cabletran2000 web nms user manual
TRANSCRIPT
Luster Teraband Photonics Co., Ltd
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Thanks
Thank you for choosing CableTRAN NMI2000 Series MoCA Access 1.1+ NC product of
Luster Teraband Photonics Co., Ltd, Subsidiary Corporation of Luster LightTech Group.
Symbols appear in this manual is shown as below:
Notice: It means the following provision is important information of equipment or its
using aspect.
Warning: Potential danger. The following provision must be paid more attention.
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Revised Content Version Revision History
Version Revised Content Revision personnel Date
V1.0 First Compilation Wanxiang Feng 2015-11-30
V1.1 Content Revision Lei Song 2016-03-25
V1.2 Content Revision Jianan Yang 2016-4-10
V1.3 Content Revision Wanxiang Feng 2016-6-16
V1.4 Content Revision: Uniformly modify name
from c.Link to MoCA Access; Add PUPSPV
function, equipment statistics switch, CPE
online process setup and etc.
Leilei Song 2016-5-10
V1.5 Picture Update Senlin Ding 2016-5-22
Content revision includes first compilation, addition (+ adding illustration), modification (+
modification illustration), deletion (+ deletion illustration).
Copyright Notice
Copyright ©2016, Luster Teraband Photonics Co., Ltd
All rights reserved.
No part of this article may be reproduced in any form by any electronic or mechanical means
(including photocopying, recording, or information storage and retrieval) without permission
in writing from Luster Teraband Co., Ltd.
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Introduction
Manual Illustration
This manual introduces the contents of WEB network management system of CableTRAN
NMI2000 series MoCA Access 1.1+ NC. The introduction of these operations is aimed to help
clients know well of management and maintenance of MoCA Access 1.1+ NC and CPE.
This WEB NMS is applicable for the following products:
1. Indoor NC product of Luster Teraband Photonics Co., Ltd: NMI2000
2. CPE product of Luster Teraband Photonics Co., Ltd: CME1000 and CME2000
3. Other CPE product adoptingMoCA Access 1.1 or MoCA Access 1.1+ access network
standard.
Suitable Reader
This manual is suitable for the following staffs:
Engineering Technical Personal
Engineering Open Personal
Equipment Maintenance Personal
Network Management Personal
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Content Introduction
It describes main content of this manual and key point of each chapter, aiming to guide
users to use this manual targeted.
Chapter Outline Ch.1 Product Introduction Features of NC and tech standard Ch.2 WEB NMS Login How to login to the WEB NMS interface Ch.3 WEB NMS Fast Setting How to fast set WEB NMS and start profile Ch.4 Detail Setting of WEB Network Management
How to set WEB NMS detailed and customize profile
Disclaimer
Content of this manual is compiled based on current information. It is subject to change
without notice.
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Content
Chapter 1 Product Introduction .......................... 7
1.1 Product Summary ......................................... 7
1.2 Main Features ............................................... 7
1.3 Specification Parameter ................................ 8
2.1 Default Factory Configuration of NC ............ 11
2.2 NC WEB Login ............................................. 11
Chapter 3 Fast Setting of WEB Network Management .................................................... 13
3.1 NC Network Management Setting ............... 13
3.2 Trap Setup .................................................. 14
3.3 Profile Setup ............................................... 14
Chapter 4 Detail Setting of WEB Network Management .................................................... 17
4.1 Main Interface ............................................ 17
4.2 System Run Status ...................................... 18
4.3 NC Network ................................................ 19
4.3.1 Network Setup ................................................................................................................ 19
4.3.2 SNMP Setup .................................................................................................................... 20
4.3.3 NTP Setup ........................................................................................................................ 20
4.3.4 Other Setup ..................................................................................................................... 21
4.4 NC MoCA .................................................... 22
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4.4.1 RF Setup .......................................................................................................................... 23
4.4.2 IGMP Snooping Setup ..................................................................................................... 24
4.4.3 Broadband Ratio Setup .................................................................................................. 25
4.4.4 Storm Filter Setup ........................................................................................................... 25
4.5 CPE Profiles ................................................ 25
4.5.1 Profiles List ...................................................................................................................... 26
4.5.2 Profile Template Modification ....................................................................................... 27
4.6 MoCA CPE ................................................... 28
4.6.1 Online CPE List ................................................................................................................. 28
4.6.2 Whitelist .......................................................................................................................... 30
4.6.3 Blacklist ............................................................................................................................ 31
4.6.4 CPE Configuration ............................................................................................................ 32
4.6.5 CPE Update ...................................................................................................................... 34
4.7 System Setup .............................................. 36
4.7.1 System Restart ................................................................................................................. 36
4.7.2 Security Setup .................................................................................................................. 36
4.7.3 Backup Restore ................................................................................................................ 37
4.7.4 Restore Factory Setup ..................................................................................................... 38
4.7.5 System Upgrade............................................................................................................... 38
4.7.6 System Log ....................................................................................................................... 39
4.7.7 Page Setup ....................................................................................................................... 40
Appendix: Introduction of Frequently-used Commend Line ................................................... 41
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Chapter 1 Product Introduction
1.1 Product Summary
Luster Teraband CableTRAN MoCA Access 1.1+ Series products provide high-quality two-way
network reform solution, aiming at solving the problem of last one mile in CATV access
network, providing high-quality support for triple broadcasting profile and unified network
management system for CATV operators.
