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ZXDSL 9806HZTE Broadband Universal Access System
Configuration Manual (CLI)
Version 2.0
ZTE CORPORATIONZTE Plaza, Keji Road South,Hi-Tech Industrial Park,Nanshan District, Shenzhen,P. R. China518057Tel: (86) 755 26771900Fax: (86) 755 26770801URL: http://ensupport.zte.com.cnE-mail: [email protected]
LEGAL INFORMATION
Copyright 2006 ZTE CORPORATION.
The contents of this document are protected by copyright laws and international treaties. Any reproduction or distribution ofthis document or any portion of this document, in any form by any means, without the prior written consent of ZTE CORPO-RATION is prohibited. Additionally, the contents of this document are protected by contractual confidentiality obligations.
All company, brand and product names are trade or service marks, or registered trade or service marks, of ZTE CORPORATIONor of their respective owners.
This document is provided as is, and all express, implied, or statutory warranties, representations or conditions are dis-claimed, including without limitation any implied warranty of merchantability, fitness for a particular purpose, title or non-in-fringement. ZTE CORPORATION and its licensors shall not be liable for damages resulting from the use of or reliance on theinformation contained herein.
ZTE CORPORATION or its licensors may have current or pending intellectual property rights or applications covering the subjectmatter of this document. Except as expressly provided in any written license between ZTE CORPORATION and its licensee,the user of this document shall not acquire any license to the subject matter herein.
ZTE CORPORATION reserves the right to upgrade or make technical change to this product without further notice.
Users may visit ZTE technical support website http://ensupport.zte.com.cn to inquire related information.
The ultimate right to interpret this product resides in ZTE CORPORATION.
Revision History
Revision No. Revision Date Revision Reason
1.0 27/02/2009 First version
Serial Number: sjzl20090356
Contents
Preface...............................................................i
General Configuration .......................................1Login Mode.................................................................... 1
HyperTerminal............................................................ 1
Telnet ....................................................................... 4
NetNumen ................................................................. 5
CLI Operations ............................................................... 8
Overview................................................................... 8
Operation Features ..................................................... 9
General Operations ....................................................12
Network Management Configuration.................................15
Overview..................................................................15
Configuring In-band NMS............................................15
Configuring Out-of-band NMS......................................19
Configuring Network Management ACM .......................22
Narrowband Service Configuration..................25Configuring In-band Channel ..........................................25
PSTN Service Configuration.............................................27
Overview..................................................................28
Configuring PSTN Service ...........................................28
IP Fax Service Configuration ...........................................36
Overview..................................................................36
Configuring IP Fax Service ..........................................36
Configuring Self-exchange .............................................45
Narrowband Management Configuration ...........................47
Modifying Ringing Profile ............................................47
Configuring Call Limit .................................................49
Broadband Service Configuraton .....................51VLAN Configuration........................................................51
Overview..................................................................51
Basic VLAN Configuration............................................52
Configuring VLAN Instance .................................53
Adding VLAN ....................................................55
Adding VLAN Uplink Port ....................................56
Adding Single Service Port .................................57
Adding Service Ports In Batch.............................57
VLAN Stacking Configuration .......................................58
Configuring VLAN Stacking Batch Service .............58
Configuring VLAN ID Extension ...........................61
ADSL/ADSL2+ Service Access Configuration......................64
Overview..................................................................65
Configuring PPPoA Access ...........................................66
Configuring IPoE/PPPoE Access....................................74
Configuring Line Profile ..............................................81
Configuring Alarm Profile ............................................87
Enabling Interface .....................................................92
Configuring MAC Pool .................................................93
VDSL2+ Service Access Configuration ..............................93
Overview..................................................................93
Configuring IPoE/PPPoE Access....................................94
Line Profile Configuration.......................................... 101
Configuring Basic Profile .................................. 101
Configuring Service Profile ............................... 110
Configuring DPBO Profile.................................. 115
Configuring UPBO Profile .................................. 118
Configuring Alarm Profile .......................................... 123
Enabling Interface ................................................... 128
SHDSL Service Access Configuration .............................. 129
Overview................................................................ 129
Configuring IPoE/PPPoE Access.................................. 130
Configuring Line Profile ............................................ 136
Configuring Alarm Profile .......................................... 140
Enabling Interface ................................................... 143
Multicast Service Configuration...................................... 144
Overview................................................................ 144
Configuring IGMP Snooping....................................... 144
Configuring IGMP Proxy............................................ 152
Configuring Bandwidth ............................................. 161
QoS Configuration ....................................................... 162
Overview................................................................ 162
Configuring Queue Scheduler Algorithm...................... 163
Configuring PVC Mapping.......................................... 164
Configuring Policy and Class...................................... 165
Configuring Port QoS Priority..................................... 167
Configuring QoS Mapping ......................................... 168
Configuring Egress Shaping Parameters...................... 170
Configuring Static Route ............................................... 171
Configuring Link Aggregation ........................................ 172
Configuring RMON ....................................................... 172
Spanning Tree Configuration ......................................... 173
Overview................................................................ 174
Enabling STP/RSTP .................................................. 174
Configuring RSTP Compatibility ................................. 176
Network Bridge Parameters Configuration ................... 177
Configuring Forward Delay ............................... 177
Configuring Hello Time..................................... 178
Configuring Max Age ....................................... 179
Configuring Priority ......................................... 181
Configuring Default Cost .................................. 182
Configuring Transmission Hold Count ................. 183
Port Parameters Configuration ................................... 184
Configuring STP Cost ....................................... 184
Configuring STP/RSTP Priority........................... 185
Configuring RSTP Administration Cost ................ 186
Configuring RSTP Edge Port.............................. 187
Configuring RSTP BPDU Packet Type .................. 188
Configuring RSTP Point-to-Point Connec-
tion.................................................... 188
Configuring RSTP Protocol Migration .................. 189
Configuring SNTP ........................................................ 190
Security Management Configuration..............193Network Security Configuration ..................................... 193
Port Location........................................................... 193
Enabling VBAS................................................ 193
Enabling PPPoE+............................................. 194
Enabling DHCP Option82 .................................. 195
Enabling SVLAN .............................................. 197
Enabling DHCP ........................................................ 198
Configuring Loop Check............................................ 199
Configuring SSH...................................................... 200
User Security Configuration........................................... 202
Binding IP Address................................................... 202
Configuring MAC Address Limit .................................. 202
Configuring MAC Address White List ........................... 203
Configuring MAC Address Black List............................ 204
Figures ..........................................................207
Tables ...........................................................209
Index ............................................................213
List of Glossary..............................................215
Preface
Purpose This manual provides configurations (CLI) of the ZXDSL 9806H(V2.0) ZTE Broadband Universal Access System.
IntendedAudience
This manual is intended for engineers and technicians who performoperation activities on the ZXDSL 9806H (V2.0) ZTE BroadbandUniversal Access System.
Prerequisite Skilland Knowledge
To use this document effectively, users should have a basic conceptof xDSL technologies, telecommunications technology, and AccessNetwork.
What Is in ThisManual
This manual contains the following chapters:
Chapter Summary
Chapter 1, GeneralConfiguration
Introduces login mode, CLI operations andnetwork management configuration.
Chapter 2,Narrowband ServiceConfiguration
Describes in-band channel configuration,PSTN service configuration, IP FAX serviceconfiguration and narrowband managementconfiguration.
Chapter 3,Broadband ServiceConfiguration
Describes VLAN configuration, ADSL/ADSL2+access service configuration, VDSL2 accessservice configuration, SHDSL access serviceconfiguration, multicast service configuration,QoS configuration, static route configuration,link aggregation configuration, RMONconfiguration, spanning tree configuration andSNTP configuration.
Chapter 4, SecurityManagementConfiguration
Describes network security configuration anduser security configuration.
RelatedDocumentation
The following documentation is related to this manual:
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemDocumentation Guide
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemFeature Description Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemProduct Description Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemHardware Description Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemExpansion Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemCutover Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemTroubleshooting Manual
Confidential and Proprietary Information of ZTE CORPORATION i
ZXDSL 9806H Configuration Manual (CLI)
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemAlarms Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemRoutine Maintenance Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemVersion Update Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemNetwork Management User Manual
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemConfiguration Manual (NetNumen)
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemCommand Manual (Volume I)
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemCommand Manual (Volume II)
ZXDSL 9806H (V2.0) ZTE Broadband Universal Access SystemCommand Manual (Volume III)
How to Get inTouch
The following sections provide information on how to obtain sup-port for the documentation and the software.
If you have problems, questions, comments, or sugges-tions regarding your product, contact us by e-mail at [email protected]. You can also call our customer support centerat (86) 755 26771900 and (86) 800-9830-9830.
ZTE welcomes your comments and suggestions on the quality andusefulness of this document. For further questions, comments, orsuggestions on the documentation, you can contact us by e-mailat [email protected]; or you can fax your comments and sugges-tions to (86) 755 26772236. You can also browse our websiteat http://support.zte.com.cn, which contains various interestingsubjects like documentation, knowledge base, forum and servicerequest.
