WO2008098456A1 - Procédé, dispositif et système de distribution de service - Google Patents

Procédé, dispositif et système de distribution de service Download PDF

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Publication number
WO2008098456A1
WO2008098456A1 PCT/CN2007/070978 CN2007070978W WO2008098456A1 WO 2008098456 A1 WO2008098456 A1 WO 2008098456A1 CN 2007070978 W CN2007070978 W CN 2007070978W WO 2008098456 A1 WO2008098456 A1 WO 2008098456A1
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WIPO (PCT)
Prior art keywords
configuration file
olt
user
file
ont
Prior art date
Application number
PCT/CN2007/070978
Other languages
English (en)
French (fr)
Inventor
Junhua Wan
Wei Yue
Wei Wu
Zuoqian Jiang
Lei Li
Hai Gao
Original Assignee
Huawei Technologies Co., Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co., Ltd. filed Critical Huawei Technologies Co., Ltd.
Priority to AT07817169T priority Critical patent/ATE553567T1/de
Priority to ES07817169T priority patent/ES2384531T3/es
Priority to EP17201484.7A priority patent/EP3322128B1/en
Priority to EP07817169A priority patent/EP2106064B1/en
Publication of WO2008098456A1 publication Critical patent/WO2008098456A1/zh
Priority to US12/538,438 priority patent/US8489711B2/en
Priority to US13/917,923 priority patent/US10355926B2/en
Priority to US16/413,255 priority patent/US11025487B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0813Configuration setting characterised by the conditions triggering a change of settings
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/084Configuration by using pre-existing information, e.g. using templates or copying from other elements
    • H04L41/0843Configuration by using pre-existing information, e.g. using templates or copying from other elements based on generic templates
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • H04L41/5041Network service management, e.g. ensuring proper service fulfilment according to agreements characterised by the time relationship between creation and deployment of a service
    • H04L41/5054Automatic deployment of services triggered by the service manager, e.g. service implementation by automatic configuration of network components
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q11/0067Provisions for optical access or distribution networks, e.g. Gigabit Ethernet Passive Optical Network (GE-PON), ATM-based Passive Optical Network (A-PON), PON-Ring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/02Standardisation; Integration
    • H04L41/0213Standardised network management protocols, e.g. simple network management protocol [SNMP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/02Standardisation; Integration
    • H04L41/0233Object-oriented techniques, for representation of network management data, e.g. common object request broker architecture [CORBA]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q2011/0079Operation or maintenance aspects

Definitions

  • the present invention relates to a service delivery technology in a communication network, and in particular, to a service delivery method, apparatus, and system. Background of the invention
  • the current broadband access technologies are mainly divided into copper access technologies and optical access technologies.
  • An access network implemented by optical access technology is called an Optical Access Network (OAN).
  • Passive Optical Network (PON) technology is a point-to-multipoint optical access technology.
  • FIG. 1 is a schematic diagram of a networking structure of an existing P0N system.
  • the PON system shown in FIG. 1 includes: an optical line terminal (OLT), an optical distribution network (ODN), and an optical network unit (ONU).
  • OLT optical line terminal
  • ODN optical distribution network
  • ONU optical network unit
  • the OLT is connected to at least one ODN to provide a network side interface (SNI) for the OAN.
  • the ODN is a passive optical splitting device, and is configured to transmit the downlink data of the OLT to each ONU through the optical branch, and transmit the uplink data of the ONU through the convergence.
  • the ONU is connected to the OND to provide a user-side interface (UNI) for the OAN. If the ONU provides the function of the user port at the same time, for example, the ONU provides an Ethernet user port or a Plain Old Telephone Service (POTS), It can be called an Optical Network Termination (ONT).
  • POTS Plain Old Telephone Service
  • ONT Optical Network Termination
  • the ONU Management Control Interface is a mechanism for transferring information between the OLT and the ONT. By configuring the transmission channel through OMCI, the OLT can manage and control the ONT.
  • the OLT can manage and control the ONT.
  • the OMCI mechanism abstract the various data of the OLT management ONT into a protocol independent tube.
  • the Protocol-Independent Management Information Base is called the MIB.
  • the basic information unit of the MIB is the Management Entity (ME).
  • Service provisioning means The operator implements an automatic configuration process from the initial user numbering to the subsequent user service refresh through a set of delivery systems.