CableTRAN MoCA Access 1.1+ Series products provide high-quality network with high
bandwidth and low time delay. It is mainly applied in the EPON+EOC network structure,
whose application situation is one optical node covering 50 clients. It supports the profile
launch of video, data and voice, especially VOD, HD VOD, VoIP, video call, OTT, games, etc.
1.2 Main Features
High bandwidth
Adopting frequency division multiplexing technology, throughout rate of central office
unit can be up to 800Mbps.
Flexible frequency selection
It works at high frequency range. Selectable frequency range is 975~1275 MHZ. Channel
can be flexibly selected based on network condition.
Strong interference-proof capability
AdoptingOrthogonal Frequency Division Multiple Address (OFDMA) modulation
technique makes it have strong interference-proof capability by avoiding strong noise of
low frequency range.
• Advanced data link layer agreement
Link layer adopting Time Division Multiple Address (TDMA) protocol, downstream
broadcasting and upstream P2P
All terminals adopting same carrier for transmitting & receiving (TDD)
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• Advanced data link layer scheduling mechanism
Accessing controlled by master, no competition & conflict
Transmission time gap using Request-Grant mechanism
• High quality profile with QoS guarantee
Parametric QoS: Reserving bandwidth for each flow, support customized priority
Priority QoS: Different priority for profile, support priority/business
• Intelligence bandwidth management
Fixed bandwidth: support terminal/port speed limit
1.3 Specification Parameter
Name Remark
Basic Info
Module NMI2000-E2-R1-P12C-I1-0C4
Technical Standard Clink1.1+ Access Network
Chipset
Module&Manufacturer
Central Office Unit:EN3681
Chipset Manufacturer: Maxlinear
Numbers of Terminal
Supported by Master 128
Communication
Mode
Modulation OFDMA
Sub-carrier Number 256
Sub-carrier Bandwidth 195.3125KHz
Sub-carrier Modulation BPSK, QPSK, 8QAM, 16QAM, 32QAM,
64QAM, 128QAM, 256QAM
MAC Layer Protocol TDMA/TDD
RF Parameter
Operating RF Band 975~1275MHz
Channel RF Bandwidth 50MHz
Upstream and
Downstream RF Band Bundled, sharing 50MHZ bandwidth
Available Channels 13
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Name Remark
Common Channel 975 ~ 1175MHz
Max Transmitting Power +8.5dBm
Typical Transmitting
Power +5.5dBm
Power Transmitting
Mode Adaptive/Manual
Receiving Sensitivity -75dBm
Insert Loss < 2dB
Transmitting Distance 600m
RF OUT1Port Frequency 5 ~ 1500MHz
TV IN1Port Frequency 5 ~ 862MHz
Delay
Typical 5ms
Maximum 7ms
Delay Jitter 1ms
Multicasting
Max IP Multicasting No. 127
IGMP Snooping Support
IGMP Version Support IGMPV1, IGMPV2, IGMPV3
QoS
QoS Type Supporting 802.1P
Priority QoS Support 8 Priority Queues
Parametric QoS Support
Bandwidth
Management
Fixed Bandwidth Limit Support Terminal/Port Speed Limit
Dynamic Bandwidth
Allocation(DBA)
12 Types of DBA for Voice/Video/Date
Profile
Network
Management
Quick Configuration Support WEB NM
MIB Support SNMP/NMS NM
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Name Remark
Unified NM Support EPON+EOC+HFC Unified NM
Port
Hi/Lo Pass Filter Access
Mode Built In
RF Port Type of NC Connector: F type, Female, Metric;
Impedance:75 Ohm
RF Port of NC
Support 1 Input + 1 Output:
1 Input(CATV)
1 Combined Output of MoCA Access 1.1+
and CATV signal
Network Port of NC
Two RJ45, 1000BASE-T network
port,usedfor upstream and local
maintenance
Console Port Support Serial Port
Power Supply of NC DC12V
Power Power Supply of NC DC 12V/3A External Power Adapter
Power Consumption <24W
Electrical safety
Grounding Requirement Grounding Resistance <5Ω
Anti-Static F-Head / Shell Contact-Discharge 4KV,
Air-Discharge 8KV
Lighting Protection F-Head 4KV
Power Source Protection Support Surge-Resisting/Under-Voltage
Protection
Dimension Dimension 256*180*37.5mm(L×W×H)
Weight Net Weight <1.2kg
Operating
Environment
Operating Temperature -20~55℃
Operating Humidity 5%~90%, No Condensation
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Name Remark
Store Temperature -30~70℃
Chapter 2 WEB Network Management Login Login WEB network management of NC via browser and manage setup and profile of NC via
WEB page.
