WO2016202098A1 - 一种以太网业务配置方法、装置及网管 - Google Patents

一种以太网业务配置方法、装置及网管 Download PDF

Info

Publication number
WO2016202098A1
WO2016202098A1 PCT/CN2016/080397 CN2016080397W WO2016202098A1 WO 2016202098 A1 WO2016202098 A1 WO 2016202098A1 CN 2016080397 W CN2016080397 W CN 2016080397W WO 2016202098 A1 WO2016202098 A1 WO 2016202098A1
Authority
WO
WIPO (PCT)
Prior art keywords
network element
data
configuration
service
service configuration
Prior art date
Application number
PCT/CN2016/080397
Other languages
English (en)
French (fr)
Inventor
赵永旺
Original Assignee
中兴通讯股份有限公司
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 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2016202098A1 publication Critical patent/WO2016202098A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/66Layer 2 routing, e.g. in Ethernet based MAN's
    • 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

Definitions

  • This application relates to, but is not limited to, the field of communication technology.
  • the multi-point to multi-point Ethernet service is mainly used in the access-aggregation configuration.
  • a large number of CE-side devices (Customer Edge, customer-side edge devices) and routers are aggregated on the aggregation ring.
  • Each access-side NE service needs to be configured with the primary and backup routes of the aggregation-side NEs.
  • Each route also needs to be configured with protection information and OAM (Operation Administration and Maintenance). ) Information, large amount of configuration data, and high complexity.
  • a large number of multi-point to multi-point service start-up scenarios in the project are configured to continuously perform services on the newly added access side network element.
  • the network management end-to-end multi-point to multi-point Ethernet service is presented and processed in the form of a whole service.
  • the client in the NMS queries and draws the current service details in a table and graph, including service information, pseudowires (multi-segment pseudowires), protection subnets, and OAM information.
  • service information including service information, pseudowires (multi-segment pseudowires), protection subnets, and OAM information.
  • pseudowires multi-segment pseudowires
  • protection subnets protection subnets
  • OAM information When adding a network element, configure a new NE, add a user-side port, and manually specify the detailed working route and protection routing information. Manually and hop-by-hop configure the primary and backup routing data, protection data, and OAM data of the newly added NE to the aggregation NE. Configure the pseudowire parameters, protection parameters, and OAM information for each route.
  • the client After the configuration of the new NE to the aggregation NE is complete, the client will include all NE data (including the newly added NEs).
  • the original network element is sent to the server in full; the server compares the service configuration data sent by the client, analyzes the newly added, modified, and deleted data and sends the data to the network element; the network element completes the data according to the received data.
  • Configuration The configuration method is complicated in operation. The amount of data that the network management system needs to display and process is relatively large. The data comparison analysis takes a long time and the efficiency is low. In the case of a network element error, the service status can only become damaged, and the entire service data will appear. Some network element data is normal, and some network element data is abnormal. For this situation, the user needs to query and check the service data one by one network element and perform manual recovery processing, which is complicated and error-prone.
  • This paper provides an Ethernet service configuration method, device and network management, which solves the problem that all the configuration data needs to be processed for the data processing and delivery in the related technology, resulting in not only a large amount of data to be processed, but also a long time for data comparison analysis. Inefficient problem.
  • An Ethernet service configuration method includes:
  • the configuration information in the incremental service configuration data is sent to the aggregation network element and the access network element for data configuration.
  • each new service corresponds to at least one access network element.
  • the at least one access network element includes an existing service access network element.
  • the sending the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration includes: sending the incremental service configuration data And the single-station service configuration data corresponding to the service network element is decomposed into the aggregation network element and the access network element; and the single-station service configuration data is sent to the corresponding Aggregation network element and access network element.
  • the method before the sending the single-station service configuration data to the corresponding aggregation network element and the access network element, the method further includes: pre-verifying the resource competition for the single-station service configuration data; After the single-station service configuration data is successfully verified, it is delivered.
  • the method further includes: receiving configuration data error information sent by the network element; and deleting the incremental service configuration data according to the configuration error information.
  • An Ethernet service configuration device includes:
  • the request receiving module is configured to: receive a configuration request of at least one new service sent by the user;
  • the route determining module is configured to: determine an access network element corresponding to each new service, and determine routing information of the access network element to the aggregation network element;
  • a data generating module configured to: import a configuration parameter template, and generate incremental service configuration data according to the routing information and the configuration parameter template;
  • the data processing module is configured to: send the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration.
  • each new service corresponds to at least one access network element.
  • the data processing module is configured to: send the incremental service configuration data to the aggregation network element and the access network element.
  • the data processing module includes: a data decomposition sub-module, configured to: decompose the incremental service configuration data into single-station service configuration data corresponding to the aggregation network element and the service network element; The data is sent to the sub-module, and is configured to send the single-station service configuration data to the corresponding aggregation network element and the access network element.
  • the data processing module further includes a pre-verification sub-module, configured to: perform pre-verification of resource competition for single-station service configuration data; and the data delivery sub-module is set to And sending the single-station service configuration data to the one-station service configuration data after the verification of the single-station service configuration data of the pre-verification sub-module is successful.
  • a pre-verification sub-module configured to: perform pre-verification of resource competition for single-station service configuration data
  • the data delivery sub-module is set to And sending the single-station service configuration data to the one-station service configuration data after the verification of the single-station service configuration data of the pre-verification sub-module is successful.
  • the data processing module further includes: an information receiving sub-module, configured to: receive configuration data error information sent by the network element; and a data deletion sub-module, configured to: report error information according to the configuration The incremental service configuration data is deleted.
  • An Ethernet service configuration network management system includes a client and a server.
  • the client is configured to: receive at least one new service configuration request sent by the user, and determine an access network element corresponding to each new service, according to the determined connection.
  • the inbound network element requests routing from the server, and the server is configured to: determine routing information according to the determined access network element and the aggregation network element, and send the routing information to the client; the client further sets And: generating a configuration parameter template, and generating incremental service configuration data according to the routing information and the configuration parameter template, and sending the generated incremental service configuration data to the
  • the server is configured to send the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration.
  • a computer readable storage medium storing computer executable instructions for performing the method of any of the above.
  • the method, device, and network management of the Ethernet service After receiving the configuration request of the new service, the method, device, and network management of the Ethernet service provided by the embodiment of the present invention determine the access network element corresponding to each new service, and determine the corresponding access network element to the convergence network.