  • the operator's service delivery system includes the order system, the operation support system (OSS), the equipment management system (EMS), and the business equipment.
  • OSS operation support system
  • EMS equipment management system
  • PON PON technologies
  • GPON Gigabit Passive Optical Network
  • BPON Broadband Passive Optical Network
  • GPON Broadband Passive Optical Network
  • the operator conducts a survey on the network, determines the physical deployment, performs device installation, and performs basic configuration in the EMS. Then, when the user applies for a service from the business hall, the OSS system records the user's business information. At the same time, the EMS is notified to generate data related to the service information of the user. Finally, the EMS sends the data to the service device side, and the service device completes the specific parameter configuration.
  • the subsequent processes are automatically implemented by OSS, EMS, OLT and ONT. This automatic implementation process is called service delivery.
  • OMCI can manage value-added services such as Voice over IP (VoIP), Circuit Emulation Service (CES), and Coax Multimedia Alliance (MoCA), and services for these value-added services.
  • VoIP Voice over IP
  • CES Circuit Emulation Service
  • MoCA Coax Multimedia Alliance
  • Figure 2 the method of issuance is shown in Figure 2.
  • the OSS sends a message that the user adds the VoIP service to the EMS, and all the configurations related to the VoIP service by the EMS pass the MIB message of the Single Network Management Protocol (SNMP) one by one.
  • SNMP Single Network Management Protocol
  • the ONT is sent to the ONT, and then the OLT sends the MIB message to the OMCI management entity and sends the message to the ONT. Finally, the ONT configures the specific hardware device in the ONT according to the OMCI management entity message.
  • Any changes to the OMCI management entity will involve changes to EMS, OLT, ONT, etc., which are not conducive to expansion.
  • the service issuance method disclosed in the embodiment of the present invention provides a service delivery method with good scalability.
  • the service issuance system disclosed in the embodiment of the present invention provides a service delivery system with good scalability.
  • the management system disclosed in the embodiments of the present invention can make the service distribution have good scalability.
  • a service issuance method including:
  • the management system generates a corresponding configuration file according to the service information of the user;
  • the management system sends the generated configuration file to the optical network terminal ONT of the user through the optical line terminal OLT;
  • the ONT performs corresponding configuration according to the received configuration file.
  • a service delivery system including a management system, the management system passing an optical line terminal
  • the OLT is connected to one or more optical network terminals ONT, where:
  • the management system is configured to generate a corresponding configuration file according to the service information of the user, and send the configuration file to the one or more ONTs by using the OLT;
  • a management system that is connected to one or more optical network terminals ONT through an optical line terminal OLT, including:
  • a generating module configured to generate a corresponding configuration file according to the service information of the user
  • a sending module configured to send the configuration file to the OLT, and send, by the OLT, the configuration file to the optical network terminal ONT.
  • the management system first generates a corresponding configuration file according to the service information of the user, and then sends the configuration file to the ONT corresponding to the user through the OLT, and finally, The ONT is configured according to the configuration file.
  • the service configuration of the ONT is implemented by using the configuration file. Because the configuration file can be expanded very flexibly, the service configuration information in the configuration file can be flexibly expanded accordingly.
  • the OLT only needs to transmit the configuration file from the management system to the ONT of the user, and does not need to perceive the configuration, thus reducing the coupling between the management system, the OLT and the ONT, which also makes The business is more scalable.
  • FIG. 1 is a schematic diagram of a networking structure of an existing PON system
  • FIG. 2 is a schematic flowchart of a method for issuing a value-added service
  • FIG. 3 is a schematic flowchart of a service delivery method according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a structure of a service delivery system according to an embodiment of the present invention. Mode for carrying out the invention
  • FIG. 3 is a schematic flowchart of a service delivery method according to an embodiment of the present invention. Referring to Figure 3, the method includes the following steps:
  • Step 301 The EMS acquires service information of the user.
  • the EMS can obtain the service information of the user from the OSS, or obtain the service information of the user from the information input by the network administrator, and obtain the service information of the user according to any other feasible manner in the prior art.
  • the EMS when the EMS obtains the user's service information from the OSS, the EMS may be based on a network protocol such as TL1, Public Object Request Broker Architecture (CORBA).
  • a network protocol such as TL1, Public Object Request Broker Architecture (CORBA).