Declaration ofRoHS Compliance
To minimize the environmental impact and take more responsi-bility to the earth we live, this document shall serve as formaldeclaration that manufactured by ZTE CORPORATION is in com-pliance with the Directive 2002/95/EC of the European Parliament- RoHS (Restriction of Hazardous Substances) with respect to thefollowing substances:
Lead (Pb)
Mercury (Hg)
Cadmium (Cd)
Hexavalent Chromium (Cr (VI))
PolyBrominated Biphenyls (PBBs)
PolyBrominated Diphenyl Ethers (PBDEs)
This declaration is issued based on our current level of knowledge.Since conditions of use are outside our control, ZTE CORPORATIONmakes no warranties, express or implied, and assumes no liability inconnection with the use of this information.
ii Confidential and Proprietary Information of ZTE CORPORATION
C h a p t e r 1
General Configuration
Table of ContentsLogin Mode........................................................................ 1CLI Operations ................................................................... 8Network Management Configuration.....................................15
Login ModeZXDSL 9806H (V2.0) supports following management modes:
HyperTerminal
Telnet
NetNumen (Network Management System)
HyperTerminal
Short Description Perform this procedure to log into the device through HyperTermi-nal.
Prerequisites Install the device and connect the cable.
Power ON ZXDSL 9806H system.
Use console cable to connect the serial port on maintenanceconsole of computer with the console port on the front panelof SCCB card.
Context To log into the device through HyperTerminal, perform the follow-ing steps:
Steps 1. In Windows, click Start > All Programs > Accessories >Communications > HyperTerminal. The system displaysthe interface as shown in Figure 1.
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ZXDSL 9806H Configuration Manual (CLI)
FIGURE 1 NEW CONNECTION
2. Input the Name and click OK. The system displays the inter-face, as shown in Figure 2.
FIGURE 2 CONFIGURE CONNECTION
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3. Select COM1 or COM2 according to the connection. Click OK.The system displays COM1 Properties interface, as shown inFigure 3. Click Restore Defaults to select the default settings.Click OK to complete the configuration.
FIGURE 3 COM1 PROPERTIES
4. If the system is running normally, the following login interfacedisplays on HyperTerminal. Enter login name and passwordboth as admin to connect to the system.
######################################################## #
# Welcome to ZTE Full Service Access Platform ## ## Press Return to get started #
# #
# Copyright 2005-2009 , ZTE Co.,Ltd. #
# #
#######################################################Login:adminPassword:
9806>en
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ZXDSL 9806H Configuration Manual (CLI)
Please input password:
9806#
5. To start configuring the data, enter into the configuration modeby entering enable command after the 9806> prompt. Thepassword is admin.
END OF STEPS
Result The log into the device through HyperTerminal is successful.
Telnet
Short Description Perform this procedure to log into device using Telnet.
Prerequisites In-band and out-of-band NMS IP address is configured.
Maintenance console computer can ping in-band/out-of-bandIP address of the device.
Context To log into the device using Telnet, perform the following steps:
Steps 1. In Windows, click Start > Run. The Run interface appearsas shown in Figure 4. In the interface, input telnet x.x.x.x (x.x.x.x is NE IP address). Click OK to start Telnet client.
FIGURE 4 RUN TELNET
2. If the connection is normal, input admin as login and passwordto log into the device to configure data.######################################################## ## Welcome to ZTE Full Service Access Platform ## ## Press Return to get started ## ## Copyright 2005-2009 , ZTE Co.,Ltd. ## ########################################################Login:adminPassword:
9806>en
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Please input password:
9806#
END OF STEPS
Result Logging into the device using Telnet is successful.
NetNumen
Short Description Perform this procedure to manage the device through NetNumenNMS.
Prerequisites The database and NMS are installed.
In-band or out-of-band IP address is configured.
The NMS server can ping in-band/out-of-band IP address ofthe device.
Context To manage the device through NetNumen NMS, perform the fol-lowing steps:
Steps 1. Run database.
2. Configure database in NMS configuration center.
3. Add device type in NMS configuration center.
4. Initialize database.
5. Start NMS server.
6. Start NMS client.
7. Create NE.
8. Manage NE.
END OF STEPS
Result 9806H can be managed through NetNuemen.
Example The following example displays how to manage 9806H throughNetNumen:
1. Run NMS database.
Note:
Database generally runs automatically.
2. Click Start > All Programs > NetNumen N31 > Tools >NetNumen N31 Config Center. The NetNumen ConfigCenter interface appears. Select Database Type as MSSQL Server from the drop-down list. Configure database inDatabase Configuration interface, as shown in Figure 5.After configuration, click Save.
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ZXDSL 9806H Configuration Manual (CLI)
FIGURE 5 NETNUMEN CONFIG CENTER
After configuring database, click Test Connection to test theconnection status between NMS server and database. ClickOptimize to optimize database.
3. In NetNumen Config Center interface, select NE Module toadd device type. Select DSL Product and Access GatewayProduct. Click Save, as shown in Figure 6.
FIGURE 6 ADD NE
4. Click Start > All Programs > NetNumen N31 > Tools >NetNumen N31 Init Database to initialize database.
5. Click Start > All Programs > NetNumen N31 > NetNumenN31 Server to start NMS server, as shown in Figure 7.
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FIGURE 7 NMS SERVER
6. Click Start > All Programs > NetNumen N31 > NetNumenN31 Client to start NMS client, as shown in Figure 8.
FIGURE 8 NMS CLIENT
7. In NMS client interface, right-click Topology Tree Root. Se-lect Create NE. In the Management-Create interface, selectZXDSL 9806H in NE Type and configure NE parameters, asshown in Figure 9. After configuration, click Create to createNE. The created NE is displayed in NMS client interface.
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ZXDSL 9806H Configuration Manual (CLI)
FIGURE 9 CREATE NE
8. After NE is successfully created, right-click NE in client topol-ogy. Select Rack to open 9806H rack. 9806H can be managedthrough NetNumen NMS.
Postrequisite Configure 9806H services through NetNumen NMS.
CLI OperationsThis topic includes the following:
Overview
Operation Features
General Operations
Overview
ZXDSL 9806H supports two maintenance modes: Network man-agement and CLI.
Network management: The NMS NetNumen N31 system pro-vides GUI for operation and maintenance.
CLI: CLI system provides command line input interface formaintenance. Users can log in to the system through Hyper-Terminal or Telnet.
This manual describes basic CLI operations.
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Operation Features
This topic introduces ZXDSL 9806H CLI operation features.
Overview Figure 10 shows methods for entering different command modes.
FIGURE 10 COMMAND MODES
Note:
Execute the exit command to exit from the current commandmode.
Execute the quit command to exit from Telnet client from anymode.
Execute the disable command to go back to the operator modefrom administrator mode.
By default, the command line prompt uses 9806 as the sys-tem host name (Execute the system hostname command tomodify it).
The contents in brackets shows the current command mode.
To avoid illegal access, the system provides various commandmodes for users at different levels. Users who are at differentlevels execute different commands even if they enter into thesame command mode, avoiding illegal access.
Intelligent Match For convenience, ZXDSL 9806H supports intelligent match. Wheninputting a command, the user can only input the key characterand press Tab to get the whole command. For instance, to get theenable command, the user can input en or ena and press Tab.
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ZXDSL 9806H Configuration Manual (CLI)
Note:
If there is no response when the user press Tab, the reason maybe:
1. Wrong key character
For instance, input acv and press Tab for the activate-version. There is no response.
2. Key character collision
For instance, input re and press Tab. There is no response.There are two commands starting with re: reboot commandand reset command. The system cannot give intelligentmatch. It gives a prompt for selection.
Edit Function The system support edit in multiple lines. For each command, themaximum length is 255 characters.
Table 1 describes edit functions.
TABLE 1 EDIT FUNCTIONS
Key Function
Common keys. Insert to the cursor space andmove the cursor to the right.
BackSpace Delete the character before thecursor and the cursor moves onecharacter space forward. Thecursor stops when it goes to theline start.
or The cursor moves one characterspace to the left.
or The cursor moves one characterspace to the right.
The cursor goes to the line start.
or Delete Delete the character behind thecursor and the cursor moves onecharacter space backward.
Delete all characters before thecursor and the cursor goes to theline start.
Delete all characters behind thecursor and the cursor goes to theline end.
and Display history command. Or,press to show theprevious command.
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Note:
Common keys indicate characters, numbers and punctuation keys.
Help Function ZXDSL 9806H CLI system provides simple help information tousers. Users can input ? to get Help information.
Input ? in any mode. The system shows all system commandsin this mode.
For instance, input ? in operator mode to get all commandlines in operator mode.9806>enable - Enter the privileged modelogout - Exit the login statequit - Exit the login stateshow - Show running system informationtelnet - Open a TELNET connectionuser - User management
Input a command name and press space key and press ?. Thesystem shows the next command character and the commandparameters.
For instance, input show vlan command in broadband globalconfiguration mode, press space key and press ?. The helpinformation is shown as follows:9806(config)# show vlancross-connection - Show vlan cross connection1..4094 - vlan-list
Input ? behind the key character. The system shows com-mands starting with the key character in the selected commandmode.