2.1 Default Factory Configuration of NC
NC has two IP address. Default IP of Debug port is 192.168.144.20, immutable, used for local
management. Default IP of ETH port is 192.168.1.10, variable, used for remote management.
Below are the examples of visit via Debug port.
1. Default access IP of NC is: 192.168.144.20.
2. At the time of WEB network management of NC login, default user name is: admin,
password is: admin.
2.2 NC WEB Login
PC network port is connected with Debug port of NC. When Debug indicator light is on, it
means network port is successfully auto-negotiation connected. In order to communicate
with NC, network card of PC needs toset or add an IP address in the segment of
192.168.144.xx.
Below is an example of Windows XP operating system. Open PC network connection, Local
Connection Internet Protocol (TCP/IP) Senior. Click the adding button below “IP
address”. Then, type in the IP address in the segment of 192.168.144.xx except
192.168.144.20, such as 192.168.144.100 (192.168.144.20 is the default IP address of MoCA
NC equipment management network port). cmd.exe, built-in PC, can be used to do ping test
to check whether it is successfully connected.
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Visit WEB management interface by Internet browser.
1. Open a page in the browser, type in the IP address in the address bar: 192.168.144.20.
Then, it goes to login page.
2. Type in User Name (default: admin) and Password (default: 12345), and then it goes
to the system.
3. WEB network management supports almost all the browsers on the market. In order
to get better effect, IE8 and version above or Firefox is recommended.
P1-1 WEB Network Management Login Interface
Default User Name: admin
Default Password: 12345
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Chapter 3 Fast Setting of WEB Network Management
When technician sets NC by WEB network management, at least three modules are required
to guarantee normal working of equipment. Detail process is shown as below.
3.1 NC Network Management Setting
VLAN and IP of NC management are based on network plan of customer. NC can be remotely
managed via ETH profile port by settingNC network management.
Essential operation:
1. SetNC network in “NC Network Network Settings”, and then choose network
connecting mode.
When it is dynamic IP, it should be guaranteed to have DHCP server in the network.
When it is static IP, IP address, subnet mask and default gateway should be manually
set.
Notice: NC network address must be modified to avoid repeated IP.
2. When management VLAN exists in the network, enable management VLAN switch
and set the right value of management VLAN.
P2-1 NC Network Setup
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3.2 Trap Setup
Necessity: If SNMP network management is used, it must be set to guarantee that trap
massage can be fed back to the network management server. Or, this step is optional. It is
suggested to set to avoid influencing the enabling of SNMP network management.
In the NC Network SNMP Setup (P2-2), enable SNMP EnableSwitch. Set at least one Trap
Address and enable the corresponding TrapEnable Switch.
P2-2 Trap Setup
3.3 ProfileSetup
Based on users’ network plan, mainly set VLAN, 802.1P priority, speed limitation, and etc. of
CPE port.
Necessity: If CPE has the requirement of VLAN and speed limitation, it is necessary to set; or,
this step is optional. It is suggested to set to have better running effect of open profile.
When setting CPE profile, enableOnline Auto SetupSwitch first. Then enableAuto
SetupSwitch in NCNetwork Other Settings. (P2-3)
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P2-3 Enable Online Auto Setup Switch
Clickhttp://192.168.144.20/defaultConfig.html, and enter modification profile page (P2-4). In
the setting of network port, set VLAN ID, 802.1P priority and etc. of the four network ports.
Note: This page is the default setting template of NC, only the setting template in this page
can auto issue when CPE is online. So, in order to realize the auto setup, modify this page
based on the requirement.