  • Step 302 The EMS generates a corresponding configuration file according to the service information of the user.
  • a common profile template corresponding to various ONT types may be generated in the EMS according to the type of the ONT, and some common configuration information is set in the common profile template.
  • the OSS system or the network administrator may first determine the ONT type of the user, and then only send the personalized configuration information corresponding to the user as the service information of the user to the EMS, and the EMS will The user's personality configuration information is set in a public profile template corresponding to the user's ONT type, and a profile corresponding to the user's service information is generated.
  • the common configuration information refers to some conventional configuration information that can be shared by the same type of user/ONT;
  • the personality configuration information is a concept relative to the public configuration information, such as the user's phone number, routing method, etc., all of which are certain users. Or configuration information specific to the ONT.
  • the configuration file generated by the EMS can be in the currently used Extensible Markup Language (XML) format.
  • XML Extensible Markup Language
  • other formats such as a text file (TXT) format or other customized format, can be used to generate the configuration file, as long as ONT received the configuration file After that, the configuration data can be parsed normally.
  • the EMS after the EMS generates the configuration file, it can be stored in the EMS, or the EMS can store the configuration file in the file server.
  • the file server may be a File Transfer Protocol (FTP)-based file server, or a server based on the General File Transfer Protocol (TFTP), Secure File Transfer Protocol (FTPS), or other file transfer protocol.
  • FTP File Transfer Protocol
  • TFTP General File Transfer Protocol
  • FTPS Secure File Transfer Protocol
  • Step 303 The EMS sends the configuration file to the OLT.
  • the OLT sends the type of the ONT and the user ID (ID) to the EMS.
  • the EMS determines the configuration file to be delivered according to the type and user ID of the ONT. After the EMS determines the delivered configuration file, this embodiment provides two ways to send the configuration file to the OLT.
  • the first way is: EMS sends the configuration file directly to the OLT.
  • step 302 the EMS stores the generated configuration file in the file server. After the EMS determines the delivered configuration file, the EMS notifies the OLT of the determined configuration file, and the OLT requests the download server from the file server. The configuration file, and then the file server sends the configuration file that the OLT requests to download to the OLT.
  • the type of the ONT and the user ID can be transmitted between the EMS and the OLT based on the protocol such as SNMP or Telnet.
  • the configuration file can be transmitted between the EMS and the OLT by FTP, TFTP, FTPS or other file transfer.
  • the transmission mode of the protocol, the file server and the OLT can also transfer the configuration file by FTP, TFTP, FTPS or other file transfer protocol.
  • Step 304 The OLT sends the configuration file to the ONT.
  • the OLT can send the configuration file to the corresponding ONT through the OMCI load file channel.
  • OMCI load file channel For how to use the OMCI load file channel to send the configuration file to the ONT, refer to the data loading process of the OMCI in the prior art. Let me repeat.
  • Step 305 The ONT performs corresponding configuration on the hardware in the ONT according to the configuration file.
  • the ONT parses the configuration file from the OLT, obtains configuration data corresponding to the service information of the user, and configures the hardware of the ONT according to the configuration data.
  • FIG. 4 is a schematic structural diagram of a service delivery system according to an embodiment of the present invention.
  • the system includes: OSS, EMS, OLT, and ONT.
  • the EMS is configured to generate a corresponding configuration file according to the service information of the user, and send the configuration file to the ONT corresponding to the user by using the OLT;
  • the OLT is configured to send the received configuration file to the ONT corresponding to the user;
  • the ONT is used to configure the hardware in the ONT according to the configuration file.
  • the EMS may be further configured to set a public profile template corresponding to the ONT type and including the common configuration information, and set the user's personality configuration information as the service information of the user to the ONT of the user.
  • a configuration file corresponding to the business information of the user is generated.
  • the EMS can obtain the service information of the user from the OSS based on the network protocol such as TL1 and CORBA, and can also obtain the service information of the user from the information of the EMS input by the network administrator, and can also obtain the user according to any other feasible manner in the prior art.
  • Business information can obtain the service information of the user from the OSS based on the network protocol such as TL1 and CORBA, and can also obtain the service information of the user from the information of the EMS input by the network administrator, and can also obtain the user according to any other feasible manner in the prior art.