For instance, input re in administrator mode and press ?. Thesystem shows commands starting with re in administrationmode.9806H# rerebootreset
Display Function Sometimes, there is much system information which cannot bedisplayed in one screen. For convenience, the system supportsPause function. The user can stop display when the information isover one screen.
Note:
By default, a computers own HyperTerminal software supports24line display in one screen.
CLI system supports two display modes, as described in Table 2.
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ZXDSL 9806H Configuration Manual (CLI)
TABLE 2 DISPLAY FUNCTION
Key Function
Q Stop displaying and terminate theoperation.
SPACE Continue displaying the nextscreen.
Saving andQuerying History
Command
CLI system saves history commands automatically. Users can ex-ecute history command repeatedly. History command record isonly valid to the existing user. When the user logs in again, thehistory commands are cleaned up.
Execute the show history command to show history command.9806H# show history
1 ena2 show run3 configure4 add-vlan 2-485 show vlan6 vlan 2-48 4/1-24 untag one-to-one7 show vlan8 show vlan cross-connection9 show interface 4/1
PromptInformation
If the command is wrong, the system gives a prompt.
Table 3 describes common prompts.
TABLE 3 PROMPT INFORMATION
Prompt Cause
Bad command The command is not found.
Invalid parameter Parameter is invalid.
Param out of range Parameter exceeds the valuerange.
Missing parameter Parameter is missing.
Incomplete command Command is incomplete.
Ambiguous parameter Command is ambiguous.
General Operations
This topic introduces general operations on ZXDSL 9806H in CLImode.
Querying Version Execute the show version command to show boot, main controlcard and service card information.9806# show versionCardType Type VerNo VerLen Status BuildTime State FileName--------------------------------------------------------------------SCCB MVER V2.0.0P1T1 5517514 VALID 20080804155929 backup sccb.bin
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SCCB SVER V2.0.0P1T1 1755264 VALID 20080804155931 backup SCCB_SV.binSCCB FW V2.0.0T5 535984 VALID 20080721151026 backup SCCB_FW.binSCCB MVER V2.0.0T5 5511385 VALID 20080721151022 active sccbv2t5.bin
Current Boot Info:SCCB BOOT V2.0.0P1T1 375376 VALID 20080804160005 active
Querying SystemTrap Information
Execute the show trap-buffer record command to show systemalarms, process and status.9806#show trap-buffer record2008-06-26 05:55:02 Slot 5 CPU temperature has been normal.2008-06-26 05:54:30 Slot 5 CPU temperature is higher than threshold.2008-06-26 03:52:25 Slot 5 CPU temperature has been normal.2008-06-26 03:52:15 Slot 5 CPU temperature is higher than threshold.2008-06-26 03:51:41 Slot 5 CPU temperature has been normal.2008-06-26 02:20:42 System cold start.
Querying MainControl Card CPU
and Memory
Execute the show card slot 5 command to show main controlcard CPU and memory utilization.9806# show card slot 5Shelf No : 1Slot No : 5Status : InserviceBoard Type : SCCBPortNumber : 2HardVer : 080100SoftVer : V2.0.0T5LastChange :Cpu Load Threshold : 80Cpu Load : 68Memory Load Threshold : 80Memory Load : 45---------------------------------------------------------------
ConfiguringSystem Time
Execute the time command to configure system time. Executethe show time command to show system time.9806(config)# time 2008-10-07 09:27:509806(config)# show timeSystem Time: 2008-10-07 09:27:57
Note:
System time format is: yyyy-mm-dd HH:MM:SS.
System time is valid once it is configured.
The system has a strict check on time setting. Illegal settingis not permitted.
ConfiguringSystem Name
Execute the system hostname command to configure systemname.9806(config)# system hostname ZXDSL9806HZXDSL9806H(config)#
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ZXDSL 9806H Configuration Manual (CLI)
Note:
The default system name is 9806.
System name is valid once it is configured.
The command line interface prompt is affected if system nameis modified.
Configuring SaveInterval
Execute the save-interval command to configure save interval.9806(config)# save-interval 24
Note:
The unit for time interval is hour.
Enabling TrapFunction
Execute the system trap-control enable command to enablesystem trap function. Execute the show system command toshow system trap status. In interface configuration mode, executethe trap-control enable command to enable port trap function.Execute the show interface slot/port command to show porttrap status.
Enable system trap function.9806(config)# system trap-control enable9806(config)# show systemRunning Time : 0day(s), 21hour(s), 20minute(s), 56second(s)(76856)Rack : 0Frame : 0Location :Contact :TrapControl : enableOtlt status : disableOtlt vlan : NULLSystem vlan-mode : traditional-----------------------------------------------Telnet connection : 10.63.10.105:1631
Enable port trap function.9806(cfg-if-ge-5/1)# trap-control enable9806(cfg-if-ge-5/1)# show interface 5/1
Interface : 5/1
PVID AcceptFrames1 admitall
PortLockStatus : unlockAdminStatus : enableTrapControl : enableLinkStatus : upFlowControl : autoFlowControlActual : force-disableSpeedSet : autoSpeedActual : 1000MDuplexSet : autoDuplexActual : fullBroadCastRateLimit : 1024kbpsFloodRateLimit : 1024kbpsMulticastRateLimit : 1024kbpsDHCP Packet Limit : 2048 ppsIGMP Packet Limit : 2048 ppsIfType : EPON_PORT_TYPE
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Testing NetworkStatus
Execute the ping command to test network.9806# ping 10.63.10.105PING 10.63.10.105: 56 data bytes64 bytes from 10.63.10.105: icmp_seq=0. time=10. ms64 bytes from 10.63.10.105: icmp_seq=1. time=0. ms64 bytes from 10.63.10.105: icmp_seq=2. time=0. ms64 bytes from 10.63.10.105: icmp_seq=3. time=0. ms64 bytes from 10.63.10.105: icmp_seq=4. time=0. ms----10.63.10.105 PING Statistics----5 packets transmitted,5 packets received,0% packet lossround-trip (ms) min/avg/max = 0/2/10
Network ManagementConfigurationThis topic includes the following:
Overview
Configuring In-band NMS
Configuring Out-of-band NMS
Configuring Network Management ACM
Overview
Features 9806H device has the following features:
Supports NMS interface
Uses SNMP to communicate with NMS
Supports ZTE NetNumen N31 NMS
NetNumen N31 can manage and maintain 9806H device. 9806Hsends status information to NetNumen N31 through Trap mes-sage. The status information includes configuration changes oralarms.
Configuring In-band NMS
Short Description Through this configuration, NetNumen can manage and maintain9806H device in in-band NMS mode. In in-band mode, NMS caninter-exchange information through the service channel of the de-vice. It is flexible in networking without any auxiliary equipment,which saves users costs. However, it is not easy for maintenance.
NetworkingDiagram
The in-band NMS configuration networking diagram is shown inFigure 11.
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ZXDSL 9806H Configuration Manual (CLI)
FIGURE 11 IN-BAND NMS NETWORK CONFIGURATION DIAGRAM
NetNumen NMS manages and maintains 9806H device throughuplink interface in in-band NMS mode. On 9806H device, add adefaulted route to NetNumen and configure the relevant SNMP pa-rameters.
Data Configura-tion
Table 4 lists the in-band NMS data configuration parameter exam-ple.
TABLE 4 IN-BAND NMS DATA CONFIGURATION
Item Data
NMS VLAN VLAN ID: 100
Uplink Interface Port number: 5/1
Port type: GE
9806H In-band NMS Interface IP address: 192.168.1.10/24
NetNumen NMS Server IP address: 10.61.84.66
Type: ZTE-NMS
Default Route Next hop gateway IP address:192.168.1.254
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ConfigurationFlow
The in-band NMS configuration flow diagram is shown in Figure 12.
FIGURE 12 IN-BAND NMS CONFIGURATION FLOW DIAGRAM
Context To configure in-band NMS, perform the following steps:
Steps 1. Log into 9806H device.
Input username and password (use admin as username andpassword) to log into the system. Execute enable commandto enter into user mode. Execute configure command to enterinto global configuration mode.Login:adminPassword:9806>enablePlease input password:9806# configure9806(config)#
2. (Optional) Configure in-band MAC address.
An unique MAC address is configured in factory. It is no needto configure it again. If it is necessary to configure other MACaddresses, execute mac inband command.
3. Configure NMS VLAN.
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In global configuration mode, execute add-vlan command toconfigure NMS VLAN.9806(config)#add-vlan 100
4. Add uplink interface to NMS VLAN.
In global configuration mode, execute vlan command to adduplink interface to NMS VLAN in tag mode.9806(config)#vlan 100 5/1 tag
5. In global configuration mode, execute ip subnet command toconfigure in-band IP address.9806(config)#ip subnet 192.168.1.10 255.255.255.0 100 name wangguan
Note:
The IP address of in-band and out-of-band NMS must be in adifferent network segment.
6. Configure NMS server IP address.
In global configuration mode, execute snmp-server hostcommand to configure NMS server IP address.9806(config)#snmp-server host 10.61.84.66 zte-nms
Note:
In the real networking, there can be the third-party system thatreceives the Trap reported from NE. Therefore, it is necessaryto decide whether to configure SNMP server as ZTE-NMS.