  • the routing information of the element is imported into the configuration parameter template, and the incremental service configuration data is generated according to the routing information and the configuration parameter template; and the configuration information in the incremental service configuration data is sent to the aggregation network element and Access network elements for data configuration.
  • the solution not only simplifies the data processing amount, but also takes a short time and improves the configuration efficiency by processing the incremental configuration data for the new service.
  • FIG. 1 is a schematic flowchart 1 of an Ethernet service configuration method according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic diagram of a multi-point to multi-point Ethernet service model of a network element service to be added according to Embodiment 1 of the present invention
  • FIG. 3 is a schematic diagram of a multi-point to multi-point Ethernet service model after a newly added network element service is successfully delivered according to Embodiment 1 of the present invention
  • FIG. 4 is a second schematic flowchart of a method for configuring an Ethernet service according to Embodiment 1 of the present invention.
  • FIG. 5 is a schematic structural diagram of an apparatus for configuring an Ethernet service according to Embodiment 2 of the present invention.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the Ethernet service configuration method provided in this embodiment includes:
  • S101 Receive a configuration request of at least one new service sent by the user.
  • S102 Determine an access network element corresponding to each new service, and determine routing information of the access network element to the aggregation network element.
  • S103 Import a configuration parameter template, and generate incremental service configuration data according to the routing information and the configuration parameter template; including: importing a pseudowire (multi-segment pseudowire), a template for protecting a subnet and OAM information, and one-click Configure the service layer (pseudowire or multi-segment pseudowire) of the newly added service, and the incremental service configuration data for protecting the subnet and OAM information;
  • a pseudowire multi-segment pseudowire
  • a template for protecting a subnet and OAM information including: importing a pseudowire (multi-segment pseudowire), a template for protecting a subnet and OAM information, and one-click Configure the service layer (pseudowire or multi-segment pseudowire) of the newly added service, and the incremental service configuration data for protecting the subnet and OAM information;
  • S104 The configuration information in the incremental service configuration data is sent to the aggregation network element and the access network element for data configuration.
  • the primary aggregation network element and the backup aggregation network element are configured on the aggregation network element side, and the access side network element is configured to be dual-homed to the primary aggregation network element and the standby aggregation network.
  • the route from the access network to the primary aggregation network element and the access network to the backup aggregation network element needs to be determined at the same time; and before the configuration of the new service is performed
  • the basic information of the service is schematically mapped in the topology, and the original service data, pseudowire (or multi-segment pseudowire), protection subnet and OAM information are no longer rendered in the table area, and the visual interference of the user with a large amount of unconfigurable data is reduced. Mask out the possibility of users misuse of existing data.
  • the primary aggregation network element and the standby aggregation network element need to be determined according to the original service data.
  • the access network element corresponding to the determining the new service in the step S102 is determined according to the user's intention or the actual situation in the network element and the application scenario, and a new service corresponds to at least one connection.
  • the at least one access network element includes an existing service access network element, that is, in this embodiment, the network element configured by the new service may be configured in the original access network element, or
  • the configuration is performed by adding a new access network element, and determining the routing information of the access network element to the aggregation network element includes: constructing a manual route to the access network element to the aggregation network element, or according to the determined access network element
  • the aggregation network element performs route calculation. When configuring the route, you need to configure the protection subnet and OAM information.
  • the configuration information in the incremental service configuration data is sent to the aggregation network element and the access network element for data configuration, and the incremental service configuration data is sent to the aggregation network.
  • the access network element that is, after the incremental service configuration data is obtained, the data is directly sent to the corresponding access network element, and the access network element performs data configuration according to the data received by the network element.
  • the incoming network element needs to analyze the data and obtain its own configuration information before it performs data matching.
  • the sending the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration including: decomposing the incremental service configuration data into an aggregation network element corresponding to the service network element.
  • the single-station service configuration data is sent to the corresponding aggregation network element and the access network element in the single-station service configuration; in this embodiment, the incremental data is decomposed on the server side to obtain the corresponding service
  • the corresponding service configuration data is sent for each access network element and the aggregation network element, so that the network element side only needs to directly receive the service configuration data.
  • the service configuration data to be sent is configured; or the service configuration data that is processed by each of the access network elements and the aggregation network element is delivered, and only the corresponding data is selected for configuration on the network element side;
  • the method further includes: pre-verifying the resource competition for the single-station service configuration data; and verifying the single-station service configuration data After the success is successful, the pre-verification of the resource competition for the service configuration data is mainly to prevent the resources from being reused and the communication to be confusing after the data is configured in the network element. Before the service configuration data is sent, the resource competition pre-verification needs to be performed.
  • the pre-verification of the resource competition includes the verification of the resources between the services that need to be configured, and also includes The verification of the resources of the service configured in the NE, and only if the resource does not have a competitive relationship, the pre-verification succeeds, so that the configuration data is delivered.
  • the method further includes receiving configuration data error information sent by the network element, and deleting the incremental service configuration data according to the configuration error information.
  • the server will promptly report the error information to the user, and automatically roll back the service configuration data that has been successfully delivered by the network element to ensure that the original service is not affected by the current configuration operation. Impact.
  • the client in the network management system receives the configuration request of the at least one new service sent by the user, and determines the information determined by the access network element corresponding to each new service to the server; the server receives the information according to the The information of the access network element determines the routing information of the access network element to the aggregation network element, and sends the determined routing information to the client; the client imports the configuration parameter template, and according to the routing information and the The configuration parameter template generates incremental service configuration data, and sends the incremental service configuration data to the server, and performs data processing on the incremental service configuration data on the server. Then, the configuration information obtained is sent to the aggregation network element and the access network element for data configuration.
  • the embodiment of the invention further provides a computer readable storage medium storing computer executable instructions for executing the foregoing Ethernet service configuration method.
  • a multi-point to multi-point Ethernet service is used.
  • the A and B network elements are the primary and backup aggregation network elements respectively.
  • the C, D, E, and F are the access side network elements respectively.
  • the method is aggregated to the A and B network elements.
  • three network elements of G, H, and I are added and a new service is added.
  • the new service is configured in four network elements: C, G, H, and I.
  • Figure 3 shows. There are two services on the C network element, and one service on each other network element. Referring to FIG. 4, the configuration method includes:
  • S401 Query detailed information of the original service, including service parameters, pseudowire (or multi-segment pseudowire) parameters, protection subnet parameters, and OAM information;