  • Business information can obtain the service information of the user from the OSS based on the network protocol such as TL1 and CORBA, and can also obtain the service information
  • the OLT can be used to detect the ONT.
  • the type of the ONT and the user ID are sent to the EMS.
  • the EMS determines the configuration file to be delivered based on the type and user ID of the ONT. After the EMS determines the delivered configuration file, this embodiment provides two ways to send the configuration file to the OLT.
  • the first way is: EMS sends the configuration file directly to the OLT.
  • the configuration file can be transmitted between the EMS and the OLT by using FTP, TFTP, FTPS or other file transfer protocol.
  • the second method is: further setting a file server in the system shown in FIG. 4, the EMS storing the generated configuration file in the file server, and after the EMS determines the issued configuration file, notifying the OLT, from the OLT to the file server A file download request for downloading the configuration file is initiated, and then the file server sends the configuration file requested by the OLT to the OLT.
  • the file server and the OLT can transfer configuration files using FTP, TFTP, FTPS or other file transfer protocol.
  • the OLT can send the configuration file to the corresponding ONT through the OMCI load file channel.
  • the EMS can be used to generate configuration files in XML format, TXT format or other formats;
  • the ONT is used to parse the configuration file in XML format, TXT format or other format, obtain configuration data corresponding to the user's business information, and configure the ONT's own hardware according to the obtained configuration data.
  • the EMS first generates a corresponding configuration file according to the service information of the user, and then sends the configuration file to the ONT corresponding to the user through the OLT, and finally, by the ONT.
  • the service configuration of the ONT is implemented in the configuration file. Because the configuration file can be expanded very flexibly, the service configuration information in the configuration file can be flexibly expanded accordingly.