7. (Optional) Configure SNMP community.
Configuration is not needed as the system defaults public andprivate community. If it is needed, execute snmp-servercommunity command.
8. (Optional) Switch ON Trap alarm.
By default, Trap alarm ON. It does not need any configuration.If it is needed, execute system trap-control command.
9. (Optional) Configure default route.
If NE and NMS server is not in the same network segment innetworking, execute ip route command to configure defaultroute.9806(config)#ip route 0.0.0.0 0.0.0.0 192.168.1.254
10.Save configuration.
In user mode, execute save command to save the system con-figuration.9806#save
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End of Steps
Result NetNumen NMS can manage 9806H device normally.
Configuring Out-of-band NMS
Through this configuration, NetNumen can manage and maintain9806H device in out-of-band NMS mode. The out-of-band NMSmode has the following features:
Using non-service channel to transmit management informa-tion.
Keeping the management channel and service channel sepa-rate.
Providing more reliable device management channel thanin-band NMS mode.
Capable of locating the network device information in time andperforming supervision when 9806H device is faulty.
NetworkingDiagram
The out-of-band NMS networking configuration diagram is shownin Figure 13.
NetNumen NMS manages and maintains 9806H device in out-of-band NMS mode through out-of-band NMS interface. On 9806Hdevice, add the default route to NetNumen NMS and configureSNMP relevant parameters.
FIGURE 13 OUT-OF-BAND NMS NETWORK CONFIGURATION DIAGRAM
Data Configura-tion
Table 5 lists the out-of-band NMS data configuration parameterexample.
TABLE 5 OUT-OF-BAND NMS DATA CONFIGURATION
Item Data
9806H out-of-band NMS interface IP address: 192.168.10.1/24
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Item Data
NetNumen NMS server IP address: 10.63.10.238/24
Default route Next hop gateway IP address:192.168.10.254
ConfigurationFlow
The out-of-band NMS configuration flow is shown in Figure 14.
FIGURE 14 OUT-OF-BAND NMS CONFIGURATION FLOW DIAGRAM
Note:
The data configuration here introduced is for 9806H side. For thewhole network, the relevant data configuration must be made onrouter.
Context To configure out-of-band NMS, perform the following steps:
Steps 1. Logging into 9806H device.
Log into the device with the default username (admin) andpassword (admin). Execute enable command to enter intouser mode. Execute configure command to enter into globalconfiguration mode.Login:adminPassword:9806>enable
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Please input password:9806# configure9806(config)#
2. Configuring out-of-band MAC address.
An unique MAC address is configured in factory. It does notneed any configuration. If a configuration is needed, executemac outband command to configure other MAC addresses.
3. In global configuration mode, execute ip host command toconfigure out-of-band IP address.9806(config)#ip host 192.168.10.1 255.255.255.0
Note:
The IP addresses of in-band and out-of-band NMS must beconfigured in a different network segment.
4. Configuring NMS server IP address.
In global configuration mode, execute snmp-server hostcommand to configure NMS server IP address9806(config)#snmp-server host 10.63.10.238
5. (Optional) Configuring SNMP community.
public and private community is the system default variables. Itdoes not need any configuration. If a configuration is needed,execute snmp-server community command.
6. Switching ON Trap alarm.
By default, Trap alarm ON. It does not need any configuration.If a configuration is needed, execute system trap-controlcommand.
7. (Optional) Configuring default route.
If NE and NMS server is not in the same network segment innetworking, execute ip route command to configure defaultroute.9806(config)# ip route 0.0.0.0 0.0.0.0 192.168.10.254
8. Saving configuration.
In user mode, execute save command to save system config-uration.9806#save
End of Steps
Result NetNumen NMS can manage 9806H device normally.
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Configuring Network ManagementACM
Short Description Perform the procedure to configure NMS ACM.
Prerequisite Log in to the device through HyperTerminal, Telnet or SNMP NMSmode.
Context Configuring NMS ACM aims to restrict external devices to visit9806H device.
In the real networking application, usually the device is configuredwith an in-band NMS IP address and connected to public networkor operation and maintenance network through uplink interface.All users in the network can visit the device. However, for thesake of safe operation of the device, only a few users are allowedto configure the device. Therefore, the function is realized on thedevice to control users access to device NMS module. It is namedas NMS ACM (Access Control List for Management).
ACM enable-switch can be configured on the device. If ACM func-tion is configured as enable, the unmatched IP packets in the ACMlist are discarded. For the source IPaddresses that are not in ACMlist, the device does not respond to the ARP request packets andICMP packets, which prevents the illegal device from obtaining theMAC address and IPaddress of the local device and launching at-tacks.
Steps 1. Configure ACM entry.2. Enable ACM function.
Note:
During ACMconfiguration, make sure to configure the IPaddress of the NMS computer before enabling ACM func-tion. Otherwise, once function is enabled, it is impossibleto use Telnet or SNMP NMS terminal to manage the device.
ACM can be configured with 16 entries maximum.
End of Steps
Result NMS ACM is configured successfully.
Example The following examples display how to configure ACM:
Permit all IP addresses in the 1010.10.0 network segment tovisit the device through Telnet or SNMP.9806(config)# manage-access-list 1 permit source-ip 10.10.10.10/249806(config)# manage-access-list 2 deny any9806(config)# manage-access-list enable
Permit the IP address 10.10.10.1 only to visit the devicethrough Telnet or SNMP.9806(config)# manage-access-list 1 permit source-ip 10.10.10.1/329806(config)# manage-access-list 2 deny any9806(config)# manage-access-list enable
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Permit the IP address 10.10.10.1 only to visit the devicethrough Telnet.9806(config)# manage-access-list 1 permit source-ip 10.10.10.1/32ip-type tcpdest-port 239806(config)# manage-access-list 2 deny any9806(config)# management-access-list enable
Permit the IP address 10.10.10.1 only to visit the devicethrough SNMP.9806(config)# manage-access-list 1 permit source-ip 10.10.10.1/32ip-type udpdest-port 1619806(config)# manage-access-list 2 deny any9806(config)# manage-access-list enable
Postrequisite 9806H device can be logged into through ACM-specified NMS de-vices and modes.
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C h a p t e r 2
Narrowband ServiceConfiguration
Table of ContentsConfiguring In-band Channel ..............................................25PSTN Service Configuration.................................................27IP Fax Service Configuration ...............................................36Configuring Self-exchange .................................................45Narrowband Management Configuration ...............................47
Configuring In-band ChannelShort Description Perform this procedure to configure in-band channel.
Prerequisite Hardware is well connected.
NetworkingDiagram
Figure 15 shows the in-band networking diagram connecting NMSand VoIP into IP network through the same channel.
FIGURE 15 IN-BAND NETWORKING DIAGRAM
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Data Configura-tion
In-band channel configuration data is listed in Table 6.
TABLE 6 IN-BAND CHANNEL CONFIGURATION DATA
Item Description Data
NMS VLAN ID 1000
Uplink port 5/1
NMS IP address 172.16.234.101
9806H In-band NMS
NMS static routegateway
172.16.234.254
VoIP VLAN ID 801
Uplink port 5/1
VoIP media IP address 202.109.228.2
VoIP Service
VoIP default routegateway
202.109.228.1
ConfigurationFlow
The in-band channel configuration flow is shown in Figure 16.
FIGURE 16 IN-BAND CHANNEL CONFIGURATION FLOW
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Context
Note:
Before configuring in-band channel, use HyperTerminal to config-ure in-band channel on local console.
To configure in-band channel, perform the following steps:
Steps 1. Configure VoIP VLAN and add uplink port to VLAN in Tag mode.9806(config)# add-vlan 8019806(config)# vlan 801 5/1 tag
2. Configure in-band NMS VLAN and add uplink port to VLAN inTag mode.9806(config)# add-vlan 10009806(config)# vlan 1000 5/1 tag
3. Configure VoIP voice IP and default route.9806(config)# ip subnet 202.109.228.2 255.255.255.0 801 voip9806(config)# ip route 0.0.0.0 0.0.0.0 202.109.228.1
4. (Optional) Configure NMS IP and static route.9806(config)# ip subnet 172.16.234.101 255.255.255.0 10009806(config)# ip route 172.0.0.0 255.0.0.0 172.16.234.254
Note:
If NMS network and VoIP voice network are in different net-work, it is necessary to perform this step. If NMS network andVoIP voice network are in the same network and network IP,media IP and signal IP have the same IP address, it is not nec-essary to perform this step.
5. Ping SS.6. Save configuration.
Right-click MP card in Rack interface. Select System Infor-mation. In the prompted System Configuration interface,click Save To Flash. The Ask dialogue box appears. ClickYes.
End of Steps
Result Inband channel configuration is complete and 9806H can pingNMS and SS.
PSTN Service ConfigurationThis topic includes the following:
Overview
Configuring PSTN Service
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Overview
ServiceDescription
VoIP service is for compressing and packaging the traditional sim-ulated voice signal and transmitting through IP divided exchangenetwork, which reduces the costs of voice service.