  • S402 The queried service route and node information are drawn on the client in a topology manner
  • S403 The detailed information of the original service is used to analyze that the aggregation node is the A and B network elements, where A is the primary aggregation network element, and B is the standby aggregation network element.
  • S404 Select a C, G, H, and I network element as the access side network element.
  • S405 Calculate the route of the selected access side network element to the aggregation network element or manually set the route of the access side network element to the aggregation network element.
  • the method includes: requesting calculation between C, G, H, and I and the A and B network elements. If the route is determined to be successful, go to S407; if the route is determined to be successful, the active/standby route or the manual route between the C, G, H, and I and the A and B network elements is manually established;
  • S406 The client table draws routing information and protects subnet information; and executes S408;
  • S407 prompting error information, the user adjusts related parameters according to the prompt information; returns to execute S405;
  • S408 The pseudo-line (or multi-segment pseudo-line), the protection sub-network, and the OAM data are configured by one-click configuration by importing a suitable service parameter template, and the new service configuration data is obtained, and the newly added service configuration data is packaged and sent to the server; In this step, a single piece of data can be manually configured when necessary;
  • the server decomposes the new service configuration data in the end-to-end format into the number of single-station service configurations.
  • the service data of the single-station service mainly includes the service data of the newly added network element and the service data of the primary aggregation network element and the backup aggregation network element; the service data of the aggregation network element mainly includes part of the data that needs to be modified;
  • S410 Perform resource resource verification on the single-station service configuration data obtained by the decomposition, if the verification is successful, go to S412; if the verification fails, go to S411;
  • step S411 return error prompt information, adjust parameter configuration, and then proceeds to step S408;
  • S412 The server sends the single-station service data to the network element.
  • S413 Determine whether the network element can accurately generate configuration data; if yes, the configuration is successful; if not, go to S414.
  • S415 The server sends a delete command to the network element configuration data that has been delivered according to the error information, automatically rolls back the generated configuration data, and returns the network element error information to the client.
  • the Ethernet service configuration method of the solution effectively reduces the interference of a large amount of non-configurable data on the user operation on the client, incrementally processes the newly released service data of the user, and reduces the data volume transmission in the entire configuration process.
  • the service data pre-verification module is deployed to pre-verify the final data before the network element is delivered, which ensures the correctness of the service configuration.
  • the service data of this operation is automatically rolled back, thereby ensuring the correctness and consistency of the original service under abnormal conditions.
  • the overall configuration is convenient and smooth, easy to operate and secure. high.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the Ethernet service configuration apparatus 50 includes: a request receiving module 501, a route determining module 502, a data generating module 503, and a data processing module 504.
  • the request receiving module 501 is configured to receive a configuration request of the at least one new service sent by the user;
  • the route determining module 502 is configured to: determine an access network element corresponding to each new service, and determine routing information of the access network element to the aggregation network element;
  • the data generating module 503 is configured to: import a configuration parameter template, and generate an incremental service configuration number according to the routing information and the configuration parameter template.
  • the data processing module 504 is configured to: send the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration.
  • the device is configured to configure new services on the Ethernet, which reduces the amount of data processing, and is convenient and quick to configure and improve configuration efficiency.
  • Each new service corresponds to at least one access network element; the at least one access network element includes an existing service access network element.
  • the data processing module 504 is configured to: send the incremental service configuration data to the aggregation network element and the access network element.
  • the data processing module includes: a data decomposition sub-module, configured to: decompose the incremental service configuration data into single-station service configuration data corresponding to the aggregation network element and the service network element; and send the data sub-module to And sending the single-station service configuration data to the corresponding aggregation network element and the access network element.
  • a data decomposition sub-module configured to: decompose the incremental service configuration data into single-station service configuration data corresponding to the aggregation network element and the service network element; and send the data sub-module to And sending the single-station service configuration data to the corresponding aggregation network element and the access network element.
  • the data processing module 504 further includes: a pre-verification sub-module, configured to: perform pre-verification of resource competition for single-station service configuration data; and the data delivery sub-module is set to: when the pre- After the verification of the single-station service configuration data of the verification sub-module is successful, the single-station service configuration data is sent.
  • a pre-verification sub-module configured to: perform pre-verification of resource competition for single-station service configuration data
  • the data delivery sub-module is set to: when the pre- After the verification of the single-station service configuration data of the verification sub-module is successful, the single-station service configuration data is sent.
  • the data processing module 504 further includes: an information receiving sub-module, configured to: receive configuration data error information sent by the network element; and the data deletion sub-module is configured to: perform the incremental service configuration data according to the configuration error information delete.
  • the embodiment of the present invention further provides an Ethernet service configuration network management, including a client and a server, where the client is configured to: receive at least one new service configuration request sent by the user, and determine access corresponding to each new service.
  • the network element requests routing from the server according to the determined access network element, and the server is configured to: determine routing information according to the determined access network element and the aggregation network element, and send the routing information to the client.
  • the client is further configured to: import a configuration parameter template, and generate incremental service configuration data according to the routing information and the configuration parameter template, and send the generated incremental service configuration data to the server;
  • the server is further configured to: send the configuration information in the incremental service configuration data to the aggregation network element and the access network element for data configuration.
  • the computer program can be implemented in a computer readable storage medium, the computer program being executed on a corresponding hardware platform (such as a system, device, device, device, etc.), when executed, including One or a combination of the steps of the method embodiments.
  • all or part of the steps of the above embodiments may also be implemented by using an integrated circuit. These steps may be separately fabricated into individual integrated circuit modules, or multiple modules or steps may be fabricated into a single integrated circuit module. achieve.
  • the devices/function modules/functional units in the above embodiments may be implemented by a general-purpose computing device, which may be centralized on a single computing device or distributed over a network of multiple computing devices.
  • the device/function module/functional unit in the above embodiment When the device/function module/functional unit in the above embodiment is implemented in the form of a software function module and sold or used as a stand-alone product, it can be stored in a computer readable storage medium.
  • the above mentioned computer readable storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • the embodiment of the present invention reduces the interference of a large amount of non-configurable data on user operations by processing the incremental configuration data for the new service, incrementally processes the newly released service data of the user, and reduces the amount of data in the entire configuration process. Delivery and analysis improve configuration efficiency.