  • the OLT only needs to transmit the configuration file from the EMS to the ONT, and does not need to perceive the configuration, thus reducing the coupling between the EMS, the OLT and the ONT device, which also makes the service available. More extensible.
  • the embodiment is based on the EMS.
  • Different ONT types have corresponding public profile templates set.
  • the OSS or the network administrator only needs to send the user's personality configuration information to the EMS, and the EMS can generate a configuration file according to the personality configuration information.

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Description

一种业务发放方法、 装置及系统
技术领域
本发明涉及通信网络中的业务发放技术, 特别涉及一种业务发放方 法、 装置及系统。 发明背景
目前的宽带接入技术主要分为铜线接入技术和光接入技术。 采用光 接入技术实现的接入网称为光接入网 ( OAN, Optical Access Network )。 无源光网络( PON, Passive Optical Network )技术是一种点对多点传送 的光接入技术。
图 1为现有 P0N系统的组网结构示意图。图 1所示 PON系统包括: 光线路终端 (OLT, Optical Line Terminal ), 光分布网 (ODN, Optical Distribute Network )和光网给单元(ONU, Optical Network Unit )。
其中, OLT连接至少一个 ODN , 为 OAN提供网络侧接口 ( SNI ); ODN为无源分光器件, 用于将 OLT下行的数据通过光分路传输到 各个 ONU, 并将 ONU的上行数据通过汇聚传输到 OLT;
ONU与 OND相连, 为 OAN提供用户侧接口 ( UNI ), 若 ONU同 时提供用户端口的功能,例如, ONU提供以太网用户端口或筒单老式电 话业务用户端口 (POTS, Plain Old Telephone Service ), 则可称为光网络 终端( ONT , Optical Network Termination )。 在下面的描述中, 如无特别 说明, 将 ONU、 ONT统一称为 ONT。
ONU管理控制接口 ( OMCI )是一种在 OLT与 ONT之间传递信息 的机制, 通过 OMCI配置传输通道, 可以实现 OLT对 ONT的管理和控 制。 在 OMCI机制中, 将 OLT管理 ONT的各种数据抽象为协议独立管 理信息库 ( Protocol-Independent Management Information Base ), 筒称为 MIB, MIB的基本信息单元是管理实体(ME, Manage Entity )。
业务发放是指: 运营商通过一套发放系统, 实现从初期用户放号到 后续用户业务刷新的自动配置过程。 运营商的业务发放系统包括订单系 统、运营支撑系统(OSS )、设备管理系统(EMS )以及业务设备。 目前, 存在多种 PON技术, 例如吉比特无源光网络( GPON , Giga-bit Passive Optical Network )和宽带无源光网络( BPON , Broad Band PON )等, 下 面以 GPON系统为例, 说明在基于 OMCI机制的 PON系统中的业务发 放过程:
首先, 运营商对网络进行工勘, 确定物理布放, 进行设备安装, 并 在 EMS 中进行相应的基本配置; 然后, 当用户从营业大厅申请某项业 务时, 由 OSS系统记录用户的业务信息, 同时通知 EMS生成与用户的 业务信息相关的数据; 最后, EMS将这些数据下发到业务设备侧, 由业 务设备完成具体的参数配置。 整个过程中, 除了在营业厅前台需要人为 干预进行配置, 后续过程都由 OSS、 EMS, OLT和 ONT等设备联合自 动实现, 这个自动实现的过程就称为业务发放。 后续的增补版本中, 完善了 OMCI管理实体的功能, 使得 OMCI可以管 理 IP语音 (VoIP )、 电路仿真服务(CES ) 以及同轴电缆多媒体联盟 ( MoCA )等增值业务, 针对这些增值业务提出的业务发放方法如图 2 所示。 参见图 2, 当用户申请某种业务, 如 VoIP业务时, OSS将用户增 加 VoIP业务的消息发送给 EMS, 由 EMS将 VoIP业务相关的所有配置 通过筒单网络管理协议( SNMP )的 MIB消息逐条下发给 ONT, 然后由 OLT将这些 MIB消息转换为 OMCI管理实体消息下发给 ONT, 最后, 由 ONT根据 OMCI管理实体消息逐一配置 ONT中具体的硬件器件。 本申请的发明人在实现本发明的过程中发现, 上述技术方案存在如 下缺点:
1、 终端的类型多种多样, 但标准中仅规定了 VoIP, CES , MoCA 等业务的管理实体; 当增加了新业务,需要对该新业务进行业务发放时, 必需针对所述新业务扩展相应的 OMCI管理实体,而 OMCI管理实体比 较复杂, OMCI管理实体的扩展将带来 4艮大的开发工作量;
2、 当增加了新业务, 扩展了针对该新业务的 OMCI 管理实体时, 必然需要增加相应的 OMCI管理实体消息,然而 OMCI管理实体消息的 增加将给 OLT和 ONT设备的互通增加难度;
3、 OMCI管理实体的任何改动都将涉及 EMS、 OLT、 ONT等多环 节的改动, 不利于扩展。
因此, 上述现有业务发放方案的可扩展性比较差。 发明内容
本发明实施例所公开的业务发放方法, 提供了一种具有良好可扩展 性的业务发放方法。
本发明实施例所公开的业务发放系统, 提供了一种具有良好可扩展 性的业务发放系统。
本发明实施例所公开的管理系统, 可以使业务发放具有良好的可扩 展性。
为达到上述目的, 本发明实施例的技术方案具体是这样实现的: 一种业务发放方法, 包括:
管理系统根据用户的业务信息生成相应的配置文件;
管理系统将所述生成的配置文件通过光线路终端 OLT发送给所述 用户的光网络终端 ONT; 所述 ONT根据接收到的配置文件进行相应的配置。
一种业务发放系统, 包括管理系统, 所述管理系统通过光线路终端
OLT连接到一个或多个光网络终端 ONT, 其中:
所述管理系统, 用于根据用户的业务信息生成相应的配置文件, 并 将所述配置文件通过所述 OLT发送给所述一个或多个 ONT;
一种管理系统,通过光线路终端 OLT连接到一个或多个光网络终端 ONT, 包括:
生成模块, 用于根据用户的业务信息生成相应的配置文件; 发送模块, 用于将所述配置文件发送给所述 OLT, 由所述 OLT将所 述配置文件发送给光网络终端 ONT。
由上述技术方案可见, 本发明实施例所公开的技术方案中, 首先由 管理系统根据用户的业务信息生成相应的配置文件,然后通过 OLT将配 置文件发送给与该用户相应的 ONT, 最后, 由 ONT根据配置文件进行 相应的配置, 如此, 采用配置文件的方式实现了对 ONT的业务配置。 由于, 配置文件可以非常灵活地进行扩展, 相应地, 配置文件中的业务 配置信息也能够实现灵活扩展。
此外, 由于在上述技术方案中, OLT只需将来自管理系统的配置文 件传输给用户的 ONT即可, 无需感知该配置, 如此, 减少了管理系统、 OLT和 ONT之间的耦合, 这也使得业务的可扩展性更强。 附图简要说明
图 1为现有 PON系统的组网结构示意图;
图 2为现有增值业务发放方法的流程示意图;
图 3为本发明实施例中业务发放方法的流程示意图;
图 4为本发明实施例中业务发放系统的组成结构示意图。 实施本发明的方式
为使本发明的目的、 技术方案及优点更加清楚明白, 以下参照附图 并举实施例, 对本发明作进一步详细说明。
图 3为本发明实施例中业务发放方法的流程示意图。 参见图 3, 该 方法包括以下步骤:
步骤 301: EMS获取用户的业务信息。
本步骤中, EMS可以从 OSS获取用户的业务信息, 也可以从网络 管理员输入 EMS 的信息中获取用户的业务信息, 还可以按照现有技术 中任意其他可行的方式获取用户的业务信息。
按照现有技术, EMS从 OSS获取用户的业务信息时,可以基于 TL1、 公共对象请求代理架构 (CORBA )等网络协议。
步骤 302: EMS根据用户的业务信息生成相应的配置文件。
本步骤中, 为了方便用户配置文件的快速生成, 可以预先在 EMS 中根据 ONT的类型生成与各种 ONT类型相应的公共配置文件模板, 并 在这些公共配置文件模板中设置一些公共配置信息。 这样, 当用户开通 某种业务时, OSS系统或网络管理员可以首先确定该用户的 ONT类型, 然后只将与该用户相应的个性配置信息作为该用户的业务信息发送给 EMS, 由 EMS将该用户的个性配置信息设置于与该用户的 ONT类型相 应的公共配置文件模板中, 生成与该用户的业务信息相应的配置文件。
这里,公共配置信息是指一些常规的、可供同一类用户 /ONT共用的 配置信息; 个性配置信息是相对于公共配置信息的概念, 例如用户的电 话号码、 路由方式等, 都是某个用户或 ONT所特有的配置信息。
本步骤中, EMS所生成的配置文件可以采用目前比较常用的可扩展 标记语言( XML )格式,当然也可以采用其他格式,例如文本文件( TXT ) 格式或其他自定义的格式生成配置文件, 只要 ONT收到该配置文件之 后能够正常地解析出配置数据即可。