ServiceSpecifications
9806H provides voice access service through voice service card.Table 7 list the port numbers in voice cards used in ZXDSL 9806H:
TABLE 7 VOICE SERVICE CARD SPECIFICATION
Card Type Port Number Remarks
ATLC 48 POTS user interface card
ATLA 24 POTS user interface card
Configuring PSTN Service
Short Description Perform this procedure to configure PSTN service.
Prerequisites MG connects to MGC successfully. The status is normal.
PSTN user data corresponding to MG are configured at MGCside.
Voice card ATLC is inserted in the specified slot.
NetworkingDiagram
Figure 17 shows the PSTN service access networking diagram.
FIGURE 17 PSTN SERVICE ACCESS NETWORKING DIAGRAM
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Data Configura-tion
Table 8 describes PSTN service access data configuration.
TABLE 8 PSTN SERVICE ACCESS DATA CONFIGURATION
Item Data
User port 3/1 48
VoIP media IP address 202.109.228.2
VoIP default routegateway
202.109.228.1
VoIP resource RTP000 RTP127
VoIP Service
User Resource USER096 - USER143
Type ZTE SS
IP address 202.109.211.242
H.248 protocol portnumber
2944
SS
Interface registermode
IP + PORT
ConfigurationFlow
Figure 18 shows PSTN service access configuration flow.
FIGURE 18 PSTN SERVICE ACCESS CONFIGURATION FLOW
Steps To configure PSTN service access, perform the following steps:
1. Check MG.
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Execute the get-mgbaseattr command to check MG IP.9806(ag)# get-mgbaseattrMGID: 1PROTYPE: H248VERSION: 1ENCODETP: TEXTMGIP: 202.109.228.2MGMASK: 255.255.255.0MGPORT: 2944TRANSLAY: IPTRANSPRO: UDPDOMNAME:MGINFO: USE IPMGCID1: 1MGCID2: 0MGCID3: 0MGCID4: 0SELFEXCHANGE: disablePROTECTCALL: disableDISASTERPROT: disableCURMGCID: 1---------------------------------1 rows are effected
Execute the mod-mgip command to modify MG IP.9806(ag)#mod-mgip oldip 202.109.228.2 newip 10.63.198.250newmask 255.255.255.09806(ag)# get-mgbaseattr
MGID: 1PROTYPE: H248VERSION: 1ENCODETP: TEXTMGIP: 10.63.198.250MGMASK: 255.255.255.0MGPORT: 2944TRANSLAY: IPTRANSPRO: UDPDOMNAME:MGINFO: USE IPMGCID1: 1MGCID2: 0MGCID3: 0MGCID4: 0SELFEXCHANGE: disablePROTECTCALL: disableDISASTERPROT: disableCURMGCID: 12-7---------------------------------------1 rows are effected
2. Configure MGC.
Execute the mod-mgc command to configure MGC.9806(ag)# mod-mgc mgcid 1 mgctype 1 mgcip 202.109.211.242mgcport 2944
Table 9 describes MGC parameters.
TABLE 9 MGC PARAMETERS
Parameter Description
mgcid MGC ID number
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Parameter Description
mgctype MGC type, including:
1-ZTE
2-HW
3-CISCO
4-ALCATEL
5-NORTEL-MGCP
6-NORTEL-H248
mgcip MGC IP
mgcport MGC port number. Generally,H.248 port is 2944.
domname MGC domain name (optional)
md5info MD5 encryption
mgcinfo MGC uses IP address or domainname
0-IP address
1-Domain name
3. Check VoIP route.
Execute the get-voip-config command to check VoIP route.9806(ag)# get-voip-config
mgid: 1type: mediaipaddr: 202.109.228.2submask: 255.255.255.0nexthop: 202.109.228.1port: 10000----------------------------------------------mgid: 1type: controlipaddr: 202.109.228.2submask: 255.255.255.0nexthop: 202.109.228.1port: 2944----------------------------------------------2 rows are effected
Execute the mod-voip-route command to modify MG route.9806(ag)# mod-voip-route mgid 1 type 1 nexthop 10.63.198.19806(ag)# get-voip-config
mgid: 1type: mediaipaddr: 10.63.198.250submask: 255.255.255.0nexthop: 10.63.198.1port: 10000-------------------------------------------------mgid: 1type: controlipaddr: 10.63.198.250submask: 255.255.255.0nexthop: 10.63.198.1port: 2944
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-------------------------------------------------2 rows are effected
Table 10 describes MG route parameters.
TABLE 10 MG ROUTE PARAMETERS
Parameter Description
mgid MG ID number
type Route type, 1-Media route
nexthop Next hop IP address
nexthopmac Next hop MAC address
arptime ARP learning time
4. Check narrowband user circuit Termination ID.
Note:
Narrowband circuit Termination ID corresponds to four userslots. They are:
Slot 1: USER000-USER047
Slot 2: USER048-USER095
Slot 3: USER096-USER143
Slot 4: USER144-USER191
For ZXDSL 9806H, the default narrowband user circuit Termi-nation ID is USER000-USER191.
Do not configure user circuit unless Termination ID is modified.
In this instance, the narrowband user circuit Termination ID onSS is USER096-USER143, which corresponds to Slot 3. There-fore, it is unnecessary to modify Termination ID.
If the narrowband user circuit Termination ID is not consistentwith that on SS, delete it. Execute the following command toadd SLC user resource to be USER096-USER143.9806(ag)# del-slctermid beginslot 3 num 489806(ag)# add-slctermid beginslot 3 num 48 tmidfix USER00 type 3digitlen 3 begno 96 mgid 1
Table 11 describes narrowband user circuit Termination ID pa-rameters.
TABLE 11 TERMINATION ID PARAMETERS
Parameter Description
beginslot Begin slot
beginindex Begin index
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Parameter Description
num User number
tmidfix SLC user termination ID prefix
type Termination ID type
1: USER0010010001-USER00100100031
2: USER0-USER31
3: USER000-USER031
digitlen Ending number digit length
begno Begin number
mgid MG ID
Note:
i. TID cannot exceed 64 bytes. Generally, one system onlyuses one Termination ID type.
ii. In practical situation, select the following Termination IDtype:
USER00100100000-USER00100100047
In USER00100100000-USER00100100047, 001 is unitnumber, 001 is sunit number and 00000-00047 is cir-cuit number.
USER0-USER47
USER0-USER47 is used when SS of Huawei is intercon-nected.
USER000 USER047
USER000 USER047 meets various demands of users.
5. Check VoIP resource Termination ID.
Note:
For ZXDSL 9806H, the default VoIP resource Termination ID isRTP000RTP127. Do not configure VoIP resource unless Ter-mination ID is modified.
Execute the get-ipstermid command to view VoIP resourceTermination ID. In this instance, the VoIP resource TerminationID on SS is RTP000RTP127, which is the default TerminationID. Therefore, it is unnecessary to modify Termination ID.9806(ag)#get-ipstermidcircuit: 0termid: RTP000mgid: 1----------------------------------------------------
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circuit: 1termid: RTP001mgid: 1----------------------------------------------------
circuit: 2termid: RTP002mgid: 1-----------------------------------------------------circuit: 3termid: RTP003mgid: 1----------------------------------------------------circuit: 4termid: RTP004mgid: 1----------------------------------------------------circuit: 5termid: RTP005mgid: 1----------------------------------------------------circuit: 6termid: RTP006mgid: 1----------------------------------------------------circuit: 7termid: RTP007mgid: 1----------------------------------------------------circuit: 8termid: RTP008mgid: 1----------------------------------------------------circuit: 9termid: RTP009mgid: 1----------------------------------------------------circuit: 10termid: RTP010mgid: 1
If the VoIP resourceTermination ID is not consistent with thaton SS, delete it. Execute the following command to add ISPuser resource to be RTP0000-RTP0127.9806(ag)# del-ipstermid9806(ag)# add-ipstermid tmidfix RTP type 3 digitlen 4 mgid 1
Table 12 describes VoIP resource Termination ID parameters.
TABLE 12 VOIP RESOURCE TERMINATION ID PARAMETERS
Parameter Description
tmidfix IPS VoIP resource TerminationID prefix
type Termination ID type
1: RTP00200100000-USER00200100127
2: RTP0-RTP127
3: RTP000-RTP127
digitlen Ending number digit length
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Parameter Description
begno Begin number
mgid MG ID
Note:
i. SCCB card has a built-in VoIP sub-card, which supports128port VoIP resource.
ii. It is unnecessary to set the number when IPS resource isadded. By default, the IPS resource is 128.
iii. TID cannot exceed 64 bytes. Generally, one system onlyuses one Termination ID type.
If type 1 is selected, the Termination ID format isRTP00200100000-RTP00200100127. In which, 002 isunit number, 001 is sunit number and 00000-00127is circuit number.
If type 2 is selected, the Termination ID format isRTP0RTP127.
If type 3 is selected, the Termination ID format isRTP000RTP127.
6. Check H.248 status.
Execute the h248state command to check H.248 status.9806(ag)# h248stateH248-SS link status(H248Trkplink) : OK. MGCid is 1.
If the system shows OK, it indicates that data is correctly con-figured and narrowband service is normal.
7. Save configurations.
Execute the save command to save configurations.9806# save
End of Steps
Result PSTN service is configured successfully.
