents
3. MBTS Data Configuration
3.1 Configure the MBTS Template Data (GUI)
3.2 Configure MBTS Data in Batches (Summary)
3.3 Expand to Dual Modes from Single Mode
Expand BTS to GL Base Station Choose
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Expand BTS to GL Base Station Choose
the Method of Site Deployment
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Expand BTS to GL Base Station Specify
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Expand BTS to GL Base Station Specify
the Planned Data File
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Expand BTS to GL Base Station Choose
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Expand BTS to GL Base StationChoose
the Method of Site Deployment
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Expand BTS to GL Base Station Specify
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Expand BTS to GL Base StationSpecify
the Planned Data File
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration
4. MBTS Data Check
5. MBTS Activation Data Export
Check MBTS Data Consistency
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Check MBTS Data Consistency
Page78
C
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Contents
1. CME Overview
2. MBTS Data Preparation
3. MBTS Data Configuration
4. MBTS Data Check
5. MBTS Activation Data Export
E t BTS MML S i t
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Export BTS MML Scripts
E t N d B XML C fi ti S i t
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Export eNodeB XML Configuration Scripts
Q ti
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Questions
Please describe MBTS data configuration process.
How do you create a Plan in the CME?
Please describe eNodeB data configuration process.
Please describe BTS data configuration process.
How do you bind BTS and eNodeB?
How do you check MBTS data consistency?
How do you export the eNodeB XML configuration script?
S
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Summary
MBTS data configuration
General configuration principles
Configuration scenario
Add eNodeB data
Add BTS data
Bind BTS and eNodeB
Export the BTS MML script and the eNodeB XML configuration script
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