本步骤中, EMS生成配置文件之后,可以存储在 EMS中,或由 EMS 将配置文件存储于文件服务器中。
这里, 文件服务器可以是基于文件传输协议(FTP )的文件服务器, 也可以是基于一般的文件传输协议( TFTP )、安全文件传输协议( FTPS ) 或其他文件传输协议的服务器。
步骤 303: EMS将配置文件发送给 OLT。
本步骤中, 当 ONT上线, OLT检测到 ONT之后, OLT将 ONT的 类型和用户标识(ID )发送给 EMS, 由 EMS根据 ONT的类型和用户 ID确定下发的配置文件。 在 EMS确定下发的配置文件之后, 本实施例 提供了两种将配置文件发送给 OLT的方式。
第一种方式是: EMS直接将配置文件发送给 OLT。
第二种方式是: 在步骤 302中, EMS将所生成的配置文件存储于文 件服务器中, 当 EMS确定下发的配置文件之后, 将所确定的配置文件 通知 OLT, OLT向文件服务器请求下载所述配置文件, 然后, 文件服务 器将 OLT请求下载的配置文件发送给 OLT。
本步骤中, EMS与 OLT之间交互 ONT的类型和用户 ID等信息时 可以基于 SNMP、 Telnet等协议的传输方式, EMS与 OLT之间传输配置 文件时可以采用 FTP、 TFTP, FTPS或其他文件传输协议的传输方式, 文件服务器与 OLT之间传输配置文件时也可以采用 FTP、 TFTP, FTPS 或其他文件传输协议的传输方式。
步骤 304: OLT将配置文件发送给 ONT。
本步骤中, OLT可以通过 OMCI加载文件通道将所述配置文件发送 给对应的 ONT, 关于如何使用 OMCI加载文件通道将配置文件发送给 ONT请参见现有技术中 OMCI的数据加载流程, 在此不再赘述。 步骤 305: ONT根据配置文件对 ONT中的硬件进行相应的配置。 本步骤中, ONT解析来自于 OLT的配置文件, 得到与用户的业务 信息相应的配置数据, 并根据该配置数据对 ONT 自身的硬件进行相应 的配置。
至此, 结束本实施例业务发放流程。
下面通过一个系统实施例说明本发明业务发放系统的具体实施方 式。
图 4为本发明实施例中业务发放系统的组成结构示意图。 参见图 4, 该系统包括: OSS、 EMS、 OLT和 ONT。
其中, EMS, 用于根据用户的业务信息生成相应的配置文件, 并通 过 OLT将配置文件发送给与该用户相应的 ONT;
OLT, 用于将接收到的配置文件发送给该用户对应的 ONT;
ONT, 用于根据配置文件对 ONT中的硬件进行相应的配置。
图 4所示系统中, EMS可以进一步用于设置与 ONT类型相应的、 包含有公共配置信息的公共配置文件模板, 并将用户的个性配置信息作 为该用户的业务信息设置于与该用户的 ONT类型相应的公共配置文件 模板中, 生成与该用户的业务信息相应的配置文件。 这里, EMS可以基 于 TL1、 CORBA等网络协议从 OSS获取用户的业务信息, 也可以从网 络管理员输入 EMS 的信息中获取用户的业务信息, 还可以按照现有技 术中任意其他可行的方式获取用户的业务信息。
图 4所示系统中, OLT可以用于检测 ONT,当 ONT上线时,将 ONT 的类型和用户 ID发送给 EMS; 由 EMS根据 ONT的类型和用户 ID确 定下发的配置文件。 在 EMS确定下发的配置文件之后, 本实施例提供 了两种方式将配置文件发送给 OLT。
第一种方式是: EMS直接将配置文件发送给 OLT。 在这种方式下, EMS与 OLT之间可以采用 FTP、 TFTP、 FTPS或其他文件传输协议的 传输方式传输配置文件。
第二种方式是: 在图 4所示系统中进一步设置文件服务器, EMS将 所生成的配置文件存储于该文件服务器中, 当 EMS确定下发的配置文 件之后,通知 OLT, 由 OLT向文件服务器发起下载配置文件的文件下载 请求, 然后, 文件服务器将 OLT请求的配置文件发送给 OLT。 在这种方 式下, 文件服务器与 OLT之间可以采用 FTP、 TFTP、 FTPS或其他文件 传输协议的传输方式传输配置文件。
OLT在收到配置文件之后, 可以通过 OMCI加载文件通道将配置文 件发送给相应的 ONT。
图 4所示系统中, EMS可以用于生成 XML格式、 TXT格式或其他 格式的配置文件;
ONT, 用于解析 XML格式、 TXT格式或其他格式的配置文件, 得 到与用户的业务信息相应的配置数据,并根据所得到的配置数据对 ONT 自身的硬件进行相应的配置。
由上述实施例可见, 本发明实施例所公开的技术方案中, 首先由 EMS根据用户的业务信息生成相应的配置文件, 然后通过 OLT将配置 文件发送给与该用户相应的 ONT, 最后, 由 ONT根据配置文件对 ONT 中的硬件进行相应的配置, 如此, 采用配置文件的方式实现了对 ONT 的业务配置。 由于, 配置文件可以非常灵活地进行扩展, 相应地, 配置 文件中的业务配置信息也能够实现灵活扩展。