The calling party hooks off and hears dialing tone.
The calling party dials the called number. The called party canhear the ringing tone and the calling party can hear ringing-back tone.
The calling party can talk with the called party.
The calling party hears busy tone after the called party hookson.
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IP Fax Service ConfigurationThis topic includes the following:
Overview
Configuring IP FAX Service
Overview
Introduction IP fax is similar to Internet telephony, but it is optimized for trans-mitting fax data. IP fax generally works by sending fax data overthe Internet to strategically placed fax servers. Once a fax arrivesat the server closest to the final destination, it is transferred ontonormal telephone lines and transmitted like a normal fax. Becausethe data is transmitted over the Internet for most of the journey,the total cost of transmission is much less than if it traveled overlong-distance telephone lines like conventional faxes.
ServiceSpecifications
9806H supports the following fax modes:
Full-control T.30
Full-control T.38
T.30 Transparent
T.38 Transparent
It is recommended to use full-control mode.
Configuring IP Fax Service
Short Description Perform this procedure to configure IP fax service access.
Prerequisites The communication between MG and MGC is normal.
Voice service port works normally.
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NetworkingDiagram
Figure 19 shows the IP fax service access networking diagram.
FIGURE 19 PSTN SERVICE ACCESS NETWORKING DIAGRAM
Data Configura-tion
Table 13 describes IP fax service access data configuration.
TABLE 13 IP FAX SERVICE ACCESS DATA CONFIGURATION
Item Data
User port 3/1 48
VoIP media IP address 202.109.228.2
VoIP default routegateway
202.109.228.1
VoIP resource RTP000 RTP127
IP Fax Service
Fax mode T.30
Type ZTE SS
IP address 202.109.211.242
H.248 protocol portnumber
2944
SS
Interface registermode
IP + PORT
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ConfigurationFlow
Figure 20 shows IP fax service access configuration flow.
FIGURE 20 IP FAX SERVICE ACCESS CONFIGURATION FLOW
Steps To configure IP fax service, perform the following steps:
1. Check MG.
Execute the get-mgbaseattr command to check MG IP.9806(ag)# get-mgbaseattr
MGID: 1PROTYPE: H248VERSION: 1ENCODETP: TEXTMGIP: 202.109.228.2MGMASK: 255.255.255.0MGPORT: 2944TRANSLAY: IPTRANSPRO: UDPDOMNAME:MGINFO: USE IPMGCID1: 1MGCID2: 0MGCID3: 0MGCID4: 0SELFEXCHANGE: disablePROTECTCALL: disableDISASTERPROT: disableCURMGCID: 1---------------------------------1 rows are effected
Execute the mod-mgip command to modify MG IP.9806(ag)#mod-mgip oldip 202.109.228.2 newip 10.63.198.250newmask 255.255.255.09806(ag)# get-mgbaseattr
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MGID: 1PROTYPE: H248VERSION: 1ENCODETP: TEXTMGIP: 10.63.198.250MGMASK: 255.255.255.0MGPORT: 2944TRANSLAY: IPTRANSPRO: UDPDOMNAME:MGINFO: USE IPMGCID1: 1MGCID2: 0MGCID3: 0MGCID4: 0SELFEXCHANGE: disablePROTECTCALL: disableDISASTERPROT: disable---------------------------------------1 rows are effected
2. Configure MGC.
Execute the mod-mgc command to configure MGC.9806(ag)# mod-mgc mgcid 1 mgctype 1 mgcip 202.109.211.242mgcport 2944
Table 14 describes MGC parameters.
TABLE 14 MGC PARAMETERS
Parameter Description
mgcid MGC ID number
mgctype MGC type, including:
1-ZTE
2-HW
3-CISCO
4-ALCATEL
5-NORTEL-MGCP
6-NORTEL-H248
mgcip MGC IP
mgcport MGC port number. Generally,H.248 port is 2944.
domname MGC domain name (optional)
md5info MD5 encryption
mgcinfo MGC uses IP address or domainname
0-IP address
1-Domain name
3. Check VoIP route.
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Execute the get-voip-config command to check VoIP route.9806(ag)# get-voip-config
mgid: 1type: mediaipaddr: 202.109.228.2submask: 255.255.255.0nexthop: 202.109.228.1port: 10000----------------------------------------------mgid: 1type: controlipaddr: 202.109.228.2submask: 255.255.255.0nexthop: 202.109.228.1port: 2944----------------------------------------------2 rows are effected
Execute the mod-voip-route command to modify MG route.9806(ag)# mod-voip-route mgid 1 type 1 nexthop 10.63.198.19806(ag)# get-voip-config
mgid: 1type: mediaipaddr: 10.63.198.250submask: 255.255.255.0nexthop: 10.63.198.1port: 10000-------------------------------------------------mgid: 1type: controlipaddr: 10.63.198.250submask: 255.255.255.0nexthop: 10.63.198.1port: 2944-------------------------------------------------2 rows are effected
Table 15 describes MG route parameters.
TABLE 15 MG ROUTE PARAMETERS
Parameter Description
mgid MG ID number
type Route type, 1-Media route
nexthop Next hop IP address
nexthopmac Next hop MAC address
arptime ARP learning time
4. Configure port fax mode.
By default, the port fax mode is T.30. In this instance, thefax mode is T.30. Therefore, it is unnecessary to configure faxmode.
Execute the get-slcattrib command to check port fax mode.9806(ag)# get-slcattrib slot 3
slot 3
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circuit: 1dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------circuit: 2dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------circuit: 3dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------circuit: 4dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------circuit: 5dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------circuit: 6dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0
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pcmtopkt: 0--------------------------------------------circuit: 7dftevent: HANG OFFfaxmode: T.30usermode: H248qovsid: 0currsrv: IDLEcidtype: FSKimtype: NORMALuserclass: NORMALecenable: defaultpkttopcm: 0pcmtopkt: 0--------------------------------------------
Execute themod-slcattrib command to modify port fax mode.The fax mode of all ports of slot 3 is modified to be T.38.9806(ag)# mod-slcattrib slot 3 faxmode 1
Table 16 describes port fax mode parameters.
TABLE 16 PORT FAX PARAMETERS
Parameter Description
slot Slot number
faxmode Fax mode, including:
0 - T.30
1 - T.38
2 - RTP
3 - FAST MODEM
4 - FAST FAX
5 - Low speed Modem
6 - IP Modem
13 - V34
circuitb Begin circuit number
circuite End circuit number
5. Check VoIP resource Termination ID.
Note:
For ZXDSL 9806H, the default VoIP resource Termination ID isRTP000RTP127. Do not configure VoIP resource unless Ter-mination ID is modified.
Execute the get-ipstermid command to view VoIP resourceTermination ID. In this instance, the VoIP resource TerminationID on SS is RTP000RTP127, which is the default TerminationID. Therefore, it is not necessary to modify the Termination ID.9806(ag)#get-ipstermid
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circuit: 0termid: RTP000mgid: 1----------------------------------------------------circuit: 1termid: RTP001mgid: 1----------------------------------------------------
circuit: 2termid: RTP002mgid: 1-----------------------------------------------------circuit: 3termid: RTP003mgid: 1----------------------------------------------------circuit: 4termid: RTP004mgid: 1----------------------------------------------------circuit: 5termid: RTP005mgid: 1----------------------------------------------------circuit: 6termid: RTP006mgid: 1----------------------------------------------------circuit: 7termid: RTP007mgid: 1----------------------------------------------------circuit: 8termid: RTP008mgid: 1----------------------------------------------------circuit: 9termid: RTP009mgid: 1----------------------------------------------------circuit: 10termid: RTP010mgid: 1
If the VoIP resource Termination ID is not consistent with thaton SS, delete it. Execute the following commands to add ISPuser resource to be RTP0000-RTP0127.9806(ag)# del-ipstermid9806(ag)# add-ipstermid tmidfix RTP type 3 digitlen 4 mgid 1
Table 17 describes VoIP resource Termination ID parameters.
TABLE 17 VOIP RESOURCE TERMINATION ID PARAMETERS
Parameter Description
tmidfix IPS VoIP resource TerminationID prefix
type Termination ID type
1: RTP00200100000-USER00200100127
2: RTP0-RTP127
3: RTP000-RTP127
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Parameter Description
digitlen Ending number digit length
begno Begin number
mgid MG ID
Note:
i. SCCB card has a built-in VoIP sub-card, which supports128port VoIP resource.
ii. It is not necessary to set the number when IPS resource isadded. By default, the IPS resource is 128.
iii. TID cannot exceed 64 bytes. Generally, one system onlyuses one Termination ID type.
If type 1 is selected, the Termination ID format isRTP00200100000-RTP00200100127. In which, 002 isunit number, 001 is sunit number and 00000-00127is circuit number.
If type 2 is selected, the Termination ID format isRTP0RTP127.
If type 3 is selected, the Termination ID format isRTP000RTP127.
6. Configure MPRB RTP fax mode.
By default, the MPRB RTP fax mode is T.30. In this instance,the fax mode is T.30. Therefore, it is unnecessary to configurefax mode.