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Chapter 4 Detail Setting of WEB Network Management
If detail setting of NC is required, please read the document below.
WEB network management of NC contains the following:
Run Status: Run status of NC network, NC MoCA and CPE MoCA;
NC Network: Setup of network, SNMP, NTP and others;
NC MoCA: RF setup, multicast setup and storm suppression;
CPE Profile: Profile management list, profile modification;
CPE MoCA: Online CPE list, registeredWhitelist, registeredBlacklist, CPE setup and
upgrade;
System Setup: System restart, security setup, backup and restore, restore factory
settings, system upgrade, system log and page setup;
4.1 Main Interface
P3-1 Main Interface of Network Management
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Below needs to be noticed:
Users can log out by clicking the log out button at top right corner.
After login, network management will automatically log out if there’s no operation for
5 minutes.
4.2 System Run Status
It can be refreshed manually or automatically.
1. NCNetwork Status:
MAC Address: NC MAC address;
Link Mode: Link mode of two NC networks -- dynamic and statics;
IP Address: IP address of NC network;
Mask: Subnet mask of NC network;
Gateway: Default gateway of NC network;
RunningTime: Running time since the start of NC system;
Device Model: NC model;
Software Version: Software version of NC;
2. NC MoCA Status:
Channel1: RF central frequency that NC MoCA runs on channel A;
Channel2: RF central frequency that NC MoCA runs on channel B;
Channel3: RF central frequency that NC MoCA runs on channel C;
Channel4: RF central frequency that NC MoCA runs on channel D;
MAC Address: MAC address of NC MoCA;
Software Version: Software version of NC MoCA.
3. CPE MoCA Status
Online CPE Number:CPE number that is online;
UnConfigured Number: Unconfigured CPE number that is online;
Whitelist Number: CPE number that has been configured in Whitelist, where
CPE may not be online;
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Blacklist Number: CPE number that has been configured in Blacklist.
Notice: Total quantity of configured and unconfigured CPE may not be equal to
online CPE quantity.
4.3 NC Network
NC network setup includes: network setup, SNMP setup, NTP setup and other setup.
4.3.1 Network Setup
Network setup (P3-2) is used to set the network management information of NC. It includes
Link Mode, IP Address, Mask, Gateway, Management VLAN Enable and Management VLAN.
The following should be noticed:
P3-2 NC Network Setup
1. Static/Dynamic. After setting dynamic link mode, system will distribute IP address,
mask, and gateway. It should be guaranteed to use DHCP server in the network. If it is
static link mode, parameters should be manually set. Immediately take effect after
setup. New IP address to remotely login WEB network management needs to be
adopted. Static IP is suggested to be adopted, because after NC IP is set, it will not be
easily adjusted.
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2. When Management VLAN Enable switch is selected enable and VLAN ID is set,
network with this VLAN ID should be adopted to visit WEB network management.
Take effect immediately after setup. Set according to actual VLAN plan of client.
4.3.2 SNMP Setup
SNMP Setup (P3-3) includes: SNMP Enable, Trap Address and Trap Enable.
P3-3 SNMP Setup
Note: Purpose of trap setup is to send trap information to the trap server. Only if
corresponding trapswitch of trap address #1, #2 and #3 is enabled, corresponding trap
address can be set. NC will send the trap information to each server which has enabledtrap
switch.
4.3.3 NTP Setup
NTP is to synchronize time of NC. NTP setup (P3-4)includes: NTP Enable, NTP Server IP
andSynchronous Interval.
When NTP Enable is selected Enable, NC can set time synchronization of NTP. In order to
guarantee security of NC to avoid network attack, NC can’t directly visit Internet but only
Intranet. So, when NTP is adopted, guarantee that there is NTP server in Intranet
Synchronous Interval: It is used to set NTP sending interval of synchronous message.
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P3-4 NTP Setup
4.3.4Other Setup
Other Setup (P3-5) includes: Loopback Setup, Performance Statistics Setup, DHCP Filter
Setup, User Device Filter Setup, Online AutoSetup, Cnu Online Process and Online CPE
Number Setup.
P3-5 Other Setup
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1. Loopback Setup: Loopback test will take effect when NC network and CPE both start
loopback test. Minimum interval time of loopback test is 10s. When loopback is
detected, there are two treatment modes: CPE offline and port shutdown.
2. Performance Statistics Setup: It is used to setup real-time statistics information of CPE
periodicupdate.