Abstract

本文公布一种以太网业务配置方法、装置及网管,所述以太网业务配置方法包括:接收用户发送的至少一个新业务的配置请求;确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。

Description

一种以太网业务配置方法、装置及网管 技术领域
本申请涉及但不限于通信技术领域。
背景技术
多点到多点以太网业务主要应用于接入-汇聚式配置,大量的CE侧设备(Customer Edge,客户侧边缘设备)、路由器汇聚到汇聚环上。接入侧网元一般数量较多,每个接入侧网元业务均需要配置到汇聚侧网元的主备路由,每条路由还需要配置保护信息、OAM(Operation Administration and Maintenance,操作管理维护)信息,配置数据量大,复杂程度高。工程上大量的多点到多点业务开站场景均是对该业务不断地在新增接入侧网元中进行业务的配置。
相关技术中,网管端到端对于多点到多点以太网业务是以一整条业务的形态来展现和处理的。在以太网需要新增业务时,网管中的客户端查询并以表格和图形方式绘制当前业务详细信息,包括业务信息、伪线(多段伪线)、保护子网及OAM信息;当网络中新增网元时,配置新网元,增加用户侧端口,手工指定详细的工作路由和保护路由信息;手工逐跳配置新增网元到汇聚网元的主备路由数据、保护数据及OAM数据,对每条路由进行伪线参数、保护参数及OAM信息配置;当新增网元到汇聚网元的配置完成后,客户端会将该业务涉及到的所有网元数据(包括新增网元及原有网元)进行全量发送给服务端;服务端将客户端发送的业务配置数据进行比较,分析出新增、修改、删除的数据并下发给网元;网元根据接收到的数据完成配置。该配置方法操作复杂,网管需要展现和处理的数据量比较大,数据比较分析耗时长,效率低,而且在网元报错的情况下,业务状态只能变为残损,整条业务的数据会出现部分网元数据正常,部分网元数据异常的情况,对于这种情况,用户需要逐个网元查询并核对业务数据并进行手工恢复处理,操作复杂而易出错。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本文提供了一种以太网业务配置方法、装置及网管,解决了相关技术中进行数据的处理及下发时都需要针对全部配置数据,导致不仅处理的数据量比较大,数据比较分析耗时长,效率低的问题。
一种以太网业务配置方法,包括:
接收用户发送的至少一个新业务的配置请求;
确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;
导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;
将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
在本发明的一种实施方式中,每个新业务对应至少一个接入网元。
在本发明的一种实施方式中,所述至少一个接入网元包括已有业务接入网元。
在本发明的一种实施方式中,将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置包括:将所述增量业务配置数据下发给所述汇聚网元及接入网元;或者将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;将所述单站业务配置数据下发给对应的汇聚网元及接入网元。
在本发明的一种实施方式中,将所述单站业务配置数据下发给对应的汇聚网元及接入网元之前还包括:对单站业务配置数据进行资源竞争的预校验;并当所述单站业务配置数据校验成功后将其进行下发。
在本发明的一种实施方式中,还包括:接收网元发送的配置数据报错信息;并根据所述配置报错信息将所述增量业务配置数据进行删除。
一种以太网业务配置装置,包括:
请求接收模块,设置为:接收用户发送的至少一个新业务的配置请求;
路由确定模块,设置为:确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;
数据生成模块,设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;
数据处理模块,设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
在本发明的一种实施方式中,每个新业务对应至少一个接入网元。
在本发明的一种实施方式中,所述数据处理模块设置为:将所述增量业务配置数据下发给所述汇聚网元及接入网元。
在本发明的一种实施方式中,所述数据处理模块包括:数据分解子模块,设置为:将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;数据下发子模块,设置为:将所述单站业务配置数据下发给对应的汇聚网元及接入网元。
在本发明的一种实施方式中,所述数据处理模块还包括预校验子模块,设置为:对单站业务配置数据进行资源竞争的预校验;所述数据下发子模块是设置为:当所述预校验子模块的单站业务配置数据校验成功后将所述单站业务配置数据进行下发。
在本发明的一种实施方式中,所述数据处理模块还包括:信息接收子模块,设置为:接收网元发送的配置数据报错信息;数据删除子模块,设置为:根据所述配置报错信息将所述增量业务配置数据进行删除。
一种以太网业务配置网管,包括客户端及服务端,所述客户端设置为:接收用户发送的至少一个新业务配置请求,并确定每个新业务对应的接入网元,根据确定的接入网元向所述服务端请求路由,所述服务端设置为:根据确定的接入网元及汇聚网元确定路由信息,并将所述路由信息发送给客户端;所述客户端还设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据,将生成的增量业务配置数据发送给所 述服务端;所述服务端还设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述任一项的方法。