Execute the get-rtppar command to check MPRB RTP faxmode.9806(ag)# get-rtppar parid 1
parid: 1vadvalue: 0g723rate: 1dcfilter: 0silencetopcm: 0pcmlaw: 0g711redundancy: 0pkttopcm: 0pcmtopkt: 0faxmode: T30 transparentmodemmode: 3ecmenable: 1faxpage: 2t30message: 5speedlimit: 6tcfprocedure: 0ecenable: 1ectaillen: 7ectxf: 0nlpaggress: 0fsklevel: 182mindelay: 10maxdelay: 80nomdelay: 40dtmfcidelec: 142
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-------------------------------------------------------1 rows are effected
Execute the mod-rtppar command to modify port fax mode.The fax mode is modified to be T.38.9806(ag)# mod-rtppar parid 1 faxmode 1
Table 18 describes port fax mode parameters.
TABLE 18 MPRB RTP FAX PARAMETERS
Parameter Description
parid RTP parameter templatenumber. 1 corresponds toMPRB.
faxmode Fax mode, including:
0 - fax robust
1 - T.38 fax mode
2 - T.30 transparent
11 - SS control fax
Note:
The fax mode is consistent with that configured in port man-agement.
7. Check H.248 status.
Execute the h248state command to check H.248 status.9806(ag)# h248stateH248-SS link status(H248Trkplink) : OK. MGCid is 1.
If the system shows OK, it indicates that data is correctly con-figured and narrowband service is normal.
8. Save configurations.
Execute the save command to save configurations.9806# save
End of Steps
Result IP fax service is configured and is working normally.
Configuring Self-exchangeShort Description Perform this procedure to configure self-exchange.
Prerequisites VoIP service is configured.
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Context To configure self-exchange, perform the following steps:
Steps 1. Execute the mod-slcphonenum slot slot [beginindex beginindex] num num phonenum phonenum command to addself-exchange number.
2. Execute the add-digitmap mgid mgid servicetype servicetype das das dgtname dgtname dgtmap dgtmap command toadd self-exchange number map.
3. Execute themod-mgbaseattr mgid mgid selfexchange selfexchange protectcall protectcall command to enable self-ex-change function.
END OF STEPS
Example Self-exchange function parameters are as follows:
Slot number: 3
Self-exchange number: 5675100 2675148
Digit map: 567xxxx
Enable self-exchange and call protection.9806(ag)# mod-slcphonenum slot 3 num 48 phonenum 56751009806(ag)# add-digitmap mgid 1 servicetype 1 das 1 dgtname SELFEXCHANGEdgtmap 567xxxx9806(ag)# mod-mgbaseattr mgid 1 selfexchange 1 protectcall 1
Table 19 describes self-exchange parameters.
TABLE 19 SELF-EXCHANGE PARAMETERS
Parameter Description
slot Slot number
num User number
phonenum Begin phone number
beginindex Begin circuit number
mgid MG ID
servicetype Service type, including:
0 - H.248 1 - SelfChange 2 - SIP 3 - Urgency Map
das Digit analysis sub-serial number
dgtname Digit analysis sub-name
dgtmap Digit map
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Parameter Description
selfexchange Enable self-exchange or not
0 - Disable 1 - Enable
protectcall Enable call protection or not
0 - Disable 1 - Enable
Postrequisite Table 20 describes self-exchange related operations.
TABLE 20 SELF-EXCHANGE RELATED OPERATIONS
Operation Command
Delete self-exchange digit map. del-digitmap das das
View self-exchange configuration. get-mgbaseattr [mgid mgid]
Narrowband ManagementConfigurationThis topic includes the following:
Modifying Ringing Profile
Configuring Call Limit
Modifying Ringing Profile
Short Description Perform this procedure to modify ringing profile.
Prerequisites VoIP service is available.
Context To modify ring profile, perform the following steps:
Steps 1. Execute the mod-ringprofile ringprofile ringprofile id idtime time on1 on1 off1 off1 on2 on2 off2 off2 on3 on3 off3off3 on4 on4 off4 off4 on5 on5 off5 off5 command to modifyringing profile.
2. Execute the mod-ring mgid mgid ringprofile ringprofilecommand to bind ringing profile.
3. Execute the get-ringprofile ringprofile ringprofile to viewmodified ringing profile.
END OF STEPS
Result Ringing profile parameters are modified successfully.
Example Consider the following parameters to modify MG ringing profile.
Total Ringon Time: 12000 ms
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First Ringon Time: 150 ms
First Ringoff Time: 50 ms
Second Ringon Time: 150 ms
Second Ringoff Time: 50 ms
Third Ringon Time: 150 ms
Third Ringoff Time: 150 ms
Fourth Ringon Time: 100 ms
Fourth Ringoff Time: 50 ms
Fifth Ringon Time: 100 ms
Fifth Ringoff Time: 50 ms9806(ag)# mod-ringprofile ringprofile 1 id 0 time 1200 on1 15 off1 5on2 15 off2 5 on3 15 off3 15 on4 10 off4 5 on5 10 off5 59806(ag)# mod-ring mgid 1 ringprofile 19806(ag)# get-ringprofile ringprofile 1
RINGPROFILE MAINLAND
ID: 0TIME: 1200ON1: 15OFF1: 5ON2: 15OFF2: 5ON3: 15OFF3: 15ON4: 10OFF4: 5ON5: 10OFF5: 5-----------------------
Table 21 describes ringing parameters.
TABLE 21 RINGING PARAMETERS
Parameter Description Value
time Total Ringon Time Range: 0 65535
Unit: 10 ms
on1 First Ringon Time Range: 0 65535
Unit: 10 ms
off1 First Ringoff Time Range: 0 65535
Unit: 10 ms
on2 Second Ringon Time Range: 0 65535
Unit: 10 ms
off2 Second Ringoff Time Range: 0 65535
Unit: 10 ms
on3 Third Ringon Time Range: 0 65535
Unit: 10 ms
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Parameter Description Value
off3 Third Ringoff Time Range: 0 65535
Unit: 10 ms
on4 Forth Ringon Time Range: 0 65535
Unit: 10 ms
off4 Forth Ringoff Time Range: 0 65535
Unit: 10 ms
on5 Fifth Ringon Time Range: 0 65535
Unit: 10 ms
off5 Fifth Ringoff Time Range: 0 65535
Unit: 10 ms
Postrequisite Table 22 describes the operation related to ringing profile aftermodification.
TABLE 22 OPERATION RELATED TO RINGING PROFILE
Operation Command
Display ringing information. get-ring [mgid mgid]
Configuring Call Limit
Short Description Perform this procedure to configure call limit.
Prerequisites VoIP service is available.
Context To configure call limit, perform the following steps:
Steps 1. Execute the mod-calllimitpara [calllimit calllimit] [cpubslimit cpubslimit] [uportlimit uportlimit] [ipslimit ipslimit] [niclimit niclimit] command to configure call limit parameters.
2. Execute the get-calllimitpara command to show call limit in-formation.
END OF STEPS
Result Call limit parameters are configured successfully.
Example Configure the following call limit parameters:
Call limit: Call limit is implemented at MG (AG) side.
CPU limit: Enable
Uplink port limit: Enable
IPS limit: Enable
Busy time limit: Enable9806(ag)# mod-calllimitpara calllimit 1 cpubslimit 1 uportlimit 1ipslimit 1 niclimit 19806(ag)# get-calllimitpara
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calllimit cpubslimit uportlimit ipslimit niclimitlimit by mg Allways limit Allways limit Allways limit Allways limit
1 rows are effected
Table 23 describes call limit parameters.
TABLE 23 CALL LIMIT PARAMETERS
Parameter Description
calllimit Select on which side call limit isimplemented.
cpubslimit Enable CPU limit or not.
cpubslimit Enable uplink port limit or not.
ipslimit Enable IPS limit or not.
niclimit Enable busy time limit or not.
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C h a p t e r 3
Broadband ServiceConfiguraton
Table of ContentsVLAN Configuration............................................................51ADSL/ADSL2+ Service Access Configuration..........................64VDSL2+ Service Access Configuration ..................................93SHDSL Service Access Configuration .................................. 129Multicast Service Configuration.......................................... 144QoS Configuration ........................................................... 162Configuring Static Route................................................... 171Configuring Link Aggregation ............................................ 172Configuring RMON ........................................................... 172Spanning Tree Configuration ............................................. 173Configuring SNTP ............................................................ 190
VLAN ConfigurationThis topic includes the following:
Overview
Basic VLAN Configuration
VLAN Stacking Configuration
Overview
ServiceDescription
VLAN is a technology to achieve virtual work group by dividingthe network into individual segments logically instead of physi-cally through local network device. The IEEE published the IEEE802.1q protocol standard draft to standardize VLAN implementa-tion in 1999.
ServiceSpecification
9806H supports maximum 4094 VLANs.
VLAN usage is listed in Table 24.
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TABLE 24 VLAN USAGE
VLAN Usage Remarks
Basic VLAN Used to separate ports For Ethernet port and PON
port, it is used in NMS andcascade.