Online CPE mainly contains RF channel link quality, CPE PHY rate, port
quantity and attenuation;
Online CPE statistics data mainly contains total quantity of transmitting and
receiving bytes, discard quantity of receiving data package, quantity of
receiving CRC data package of all data streams.
CPE statistics data is only displayed in SNMP network management.
3. DHCP Filter Setup: It is used to setup illegal DHCP server on filter CPE side.
4. User Device Filter Setup: It is used to set enable or disable to count corresponding
table of MAC or IP of part of equipment on client side.
5. Online Auto Setup: It is used to set whether to deliver settings of CPE when CPE is
online.
6. Cnu Online Process: It is used to set authentication and configuration process when
CPE is online. There are two modes: General and DHCP authentication. DHCP mode
now used in some special application in Henan Province, China. Setting is taken from
TFTP server, analyzed, and pushed to CPE. General mode is used in other applications:
setting is configured manually or by NMS.
7. Online CPE Number Setup: It is used to set CPE number that is allowed to access the
NC. 0 means no limitation.
4.4 NC MoCA
NC MoCA setup (P3-6) includesRF Setup, IGMPSnooping Setup, Broadband Ratio Setup and
Storm FilterSetup.
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P3-6 NC MoCASetup
4.4.1 RF Setup
Detail parameters are shown as below:
1. Card Selection: Card #1 to #4 is corresponding to Channel A to D. This option is used
to display and set configuration of current channel. Channel A is data main channel.
No CPE could access the network if Channel A is closed.
2. RF Enable: It determines whether coaxial RF of current channel is started. If it is
closed, no CPE in this channel could access the network.
3. Channel Setup Mode: It has two modes: continuous setup mode and free setup
mode.
Continuous Setup: Four central frequencies are continuous. Client just needs to
set the central frequency of Channel A. Central frequencies of other channels
will be set automatically based on Channel A.
Free Setup: Central frequencies of four channels can be set manually.
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4. Channel: It is the central frequency of current channel. Accessing CPE should be
identical to this frequency. We suggest using default setup to get better running
performance. If adjustment is required, please guarantee four frequencies are in the
range of continuous 200MHz.
5. Max Transmit Power: Max value of transmit power automatically adjusted by NC.
6. Max PHY Rate: Keep trying different powers until maximum PHY rate is detected to
reach the setting value.
7. Noise Margin: Equipment dynamically detects each RF frequency channel to make
each node gets to the optimum rate. Equipment will compare detected SNR with the
SNR corresponding to the predicted velocity. In order to adapt the slight change
caused by measurement, temperature and channel condition, equipment can
automatically add margin to the detected SNR.
8. QAM: It is to set upper limit value of modulation density.
9. Auto Distance Mode: Coaxial distance between NC and CPE is difficult to determine.
NC can automatically detect the distance by enabling auto distance mode.
10. Transmission Distance: When auto distance mode is enabled, this value can set the
real distance between NC and CPE.
Warning: RF parameter has been adjusted as optimum. Unless necessary, please
don’t modify the above parameters. Your modification may block the network.
4.4.2 IGMP Snooping Setup
IGMP Snooping is used to maintain the corresponding table relationship of multicast address
and VLAN by monitoring the IGMP message communicated between user and equipment. It
maps the active members of the same multicast to the same VLAN. When receiving the
multicast package, it only forwards the package to the corresponding VLAN member
Enable: Enable IGMP Snooping profile.
Disable: Disable IGMP Snooping profile.
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Notice: After modifying the setup, it can only take effect after manual restart of
the system.
4.4.3 Broadband Ratio Setup
Downstream Ratio: Adjust the ratio of downstream bandwidth to total bandwidth.
Notice: After modifying the setup, it can only take effect after manual restart of
the system.
4.4.4 Storm Filter Setup
Too big quantity of broadcast and multicast package (because of been forwarded) in the
network will influence normal network communication. They will occupy much bandwidth
and cause network to be abnormal. Storm filter setup allows port to filter the package in the
network.
Storm filter can restrain broadcast package and multicast package separately. Currently,
storm filter of NC is to restrain upstream storm.
4.5 CPE Profiles
In order to manage CPE easily, NC adopts profile template mode. After building a profile
template, bind the profile template to the CPE, then finish the management and setupof the
CPE profile.
Profile Template: It containssetup of CPE RF parameter, bandwidth setup of voice,
video and data profiles (P3-7).
Notice: RF parameter has been adjusted as optimum. Unless necessary, please
don’t modify the above parameters. Your modification may block the network.