并且, 由于在上述技术方案中, OLT只需将来自 EMS的配置文件 传输给 ONT即可, 无需感知该配置, 如此, 减少了 EMS、 OLT和 ONT 设备之间的耦合, 这也使得业务的可扩展性更强。
此外,为了方便用户配置数据的快速生成,本实施例在 EMS中根据 不同的 ONT类型设置了相应的公共配置文件模板, 如此, OSS或网络 管理员只需将用户的个性配置信息发送给 EMS, EMS 即可根据这些个 性配置信息生成配置文件。
以上所述仅为本发明的较佳实施例而已, 并非用于限定本发明的保 护范围。 凡在本发明的精神和原则之内所作的任何修改、 等同替换、 改 进等, 均应包含在本发明的保护范围之内。

Claims

权利要求书
1、 一种业务发放方法, 其特征在于, 包括:
管理系统根据用户的业务信息生成相应的配置文件;
管理系统将所述生成的配置文件通过光线路终端 OLT发送给所述 用户的光网络终端 ONT;
所述 ONT根据接收到的配置文件进行相应的配置。
2、 根据权利要求 1 所述的方法, 其特征在于, 进一步预先设置与 ONT类型相应的公共配置文件模板,在所述公共配置文件模板中设置公 共配置信息;
所述管理系统根据用户的业务信息生成相应的配置文件包括: 管理 系统将所述用户的个性配置信息作为所述用户的业务信息设置于相应 的公共配置文件模板中, 生成与所述用户的业务信息相应的配置文件。
3、 根据权利要求 1或 2所述的方法, 其特征在于, 所述管理系统 为设备管理系统 EMS;
所述管理系统将所述生成的配置文件通过 OLT发送给所述用户的 ONT包括: 所述 EMS将生成的配置文件发送给 OLT; 所述 OLT将接收 到的配置文件发送给所述 ONT。
4、 根据权利要求 3所述的方法, 其特征在于, 所述 EMS采用文件 传输协议 FTP、 一般的文件传输协议 TFTP或安全文件传输协议 FTPS 将所述生成的配置文件发送给所述 OLT。
5、 根据权利要求 1或 2所述的方法, 其特征在于, 所述管理系统 包括 EMS和文件服务器;
所述管理系统将所述生成的配置文件通过 OLT发送给所述用户的 ONT包括: 所述 EMS将生成的配置文件存储在所述文件服务器中, 并 通知 OLT; 所述 OLT根据所述 EMS的通知从所述文件服务器下载所述 配置文件后发送给所述 ONT。
6、 根据权利要求 5所述的方法, 其特征在于, 所述 OLT采用文件 传输协议 FTP、 一般的文件传输协议 TFTP或安全文件传输协议 FTPS 从所述文件服务器下载所述配置文件。
7、 根据权利要求 1或 2所述的方法, 其特征在于, 所述配置文件 的格式为可扩展标记语言 XML、 文本文件格式 TXT或自定义的格式。
8、 一种业务发放系统, 包括管理系统, 所述管理系统通过光线路 终端 OLT连接到一个或多个光网络终端 ONT, 其特征在于:
所述管理系统, 用于 ^据用户的业务信息生成相应的配置文件, 并 将所述配置文件通过所述 OLT发送给所述一个或多个 ONT。
9、根据权利要求 8所述的系统,其特征在于:所述管理系统为 EMS, 用于将生成的配置文件发送给所述 OLT;
由所述 OLT将来自于 EMS的配置文件发送给所述用户的 ONT。
10、 根据权利要求 8所述的系统, 其特征在于: 所述管理系统包括 EMS和文件服务器,
所述 EMS , 用于将生成的配置文件存储在文件服务器中, 并通知所 述 OLT;
所述文件服务器,用于存储所述配置文件, 并根据 OLT的请求向所 述 OLT提供所述配置文件, 由所述 OLT将来自于所述文件服务器的配 置文件发送给所述用户的 ONT。
11、 根据权利要求 8所述的系统, 其特征在于, 所述管理系统根据 用户的业务信息生成相应的配置文件的格式包括: XML格式、 文本文 件格式 TXT或自定义格式的配置文件;
由所述 ONT解析 XML格式、 文本文件格式 TXT或自定义的格式 的配置文件, 得到与所述用户的业务信息相应的配置数据。
12、一种管理系统,通过光线路终端 OLT连接到一个或多个光网络 终端 ONT, 其特征在于, 包括:
生成模块, 用于根据用户的业务信息生成相应的配置文件的; 发送模块,用于将所述配置文件发送给所述 OLT, 由所述 OLT将所 述配置文件发送给光网络终端 ONT。
13、 根据权利要求 12所述的管理系统, 其特征在于:
所述管理系统中进一步包括:
设置模块, 用于设置与用户的 ONT类型相应的、 包含有公共配置 信息的公共配置文件模板;
所述生成模块进一步用于将用户的个性配置信息作为所述用户的 业务信息设置于相应的公共配置文件模板中, 生成与所述用户的业务信 息相应的配置文件。
14、 根据权利要求 12所述的管理系统, 其特征在于, 所述生成模 块和所述发送模块设置于设备管理系统 EMS 中或者所述生成模块和所 述发送模块分别设置于设备管理系统 EMS和其它服务设备中。
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