For xDSL access service, thereare two applications: PVLAN mode (default):
One VLAN can containmultiple xDSL serviceports and the serviceflows among the xDSLservice ports are sepa-rated. The service flowsbetween these serviceports and NMS ports areinter-connective. Theservice flows betweeneach VLAN is separa-ted too. One VLAN canbe connected with mul-tiple users, which re-duces the occupancy ofVLAN numbers.
Non-PVLAN mode: OneVLAN contains only onexDSL service port. Theservice flows betweenVLANs are separated. Asthere is a one-to-onemapping relation betweenVLAN and access user, ac-cess user can be differen-tiated according to VLAN.
VLAN Stacking Used to expand VLAN
VLAN packets with stackingproperty contain inner-layer/outerlayer VLAN labelsallocated by 9806H. Theupper-layer BAS device canauthenticate dual-VLAN accordingto the two layers of labels andincrease user numbers. In theupper-layer network of Layer-2working mode, the device canforward packets directly throughouter-layer VLAN+MAC to provideISP with all the service functions.
Basic VLAN Configuration
Basic VLAN configuration includes the following:
Configuring VLAN Instance
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Adding VLAN
Configuring VLAN Uplink Port
Adding a Single Service Port
Adding Service Ports In Batch
Configuring VLAN Instance
Short Description Perform this procedure to access ADSL2+ service through VLAN.
Prerequisites Network devices work normally and cables are connected.
All ZXDSL 9806H cards work normally.
VPI/VCI is 8/81.
NetworkingDiagram
Figure 21 shows VLAN application networking diagram.
FIGURE 21 VLAN APPLICATION NETWORKING DIAGRAM
Connect computers to ZXDSL 9806H through MODEM. PC1 andPC2 are in different VLANs. Divide VLAN in ZXDSL 9806H to dif-ferentiate packets from PC1 and PC2. Then, transmit packets toupper network.
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Data Configura-tion
Table 25 describes VLAN data configuration:
TABLE 25 VLAN DATA CONFIGURATION
Item Data
ADSL2+ port corresponding toPC1
Port Number: 4/1
VPI/PCI: 8/81
VLAN ID: 20
ADSL2+ port corresponding toPC2
Port Number: 4/2
VPI/VCI: 8/81
VLAN ID: 21
Uplink port 5/1, 5/2
ConfigurationFlow
Figure 22 shows VLAN application configuration flow.
FIGURE 22 VLAN APPLICATION CONFIGURATION FLOW
Steps To configure VLAN, perform the following steps:
1. Create VLAN.9806(config)# add-vlan 209806(config)# add-vlan 21
Or, create VLANs in batch.9806(config)# add-vlan 20-21
2. Add uplink port.9806(config)# vlan 20 5/1-2 tag9806(config)# vlan 21 5/1-2 tag
Or, add uplink ports in batch.9806(config)# vlan 20-21 5/1-2 tag
3. Add service ports.9806(config)# vlan 20 4/1 untag9806(config)# vlan 21 4/2 untag9806(config)# interface adsl 4/19806(cfg-if-adsl-4/1)# pvid 20 pvc 1
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9806(cfg-if-adsl-4/1)# atm pvc 1 vpi 8 vci 819806(cfg-if-adsl-4/1)# exit9806(config)# interface adsl 4/29806(cfg-if-adsl-4/2)# pvid 21 pvc 19806(cfg-if-adsl-4/2)# atm pvc 1 vpi 8 vci 81
Or, add service ports in batch.9806(config)# vlan 20-21 4/1-2 untag one-to-one9806(config)# interface range adsl 4/1-29806(cfg-if-range-adsl)# pvid 20-21 one-to-one pvc 19806(cfg-if-range-adsl)# atm pvc 1 vpi 8 vci 81
4. Save configurations.9806# copy running-config startup-config
End of Steps
Result VLAN configuration is complete and PC1 and PC2 can access In-ternet. However, they cannot access each other.
Adding VLAN
Short Description Perform this procedure to add one or multiple VLANs. VLAN is usedto logically divide ports into different network segments. In thisway, communications between ports is under control.
Prerequisites The VLAN to be added does not exist.
Context ZXDSL 9806H supports VLANs: 2 4049.
ZXDSL 9806H supports three VLAN encapsulation types: pp-poe, ipoe and all. The default encapsulation type is all.
pppoe: VLAN is only assigned to PPPoE access service.
ipoe: VLAN is only assigned to IPoE access service.
all: VLAN is assigned to all access services.
To add VLAN, perform the following steps:
Steps 1. Execute the add-vlan command to add a VLAN.
2. (Optional) Execute the vlan vlanid name name command toconfigure VLAN name.
3. (Optional) Execute the vlan vlanid encapsulation type com-mand to configure VLAN encapsulation type.
4. Execute the show vlan command to show VLAN information.
END OF STEPS
Result VLAN is added successfully.
Example Add a VLAN. VLAN ID is 2. VLAN name is VLAN2 (default). VLANencapsulation is pppoe.9806(config)# add-vlan 29806(config)# vlan 2 encapsulation pppoe9806(config)# show vlan 2VLANID : 2VLANName : VLAN2EncapType : PPPOE
SLOT PVC Egress/UnTag PORTLIST
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------------------------------------------------------------
Add VLANs in batch. VLAN IDs are from 1010 to 1019. Use defaultvalues for VLAN name and encapsulation type.9806(config)# add-vlan 1010-1019100%9806(config)# show vlantotal number : 26-----------------------------------
1-2,20-21,50,100-103,301,326,333,500-501,801,1000,1010-1019
Postrequisite Table 26 describes the operation related to VLAN.
TABLE 26 OPERATION RELATED TO VLAN
Operation Command
Delete a VLAN. no add-vlan vlanid
Adding VLAN Uplink Port
Short Description Perform this procedure to add the uplink port to a VLAN.
Prerequisites VLAN is available.
Context VLAN uplink port is Ethernet port or PON ONT port.
The binding type of the uplink port needs to be consistent withthat of the opposite end device.
To adding the uplink port to a VLAN, perform the following steps:
Steps 1. Execute the vlan vlanid SLOTLIST/PORTLIST [tag | untag][pvc pvcid] command to add the uplink port to a VLAN.
2. Execute the show vlan vlanid command to show VLAN infor-mation.
END OF STEPS
Result Uplink port is added to a VLAN successfully.
Example Add uplink port 5/1 to VLAN2 in tagged mode.9806(config)# vlan 2 5/1 tag9806(config)# show vlan 2VLANID : 2VLANName : VLAN2EncapType : all
SLOT PVC Egress/UnTag PORTLIST------------------------------------------------------------5 Egress 1
UnTag------------------------------------------------------------
Postrequisite Table 27 describes the operation related to VLAN uplink port.
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TABLE 27 OPERATION RELATED TO VLAN UPLINK PORT
Operation Command
Delete the uplink port from aVLAN.
no vlan vlanid SLOTLIST/PORTLIST [pvc pvcid]
Adding Single Service Port
Short Description Perform this procedure to add a single service port to a VLAN.
Prerequisites VLAN is available.
Context Select the binding type of the service port according to the realsituation at user end.
Untag: For a single computer
Tag: For multiple computers in a LAN
The PVC of the service port needs to be consistent with MODEMPVC. For ZTE device, the PVC is 8/81.
To add a single service port to a VLAN, perform the following steps:
Steps 1. Execute the vlan vlanid SLOTLIST/PORTLIST [tag | untag][pvc pvcid] command to add a single service port.
2. Execute the show vlan vlanid command to show VLAN infor-mation.
END OF STEPS
Result A single service port is added to a VLAN successfully.
Example Add the service port 4/1 to VLAN2 in untagged mode. The PVC is1 and default VPI/VCI is 8/81.9806(config)# vlan 2 4/1 untag pvc 19806(config)# show vlan 2VLANID : 2VLANName : VLAN2EncapType : all
SLOT PVC Egress/UnTag PORTLIST------------------------------------------------------------4 1 Egress 1
UnTag 1------------------------------------------------------------
Postrequisite Table 28 describes the operation related to single service port.
TABLE 28 OPERATION RELATED TO SINGLE SERVICE PORT
Operation Command
Delete a single service port froma VLAN.
no vlan vlanid SLOTLIST/PORTLIST [pvc pvcid]
Adding Service Ports In Batch
Short Description Perform this procedure to add service ports to a VLAN in batch.
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Prerequisites VLAN is available.
Context Select the binding type of the service port according to the realsituation at user end.
Untag: For a single computer
Tag: For multiple computers in a LAN
The PVC of the service port needs to be consistent with MODEMPVC. For ZTE device, the PVC is 8/81.
To add service ports to a VLAN in batch, perform the followingsteps:
Steps 1. Execute the vlan vlanid SLOTLIST/PORTLIST [tag | untag][one-to-one] [pvc pvcid] command to add service ports inbatch.
2. Execute the show vlan vlanid command to show VLAN infor-mation.
END OF STEPS
Result Service ports are added to a VLAN in batch successfully.
Example Add service ports 4/1 24 to VLAN2 in untagged mode. The PVCis 1 and default VPI/VCI is 8/81.9806(config)# vlan 2 4/1-24 untag pvc 19806(config)# show vlan 2VLANID : 2V