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P3-7 Profile Template Modification
Profiletemplate will set network port only after CPE setup and profile template binding. This
setup can realize each profile of each CPE and personalizedsetup of CPE. (See 3.6.4 CPE
Setup)
4.5.1 Profiles List
P3-8 Profiles List
Profiles List (P3-8) has listed all existing profile templates.
Number of CPE: Total quantity of CPEs that are adopting this profile;
Modify: Modify the setup of the profile;
Delete: If some CPE is using this profile, it is unable to delete. If the profile template
needs to be deleted, firstly delete the CPE using this profile in Whitelist and Blacklist.
This profile template can be deleted until quantity of CPE using this profile is 0
Reboot: Reboot all of the CPEs using this profile.
Add: Maximum 128 profile templates can be added.
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4.5.2 ProfileTemplate Modification
Profile template modification (P3-7) contains information below:
RF Setup:
Noise Margin: Equipment dynamically detects each RF frequency channel to make
each node gets to the optimum rate. Equipment will compare detected SNR with the
SNR corresponding to the predicted velocity. In order to adapt the slight change caused
by measurement, temperature and channel condition, equipment can automatically add
margin to the detected SNR.
QAM: It is to setup upper limit value of modulation density.
MaxPHY Rate: Equipment keeps trying different powers until maximum PHY rate is
detected to reach the setting value.
Min Link PHY Rate: CPE automatically detects minimum value of PHY rate. This value
is the threshold value of CPE offline.
Notice: RF parameter has been adjusted as optimum. Unless necessary, please
don’t modify the above parameters. Your modification may block the network.
Notice: Profile name could not conflict with existing profile name when adding
or modify profile template. Only setting information can be modified when modifying
profile management. Setup will take effect only after the CPE using this profile restarts.
Voice Profile (Video profile and Data profile):
Set maximum and minimum bandwidth of upstream and downstream of voice
profile (Video profile and data profile). Corresponding priority of voice profile is 6 ~ 7.
Corresponding priority of video profile is 4 ~ 5. Corresponding priority of data profile is 0
~ 3.
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4.5.2 Default Profile
Default Profile Modification
Detail parameters please refer to 4.5.2.
Ethernet CPE Setup
Detail parameters please refer to 4.6.4.
4.6 CPE MoCA
MoCA CPE setup contains: online CPE, Whitelist CPE and Blacklist CPE.
4.6.1 Online CPE
Online CPE (P3-9) lists all the online CPEs and their related information. In this page, it can
fresh manually or automatically. Detail information is shown as below:
Online CPE Number: Total number of online CPE.
Registered Number: Number of registered CPEs in the Whitelist and Blacklist.
Unregistered Number: Unregistered number of online CPE.
Cbatcard ID: ID of card. 1 ~ 4 are corresponding to RF channel A ~ D.
CPE ID: ID of online CPE.
MAC Address: MAC address of CPE. Click MAC address of CPE to check CPE Port info
(P3-10) and CPE Modulation Chart (P3-11).
CPE Port Info: Display the connecting condition and rate mode of each port.
CPE Modulation Chart: Display upstream and downstream subcarrier signal
modulation chart of CPE.
Device Model: Detail device model of CPE.
Software Version: Software version that CPE is running.
Port Num: Port number of CPE.
Down PHY Rate (Mbps): Downstream PHY rate of CPE.
UpPHY Rate (Mbps): Upstream PHY rate of CPE.
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Atten (dB): Link attenuation value from NC to CPE.
Regist: CPE is registered or not (Whether in the Whitelist).
Profile Name: Profile name of module bound by CPE. It means this CPE binds the
Default template if name of profile template is “---“.
Upgrade: Upgrade operation to CPE.
Reboot: Reboot operation to CPE.
Config: CPE information and its corresponding template information configuration.
P3-9 Online CPE
P3-10 CPE Port Info
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P3-11 CPE Modulation Chart
4.6.2 Whitelist
Whitelist (P3-12) displays registered CPE in Whitelist.
Whitelist ID: ID of registered CPE.
MAC Address: MAC address of registered CPE.
Profile Name: Name of profile module bound by registered CPE.
Modify: Enter CPE setup page.
Delete: Delete registered CPE.
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P3-12 Whitelist
Regist CPE: Authorization is set to be Enable when registering Whitelist. (P3-13)
P3-13 Regist Whitelist
4.6.3 Blacklist
Registered Blacklist: Display registered CPE in Blacklist.
Blacklist ID: ID of registered CPE.
MAC Address: MAC address of registered CPE.