本发明实施例提供的以太网业务配置方法、装置及网管,在接收到新业务的配置请求后,通过确定每个新业务对应的接入网元,并确定对应的接入网元到汇聚网元的路由信息,导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。本方案通过针对新业务进行的增量配置数据的处理,不仅简化了数据处理量,且耗时时间短,提高了配置效率。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1本发明实施例一提供的以太网业务配置方法的流程示意图一;
图2本发明实施例一提供的待新增网元业务的多点到多点以太网业务模型示意图;
图3为本发明实施例一提供的新增网元业务发布成功之后的多点到多点以太网业务模型示意图;
图4为本发明实施例一提供的以太网业务配置方法的流程示意图二;
图5为本发明实施例二提供的以太网业务配置装置结构示意图。
本发明的实施方式
下面结合附图对本发明的实施方式进行说明。
实施例一:
请参考图1所示,本实施例提供的以太网业务配置方法包括:
S101:接收用户发送的至少一个新业务的配置请求;
S102:确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;
S103:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;包括:通过导入伪线(多段伪线)、保护子网及OAM信息的模板,一键式配置好新增业务的服务层(伪线或多段伪线),以及保护子网及OAM信息的增量业务配置数据;
S104:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
在以太网的多点到多点的业务配置过程中,一般在汇聚网元侧配置包括主汇聚网元及备汇聚网元,接入侧网元配置双归保护到主汇聚网元及备汇聚网元中,因此,在确定接入网到汇聚网元的路由时,需要同时确定接入网到主汇聚网元及接入网到备汇聚网元的路由;且在进行新业务的配置之前,在拓扑上示意性绘制业务基本信息,不再在表格区渲染原有业务数据、伪线(或多段伪线)、保护子网以及OAM信息,减少了大量不可配置数据对用户的视觉干扰同时屏蔽掉用户对有原有数据的误操作的可能性。此外,还需要根据原有业务数据判定主汇聚网元及备汇聚网元。
针对步骤S102中的确定每个新业务对应的接入网元包括:根据用户意愿或网元中的实际情况及应用场景确定每个新业务对应的接入网元,一个新业务对应至少一个接入网元;所述至少一个接入网元包括已有业务接入网元,即在本实施例中,所述新业务配置的网元可以在原有接入网元中进行配置,也可以在新增接入网元中进行配置;确定所述接入网元到汇聚网元的路由信息包括:对接入网元到汇聚网元进行手工路由的搭建,或者根据确定的接入网元到汇聚网元进行路由计算,在进行路由的配置时,同时需要配置保护子网及OAM信息。
所述步骤S104中将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置包括:将所述增量业务配置数据下发给所述汇聚网元及接入网元;即在得到所述增量业务配置数据后,直接将其发给对应的接入网元,接入网元再根据其接收的数据进行数据的配置,此时,接入网元需要通过对数据的分析,获取其自身的配置信息后,才其进行数据的配 置;
或者,将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置包括:将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;将所述单站业务配置数据下发给对应的汇聚网元及接入网元;在本实施例中,在服务端对增量数据进行分解,得到该业务对应的每个接入网元及汇聚网元的业务配置数据后,再将针对每个接入网元及汇聚网元将对应的业务配置数据进行发送,这样,在网元侧只需直接将其接收到的业务配置数据进行配置;或者,对每个接入网元及汇聚网元都将其进行处理的业务配置数据进行下发,在网元侧只需选择其对应的数据进行配置即可;
将所述单站业务配置数据下发给对应的汇聚网元及接入网元之前还包括:对单站业务配置数据进行资源竞争的预校验;并当所述单站业务配置数据校验成功后将其进行下发;本实施例需要对业务配置数据进行资源竞争的预校验主要是为了在防止在网元进行数据的配置后出现资源被重复利用,通信出现混乱的情况出现,所以,在对业务配置数据进行下发前需要先对其进行资源竞争的预校验,所述资源竞争的预校验包括对当前需要配置的业务之间的资源的校验,也包括也已有网元中配置的业务的资源的校验,且只有在资源不存在竞争关系的情况下,其预校验成功,从而将配置数据进行下发。
在本以太网业务配置方法中,还包括接收网元发送的配置数据报错信息;并根据所述配置报错信息将所述增量业务配置数据进行删除。其中,当网元应答报错时,服务端将详细报错信息提示给用户外,还将本次操作已经下发网元成功的业务配置数据自动回滚掉,保证原有业务不受本次配置操作的影响。
在本实施例中,网管中的客户端接收用户发送的至少一个新业务的配置请求;并确定每个新业务对应的接入网元后将确定的信息发送给服务端;服务端根据其接收的接入网元的信息确定述接入网元到汇聚网元的路由信息,并将其确定的路由信息发送给客户端;客户端通过导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据,并将所述增量业务配置数据发送给服务端,在服务端上对该增量业务配置数据进行数据理 后,将其得到的中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
本发明实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述以太网业务配置方法。
如图2所示为一条多点到多点的以太网业务,A、B网元分别为主、备汇聚网元,C、D、E、F分别为接入侧网元,通过双归保护的方式汇聚到A、B网元上。在本实施例中,新增G、H、I三个网元并新增一个新业务,该新业务将配置在C、G、H、I四个网元中,业务配置完成之后的形态如图3所示。C网元上有两条业务,其它网元上各有一条业务。请参见图4,其配置方法包括:
S401:查询原有业务的详细信息,包括业务参数、伪线(或多段伪线)参数,保护子网参数以及OAM信息;
