Showing posts with label MA5800. Show all posts
Showing posts with label MA5800. Show all posts

Friday, August 4, 2017

Anyone knows how to configuring the Internet Access Service on Huawei OLT MA5800?

Huawei OLT MA5800 is connected to the remote ONT through a GPON port to provide users with highspeed Internet access services.

Prerequisites
The OLT is connected to the BRAS.
Related configurations are performed on the BRAS according to the authentication and
accounting requirements for dialup users. For details about the configuration, see the
configuration guide.
The ONT has been added to the OLT.
The VLAN of the LAN switch port connected to the OLT is consistent with the upstream
VLAN of the OLT.

Residential users generally access the Internet in Point-to-Point Protocol over Ethernet
(PPPoE) dial-up mode. PPPoE dial-up can be performed on personal computers (PCs) or
HGWs.

The configuration processes on HGWs of different models or in different appearances
are similar. This topic describes how to configure the Internet access service on an
HG239 that is connected to an ONT upstream through a LAN.

Procedure
l Configure Huawei OLT.
a. Configure a traffic profile.
Run the display traffic table ip command to query existing traffic profiles in the system. If the traffic profiles existing in the system do not meet the requirements, you need to run the traffic table ip command to add a traffic profile.
Set the profile ID to ftth_hsi, the CIR to 4 Mbit/s, and the priority to 0. In addition, configure the scheduling mode so that packets are scheduled according to their priorities.

huawei(config)#traffic table ip name ftth_hsi cir 4096 priority 0
priority-policy local-setting

b. Configure the mapping between a GEM port and a VLAN.
The service flow of user-side VLAN 45 is mapped to GEM port 14 in the ONT line profile.

huawei(config)#ont-lineprofile gpon profile-name ftth
huawei(config-gpon-lineprofile-1)#gem mapping 14 0 vlan 45
huawei(config-gpon-lineprofile-1)#commit
huawei(config-gpon-lineprofile-1)#quit

c. Configure the VLAN of the Ethernet port on the ONT HG8546M.
Add Ethernet port 1 to VLAN 45 in the ONT service profile.
huawei(config)#ont-srvprofile gpon profile-name ftth
huawei(config-gpon-srvprofile-1)#port vlan eth 1 45
huawei(config-gpon-srvprofile-1)#commit

d. Create an Internet access service VLAN and add an upstream port to it.
Add upstream port 0/9/0 to VLAN 100.
huawei(config)#vlan 100 smart
huawei(config)#vlan attrib 100 stacking
huawei(config)#port vlan 100 0/9 0

e. Create Internet access service flows.
Set S-VLAN ID to 100 and GEM port ID to 14. Use traffic profile ftth_hsi.
huawei(config)#service-port vlan 100 gpon 0/1/0 ont 1 gemport 14 multiservice
user-vlan 45 tag-transform translate-and-add
inner-vlan 1001 inbound traffic-table name ftth_hsi outbound traffictable
name ftth_hsi
huawei(config)#service-port vlan 100 gpon 0/1/0 ont 2 gemport 14 multiservice
user-vlan 45 tag-transform translate-and-add
inner-vlan 1002 inbound traffic-table name ftth_hsi outbound traffictable
name ftth_hsi

f. Save the data.
huawei(config)#save

Configure the HGW.
a. Log in to the web configuration window.
i. Enter the default IP address in the address bar of the browser, and then press
Enter.
ii. In the login window, enter the user name and password (the default value is
provided by ISP) of the administrator and click OK.
b. Set parameters for the Internet access service.
i. Choose Internet access service configuration from the navigation tree.
ii. Set parameters for the Internet access service.
iii. Submit the configuration.


Tuesday, July 25, 2017

Do you know Huawei FTTO SOHO and SME solutions?

FTTO SOHO and SME solutions involve many concepts. Here we mianly talk about  FTTO SOHO and SME solutions from user side to network side based on the following FTTO SOHO and SME network diagram.

Scenario

Small office home office (SOHO):SOHO is positioned for miniature enterprises, such as home offices, shops, and markets.

Small- and medium-sized enterprise (SME)

An SME contains 10-300 personnel. SME is positioned for small- and medium-sized enterprises, campuses, and net bars.

User Side
VoD:VoD is known as interactive video on demand. Users can choose their desired programs from the VoD program database. When watching programs, users can perform operations such as pause, fast forward, fast rewind, and locate.
Multicast: Multicast, or broadband TV (BTV) is similar to traditional wired broadcasting or television satellite broadcasting. Users have the same experience in watching BTV programs and traditional television programs. Unlike the traditional television, the IPTV system encodes audio signals into media streams and multicasts the media streams over an IP network to user terminals.
Fax: A communication tool widely used in enterprises and institutions to transmit digital text and images through phone lines.
Point of sale (POS):A terminal supporting multiple functions. After being installed in a promissory shop or designated network of a credit card and accessing the network, the POS machine implements speedy, convenient, and reliable automatic electronic funds transfer. The POS machine supports consumption, advance payment, balance inquiry, and transfer.
Wireless fidelity (Wi-Fi):A short-distance wireless transmission technology, which supports wireless signals for Internet access within hundreds of feet.

Access Side
PON:A passive optical network (PON) uses a point-to-multipoint (P2MP) network architecture. A PON network consists of three parts: optical line terminal (OLT), optical distribution network (ODN), and optical network units (ONUs). A PON network uses optical fibers for data transmission, supports more users with less optical fiber resources, and provides a higher access rate.
ODN:The ODN is composed of passive optical components, such as optical fibers and one or more passive optical splitters. The ODN provides highly reliable optical channels between Huawei OLT and ONUs.
OLT:The OLT is an aggregation device located at the central office (CO), which terminates PON protocols. OLTs in this document are Huawei MA5800.
ONU:ONUs are located on the user side, providing various types of ports for connecting to user terminals. The ONUs communicate with the OLT through a passive ODN.\
Split Ratio:Split ratio is the ratio of dividing a downstream optical signal into sub-signals in the PON system. Greater optical ratio requires more power to support physical distances.

Network Side
U-PE:User-end provider edges (U-PEs) are routing devices directly connected to customer edges (UEs). U-PEs support routing and MPLS encapsulation. If a U-PE is connected to multiple CEs and possesses the basic bridging function, data frame forwarding only needs to be performed on the U-PE. This reduces the load of the S-PE.

PE-AGG:Aggregation provider edge (PE-AGG) routers provide aggregation and route forwarding functions for access equipment. Compared with U-PEs, PE-AGGs features higher performance, fewer interfaces, and higher switching rates.

NGN/IMS:A next generation network (NGN) is a network that uses softswitches as its core and uses open and standardized architectures to provide abundant services such as VoIP, video, and data.
The IP multimedia subsystem (IMS) uses SIP signaling as its call control signaling to provide services such as VoIP, data, and multimedia services.

IPTV head end:The IPTV head end system functions as the contents preparation platform in the IPTV system. It provides functions such as signal receipt, media format conversion, and media material management.