Profile Name: Name of profile module bound by registered CPE.
Modify: Enter CPE set page.
Delete: Delete registered CPE.
Regist CPE: Authorization is set to be Enable when registering Blacklist.
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4.6.4 CPE Configuration
When configuring CPE profile, first open Online Auto SetupSwitch in “NC Network Other
Setting (P2-3). If default setup template is adopted, please refer to Section 2.3 and ignore
this section.
Build profile template and click add in ProfilesList (P3-14). Enter Modify Profile page (P3-15),
modify corresponding setup and click Apply button.
P3-14 Add ProfileList
P3-15 Modify Profile
Click “Config” in the Online CPE (P3-16), select settingprofile template and modify the
corresponding setup of CPE (P3-17).
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P3-16 CPE Configuration
P3-17 Modify CPE Configuration
Regist CPE:
Binding Profile: Select CPE profile.
Authorization: Enable to access this CPE.
Ethernet CPE Setup:
Set the four Ethernet ports of CPE.
Port Enable: This network port will not be used if selected disable.
Speed/Duplex: Set using mode of CPE Ethernet port, normally it is set Auto.
Loopback: Enable or disable loopback test function. It is suggested to set
“Enable”for the whole CPE.
Port Isolation: It is normally suggested to set “Enable”, then there will be no
communication between ports.
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MAC Limit: Set limit MAC number allowed passing the network port. Keep “Default”.
VLAN ID: NC supports access mode, trunk mode and passthrough mode.When the
VLAN mode of some port is set to be passthrough mode, other ports must be set to be
passthrough mode; When the VLAN mode of some port is set to be trunk mode, the
VLAN ID is the PVID. VLAN ID of the other ports is the VLAN that is allowed to pass the
port.
802.1P: It is the value of QoS priority of network port, which is configured based on
user’s plan.
Upstream Bandwidth: It is rate limitation of the upstream bandwidth to the network
port configuration.
Downstream Bandwidth: It is rate limitation of the downstream bandwidth to the
network port configuration.
Storm Suppression: It corresponding to the suppression value of the package in the
network. It points at the whole CPE. It can separately controller broadcast package,
multicast package and unknown package.
Flow Controller Enabling: For network port, open/close flow controller enabling.
Loopback testing, port isolation and storm suppression are suggested to adopt page
default configuration. Other port configurations are suggested to configure based on
actual condition. Configured information will take effect after CPE configuration and auto
restart.
4.6.5 CPE Update
CPE upgrade includes two methods, HTTP and FTP.
HTTP Upgrade:
Select upgrade method as HTTP. Select upgrade file and click upgrade button (P3-18).
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P3-18 CPE HTTP Upgrade
FTP Upgrade:
1. Select upgrade method is FTP upgrade.
2. Before upgrade, please guarantee FTP server in the network has been configured.
Configure FTP server information in the upgrade page.
FTP Server IP Address: IP address of server.
Port Number of FTP Server: Default port number of FTP is 21.
FTP User Name: FTP server needs to setup user name and password for FTP login.
FTP Password: User password of server.
To guarantee configuration of FTP server is correct before upgrade, it could be considered to
try to login FTP server before configuration, such as ftp://192.168.1.100/.
3. When it is confirmed that configuration information of FTP server is correct, enter
CPE upgrade package in FTP server and click upgrade.
It takes around 6 minutes to upgrade. Please be patient to wait for the finish of upgrade.
P3-19 CPE FTP Upgrade
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Warning: Upgrade has the risk to cause damage of the equipment and inability
of normal working. When upgrading, in order to avoiding failure, please inform
user to keep powered. Normally, CPE doesn’t need to upgrade
4.7 System Setup
System setup contains system restart, security setup, backup restore, restore factory setting,
system upgrade, system log and page setup.
4.7.1 System Restart
Click system restart button to restart the system. It takes around 1 minute, please be patient.
P3-20 System Restart
4.7.2 Security Setup
Security setup (P3-21) is used to modify WEB login password.
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P3-21 Security Setup
4.7.3 Backup Restore
Backup Restore (P3-22).
1. Equipment Configuration Backup
After clicking backup button, window of configuration document download will popup.
Then download configuration document to local PC.
2. Equipment Configuration Restore
Click browse button and select configuration document in local PC.
Click restore button to do restore operation. Equipment will restart after
configuration restore.
P3-22 Backup Restore
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4.7.4 Restore Factory Setup
Restore factory setup (P3-23) is used to restore equipment configuration to factory condition.