S402:将查询到的业务路由及节点信息以拓扑的形式绘制在客户端上;
S403:通过原有业务的详细信息,分析出汇聚节点为A、B网元,其中A为主汇聚网元,B为备汇聚网元;
S404:选择C、G、H、I网元为接入侧网元;
S405:计算选择的接入侧网元到汇聚网元的路由或手工搭建接入侧网元到汇聚网元的路由;包括:请求计算C、G、H、I与A、B网元之间的主备路由或者手工搭建C、G、H、I与A、B网元之间的主备路由;若路由确定成功,则转S406;若路由确定失败,则转S407;
S406:客户端表格绘制路由信息及保护子网信息;执行S408;
S407:提示错误信息,用户根据提示信息调整相关参数;返回执行S405;
S408:对伪线(或多段伪线)、保护子网、OAM数据通过导入合适的业务参数模板一键式配置,得到新增业务配置数据,将新增业务配置数据打包下发到服务端;在本步骤中,在必要时候,可以对单条数据进行手工配置;
S409:服务端将端到端格式的新增业务配置数据分解成单站业务配置数 据;所述单站业务配置数据主要包括新增网元的业务数据以及主汇聚网元和备汇聚网元的业务数据;所述汇聚网元的业务数据主要是包括需要修改的部分数据;
S410:对分解得到的单站业务配置数据进行资源竞争性校验,若校验成功,则转S412;若校验失败,则转S411;
S411:返回错误提示信息,调整参数配置,再转入步骤S408;
S412:服务端将单站业务数据下发到网元;
S413:判断网元是否能准确生成配置数据;若是,则配置成功;若否,则转S414。
S414:网元向服务端返回报错信息;
S415:服务端根据报错信息对已经下发的网元配置数据下发删除命令,自动回滚掉已经生成的配置数据,并将网元错误信息返回给客户端。
采用本方案的以太网业务配置方法有效地在客户端上减少了大量不可配置数据对用户操作的干扰,增量式地处理了用户新发布业务数据,减少了整个配置流程中数据量的传递和分析,并通过计算出接入侧网元到汇聚侧网元的主备路由数据,一键式导入参数模板的方式减少了用户复杂而又繁冗的配置操作。并且部署了业务数据预校验模块来在下发网元之前对最终数据进行预校验,最大程度上保证了业务配置的正确性。在网元业务配置失败的情况下,通过将本次操作的业务数据自动回滚掉,从而保证了异常情况下原有业务的正确性和一致性,整体配置便捷流畅,易操作而又安全性高。
实施例二:
请参考图5所示,本实施例提供的以太网业务配置装置50包括:请求接收模块501、路由确定模块502、数据生成模块503及数据处理模块504;所述请求接收模块501设置为:接收用户发送的至少一个新业务的配置请求;所述路由确定模块502设置为:确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;所述数据生成模块503设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数 据;所述数据处理模块504设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。通过本装置对以太网中新增业务进行配置,减少了数据处理量,且配置方便快捷,提高配置效率。
每个新业务对应至少一个接入网元;所述至少一个接入网元包括已有业务接入网元。
可选地,所述数据处理模块504是设置为:将所述增量业务配置数据下发给所述汇聚网元及接入网元。
或者,所述数据处理模块包括:数据分解子模块,设置为:将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;数据下发子模块,设置为:将所述单站业务配置数据下发给对应的汇聚网元及接入网元。
可选地,所述数据处理模块504还包括预校验子模块,设置为:对单站业务配置数据进行资源竞争的预校验;所述数据下发子模块是设置为:当所述预校验子模块的单站业务配置数据校验成功后将所述单站业务配置数据进行下发
所述数据处理模块504还包括:信息接收子模块,设置为:接收网元发送的配置数据报错信息;数据删除子模块,设置为:根据所述配置报错信息将所述增量业务配置数据进行删除。
本发明实施例还提供了一种以太网业务配置网管,包括客户端及服务端,所述客户端设置为:接收用户发送的至少一个新业务配置请求,并确定每个新业务对应的接入网元,根据确定的接入网元向所述服务端请求路由;所述服务端设置为:根据确定的接入网元及汇聚网元确定路由信息,并将所述路由信息发送给客户端;所述客户端还设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据,将生成的增量业务配置数据发送给所述服务端;所述服务端还设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
本领域普通技术人员可以理解上述实施例的全部或部分步骤可以使用计 算机程序流程来实现,所述计算机程序可以存储于一计算机可读存储介质中,所述计算机程序在相应的硬件平台上(如系统、设备、装置、器件等)执行,在执行时,包括方法实施例的步骤之一或其组合。
可选地,上述实施例的全部或部分步骤也可以使用集成电路来实现,这些步骤可以被分别制作成一个个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。
上述实施例中的装置/功能模块/功能单元可以采用通用的计算装置来实现,它们可以集中在单个的计算装置上,也可以分布在多个计算装置所组成的网络上。
上述实施例中的装置/功能模块/功能单元以软件功能模块的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。上述提到的计算机可读取存储介质可以是只读存储器,磁盘或光盘等。
以上所述,仅为本发明的实施例而已,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、等同替换和改进等,均应包含在本发明的保护范围之内。
工业实用性
本发明实施例通过针对新业务进行的增量配置数据的处理,减少了大量不可配置数据对用户操作的干扰,增量式地处理了用户新发布业务数据,减少了整个配置流程中数据量的传递和分析,提高了配置效率。

Claims (13)

  1. 一种以太网业务配置方法,包括:
    接收用户发送的至少一个新业务的配置请求;
    确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;
    导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;
    将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
  2. 如权利要求1所述的以太网业务配置方法,其中,每个新业务对应至少一个接入网元。
  3. 如权利要求2所述的以太网业务配置方法,其中,所述至少一个接入网元包括已有业务接入网元。
  4. 如权利要求1所述的以太网业务配置方法,其中,将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置包括:将所述增量业务配置数据下发给所述汇聚网元及接入网元;或者将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;将所述单站业务配置数据下发给对应的汇聚网元及接入网元。
  5. 如权利要求4所述的以太网业务配置方法,其中,将所述单站业务配置数据下发给对应的汇聚网元及接入网元之前还包括:对单站业务配置数据进行资源竞争的预校验;并当所述单站业务配置数据校验成功后将其进行下发。
  6. 如权利要求1-5任一项所述的以太网业务配置方法,还包括:接收网元发送的配置数据报错信息;并根据所述配置报错信息将所述增量业务配置数据进行删除。
  7. 一种以太网业务配置装置,包括:
    请求接收模块,设置为:接收用户发送的至少一个新业务的配置请求;
    路由确定模块,设置为:确定每个新业务对应的接入网元,并确定所述接入网元到汇聚网元的路由信息;
    数据生成模块,设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据;
    数据处理模块,设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
  8. 如权利要求7所述的以太网业务配置装置,其中,每个新业务对应至少一个接入网元。
  9. 如权利要求7所述的以太网业务配置装置,其中,所述数据处理模块是设置为:将所述增量业务配置数据下发给所述汇聚网元及接入网元。
  10. 如权利要求7所述的以太网业务配置装置,其中,所述数据处理模块包括:数据分解子模块,设置为:将所述增量业务配置数据分解成汇聚网元与业务网元对应的单站业务配置数据;数据下发子模块,设置为:将所述单站业务配置数据下发给对应的汇聚网元及接入网元。
  11. 如权利要10所述的以太网业务配置装置,其中,所述数据处理模块还包括预校验子模块,设置为:对单站业务配置数据进行资源竞争的预校验;所述数据下发子模块是设置为:当所述预校验子模块的单站业务配置数据校验成功后将所述单站业务配置数据进行下发。
  12. 如权利要求7-11任一项所述的以太网业务配置装置,其中,所述数据处理模块还包括:信息接收子模块,设置为:接收网元发送的配置数据报错信息;数据删除子模块,设置为:根据所述配置报错信息将所述增量业务配置数据进行删除。
  13. 一种以太网业务配置网管,包括客户端及服务端,所述客户端设置为:接收用户发送的至少一个新业务配置请求,并确定每个新业务对应的接入网元,根据确定的接入网元向所述服务端请求路由;所述服务端设置为:根据确定的接入网元及汇聚网元确定路由信息,并将所述路由信息发送给客户端;所述客户端还设置为:导入配置参数模板,并根据所述路由信息及所述配置参数模板生成增量业务配置数据,将生成的增量业务配置数据发送给 所述服务端;所述服务端还设置为:将所述增量业务配置数据中的配置信息下发给所述汇聚网元及接入网元进行数据配置。
PCT/CN2016/080397 2015-06-16 2016-04-27 一种以太网业务配置方法、装置及网管 WO2016202098A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201510332747.1A CN106330477A (zh) 2015-06-16 2015-06-16 一种以太网业务配置方法、装置及网管
CN201510332747.1 2015-06-16