Click restore factory setup button to do restore operation. Equipment will restart when it is
done.
P3-23 Restore Factory Setup
Warning: This operation will cause equipment restoring to factory
configuration. It is only applicable to local operation but not remote operation.
Remote operation may cause equipment unable to access.
4.7.5 System Upgrade
System upgrade (P3-24) is used to upgrade equipment.
1. Select upgrade method.
2. If FTP upgrade method is adopted, configure FTP server information. Detail steps
refer to FTP server information configuration in 3.6.5 CPE upgrade.
3. Click upgrade after selecting upgrade package.
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It takes around 1 minute to upgrade controller. Please be patient. Controller will restart
after upgrade.
P3-24 Controller Upgrade
Warning: controller adopts dual operating systems. When upgrading, backup
operating system is upgraded. After upgrading, equipment will restart. When
upgrade is finished, backup operating system will switch to be working operating
system. Working operating system will switch to be backup operating system.
Controller restart will cause data profile interruption, but not TV s profile. So, please
consider to upgrade in low peak stage.
4.7.6 System Log
System log is used to get equipment working log for problem investigation of equipment.
Method to open and export log is shown as below:
Log Switch: Open
Record Level: Debug
Display Level: Debug
Log Position: Local file
Then it can be applied. Click “Log Obtain” to check log.
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4.7.7 Page Setup
Page Setup (P3-25) is used to select language that WEB network management is using. There
are two options: Simplified Chinese and English. Default language is Simplified Chinese. Click
“apply” to take effect.
P3-25 Language Selection
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Appendix: Introduction of Frequently-used Commend Line
Controller RF open/close acch stop/start //RF of 4 channels open/close
Search online CPE quantity on each channel Search information and online CPE quantity of each channel: OtherNodeIDs Value clnkstat -i /dev/CandD10 // Channel #1 clnkstat -i /dev/CandD11 // Channel #2 clnkstat -i /dev/CandD12 // Channel #3 clnkstat -i /dev/CandD13 // Channel #4 clnkstat -i /dev/CandD11 -a |grep "MAC" //Select online CPE in channel #2 according to MAC address
Search CPE PHY information clnkstat -i /dev/CandD10 -a // Channel #1 clnkstat -i /dev/CandD11 -a // Channel #2 clnkstat -i /dev/CandD12 -a // Channel #3 clnkstat -i /dev/CandD13 -a // Channel #4 clnkstat -i /dev/CandD13 -a | grep "CP" //Only check cplen value of CPE in
channel #4 Note: Check the CP len value of each CPE. It is the best to keep it around 30. It is possible to be 64 when starting consulting. If large number of the value is over 34, it could be considered to restart the 4 RF channels of the controller. If some CPE keeps this value, it can be considered to replace the CPE or coaxial line. clnkstat -i /dev/CandD10 -a | grep "^TxBit" //Only search CPE phyrate Note: phyrate value: Under the condition of over 280 for downstream and over
260~270 for upstream, it has good transmission performance. So the value should be kept normal when testing. Search MAC layer information of CPE
clnkstat -i /dev/CandD10 -n1 //Search MAC layer information of the first CPE in channel #1
clnkstat -i /dev/CandD10 -n2 // Search MAC layer information of the second CPE in channel #1 Search Controller Configuration
acch curr Search CPE Configuration
acch cpeQueryAll Modify Bandwidth Proportion of Upstream and Downstream
Default bandwidth proportion of upstream and downstream of Clink 1.1+ controller is 50%: 50%, which means bandwidths of upstream and downstream are both 400Mbps, 50% of the total 800Mbps bandwidth. In order to fulfill the application of some situation, property of upstream and downstream can be modified.
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Commend is: acch setDsRatio [50 ~ 85], value range is: [50, 55, 60, 65, 70, 75, 80, 85], modify downstream bandwidth property.
Log Debug Controller system log print is normally used to investigate system problem. logctl -m0 -o <get|set> -a <eocmgr|eocmonitor|httpd|snmpd|clinkd> [-l <Debug|Error>
-d <Standard Error|Syslog>] Parameter in <> is required. Parameter in [] is optional. So -1 and –d are the parameters that only used in setup. o: Operating Module, get or set; Operating Module, get or set; a: Application Program, eocmgr, etc.; l: Log Level, Error (Default) and Debug; d: Log Export Position, Standard Error (Default) and Syslog (To the system log). For example: Setup mode of reading httpd log logctl -m0 -o get -a httpd Setup display level of httpd log to be Debug logctl -m0 -o set -a httpd -l Debug