Publications (1)

Publication Number Publication Date
WO2016202098A1 true WO2016202098A1 (zh) 2016-12-22

Family

ID=57544842

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/080397 WO2016202098A1 (zh) 2015-06-16 2016-04-27 一种以太网业务配置方法、装置及网管

Country Status (2)

Country Link
CN (1) CN106330477A (zh)
WO (1) WO2016202098A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111585809A (zh) * 2020-04-29 2020-08-25 北京润通丰华科技有限公司 一种利用大数据统计分析进行网络设备配置稽核的方法
CN113839792A (zh) * 2020-06-08 2021-12-24 奇安信科技集团股份有限公司 一种入网配置方法、装置、计算机设备及可读存储介质

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114500276A (zh) * 2020-11-13 2022-05-13 中兴通讯股份有限公司 数据处理方法、装置、系统和计算机可读存储介质

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040172412A1 (en) * 2002-07-19 2004-09-02 Kirby Files Automated configuration of packet routed networks
US20060294584A1 (en) * 2005-06-22 2006-12-28 Netdevices, Inc. Auto-Configuration of Network Services Required to Support Operation of Dependent Network Services
CN101616054A (zh) * 2008-06-27 2009-12-30 华为技术有限公司 一种旁路处理方法、装置和系统及路由器
CN104579775A (zh) * 2015-01-05 2015-04-29 国家电网公司 一种电力通信网光纤及光传输设备资源配置方法及设备

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101667972B (zh) * 2009-10-19 2011-09-28 国网信息通信有限公司 电力通信网络业务路由方法及设备
EP2993821B1 (en) * 2013-04-28 2018-11-21 Huawei Technologies Co., Ltd. Stream classifier, service routing trigger, and message processing method and system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040172412A1 (en) * 2002-07-19 2004-09-02 Kirby Files Automated configuration of packet routed networks
US20060294584A1 (en) * 2005-06-22 2006-12-28 Netdevices, Inc. Auto-Configuration of Network Services Required to Support Operation of Dependent Network Services
CN101616054A (zh) * 2008-06-27 2009-12-30 华为技术有限公司 一种旁路处理方法、装置和系统及路由器
CN104579775A (zh) * 2015-01-05 2015-04-29 国家电网公司 一种电力通信网光纤及光传输设备资源配置方法及设备

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111585809A (zh) * 2020-04-29 2020-08-25 北京润通丰华科技有限公司 一种利用大数据统计分析进行网络设备配置稽核的方法
CN113839792A (zh) * 2020-06-08 2021-12-24 奇安信科技集团股份有限公司 一种入网配置方法、装置、计算机设备及可读存储介质
CN113839792B (zh) * 2020-06-08 2023-10-03 奇安信科技集团股份有限公司 一种入网配置方法、装置、计算机设备及可读存储介质

Also Published As

Publication number Publication date
CN106330477A (zh) 2017-01-11

Similar Documents

Publication Publication Date Title
CN110138575B (zh) 网络切片创建方法、系统、网络设备及存储介质
US10116499B2 (en) Interconnection platform for real-time configuration and management of a cloud-based services exchange
US20170163502A1 (en) Classifier based graph rendering for visualization of a telecommunications network topology
US11245573B1 (en) Port verification for customer interconnection in a data center
WO2016202098A1 (zh) 一种以太网业务配置方法、装置及网管
WO2018010555A1 (zh) 一种北向接口lte业务自动配置方法、北向接口装置及存储介质
CN102427445B (zh) It仿真基础架构离线合规性安全审计方法
US10225159B2 (en) Dynamic graph-based structure for representing a communications network
US11038777B2 (en) Method and apparatus for deploying service in virtualized network
CN110661670A (zh) 一种网络设备配置管理方法及装置
CN105744555B (zh) 一种终端维护方法、维护装置以及网管服务器
US10454909B2 (en) Key negotiation method and system, network entity and computer storage medium
CN106506182B (zh) 一种配置ptn业务的方法及系统
US20210264051A1 (en) Blockchain system, blockchain management apparatus, network control apparatus, method and program
WO2017206690A1 (zh) 光网络单元配置方法、装置及光线路终端
CN106612193A (zh) 在虚拟化技术下的网络开局配置方法及装置
US9191390B1 (en) System, method, and computer program for managing user access credentials in a computer network
CN106612207B (zh) 以太网设备rstp信息的管控方法和装置
CN111090853B (zh) 账户管理方法、系统、电子设备及存储介质
CN102724076B (zh) 北向全参数处理方法及装置
CN114513419A (zh) 安全策略配置方法及系统
CN103970860B (zh) 一种数据处理的方法、装置及系统
CN102630087A (zh) 异构处理方法及装置
CN112822054A (zh) 一种多个相关设备利用同一网元的远程管理方法及系统
WO2016095391A1 (zh) 带宽资源的调整方法、服务端及调整设备

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16810839

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16810839

Country of ref document: EP

Kind code of ref document: A1