WO2017049941A1 - 一种业务保护变迁方法及装置 - Google Patents

一种业务保护变迁方法及装置 Download PDF

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Publication number
WO2017049941A1
WO2017049941A1 PCT/CN2016/083669 CN2016083669W WO2017049941A1 WO 2017049941 A1 WO2017049941 A1 WO 2017049941A1 CN 2016083669 W CN2016083669 W CN 2016083669W WO 2017049941 A1 WO2017049941 A1 WO 2017049941A1
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Prior art keywords
protection
transition
service
changed
configuration data
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PCT/CN2016/083669
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English (en)
French (fr)
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朱玉环
吴秋荣
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中兴通讯股份有限公司
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Publication of WO2017049941A1 publication Critical patent/WO2017049941A1/zh

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    • 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
    • H04L41/0816Configuration setting characterised by the conditions triggering a change of settings the condition being an adaptation, e.g. in response to network events
    • 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

Definitions

  • the present application relates to, but is not limited to, the field of communications technologies, and in particular, to a service protection transition method and apparatus.
  • the existing network inventory business of the project needs to be batch-modified for certain specific networking scenarios due to the change of the solution and the network adjustment prototype.
  • the transformation scenario such as the service from ordinary dual-homing protection to dual-node interconnection DNI dual-homing protection, or from unprotected single to DNI dual-homing protection.
  • not all services support the type of protection after the transition.
  • the main purpose of the embodiments of the present invention is to provide a service protection transition method and device, which can improve the efficiency of service protection transition.
  • a service protection transition method comprising:
  • the transition scenario corresponding to the protection transition instruction is obtained.
  • Each of the protection channels of the to-be-transformed service is changed in batches according to a preset granularity according to configuration data corresponding to each of the to-be-changed services.
  • the determining, according to the transition scenario, the current to-be-changed service includes:
  • variable mobility service corresponding to the selection instruction is used as the to-be-transformed service.
  • the method further includes: before the protection channel of each of the to-be-changed services is changed in batches according to the configuration data corresponding to each of the to-be-changed services, the target protection of the current protection transition is performed.
  • the channel performs bandwidth verification operations.
  • the protection channel of each of the to-be-transformed services is changed in batches according to the preset granularity according to the configuration data corresponding to each of the to-be-changed services.
  • the protection channel for each of the to-be-transformed services to be changed in batches according to the configuration data corresponding to each of the to-be-changed services includes:
  • a preset number of configuration data is extracted from the configuration data corresponding to each of the to-be-changed services.
  • the protection channel of the to-be-transformed service is changed according to the extracted configuration data.
  • the protection transition of each of the to-be-changed services is completed. And deleting the original protection channel of each of the to-be-changed services.
  • a service protection transition device comprising:
  • the acquiring module is configured to acquire a transition scenario corresponding to the protection transition instruction when the protection transition instruction is detected.
  • the allocation module is configured to determine a current to-be-changed service based on the transition scenario, and allocate corresponding configuration data for each of the to-be-transformed services.
  • the transition module is configured to dynamically change the protection channel of each of the to-be-transformed services according to the configuration data corresponding to each of the to-be-changed services.
  • the determining, by the allocation module, the current to-be-changed service based on the transition scenario includes: displaying a variable mobility service corresponding to the transition scenario, where the user selects a service that needs to be protected from the transition;
  • the variable migration service corresponding to the selection instruction is used as the to-be-changed service.
  • the apparatus further includes a verification module, configured to be based on each of the transition modules
  • the configuration data corresponding to the transition service is described, and the bandwidth protection operation is performed on the target protection channel of the current protection transition before the protection channel of each of the to-be-changed services is changed in batches according to the preset granularity;
  • the transition module is further configured to, when the bandwidth check is passed, dynamically change the protection channel of each to-be-transformed service according to the preset granularity according to the configuration data corresponding to each of the to-be-changed services.
  • the transition module performs, according to the configuration data corresponding to the to-be-changed service, the protection channel of each of the to-be-changed services in a preset granularity, including: corresponding to each of the to-be-changed services Extracting, by the configuration data, a preset number of configuration data; each time the configuration data is extracted, the protection channel of the to-be-changed service is changed according to the extracted configuration data; when the current transition fails, the configuration data is stopped from being extracted. And the protection transition operation based on the configuration data extracted at the current time is rolled back; when the current transition is successful, the other configuration data is continuously extracted in order.
  • the service protection transition device further includes a deletion module, configured to, in the change module, manually change the protection of each of the to-be-changed services according to the configuration data corresponding to each to-be-changed service.
  • the transition module completes the protection transition of each of the to-be-changed services, the original protection channel of each of the to-be-transformed services is deleted.
  • a computer readable storage medium storing computer executable instructions that, when executed by a processor, implement the described service protection transition method.
  • the embodiment of the present invention determines the transition scenario of the current protection transition in response to the user operation, and automatically filters the to-be-changed service based on the determined transition scenario, and allocates corresponding configuration data for each of the to-be-changed services, based on each to-be-changed service.
  • the original protection channel of the to-be-changed service is changed to the target protection channel in the corresponding configuration data.
  • FIG. 1 is a schematic flowchart of a first embodiment of a service protection transition method according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a third embodiment of a service protection transition method according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a fifth embodiment of a service protection transition method according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of functional modules of a first embodiment of a service protection transition apparatus according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of functional modules of a third embodiment of a service protection transition apparatus according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of functional modules of a fifth embodiment of a service protection transition apparatus according to an embodiment of the present invention.
  • the embodiment of the present invention provides a service protection transition method.
  • the service protection transition method includes steps S10-S30:
  • step S10 when the protection transition instruction is detected, the transition scenario corresponding to the protection transition instruction is obtained.
  • the service protection transition method provided in this embodiment can be applied to the multi-service protection transition of the PTN (Packet Transport Network) network.
  • the service protection transition method provided in this embodiment can automatically filter according to the determined transition scenario.
  • the changeover business is carried out, and the protection and change of the business is automatically carried out in batches, without successive executions, which can effectively improve the efficiency of business protection changes.
  • the server provides a selection interface of the transition scenario for the user to select a transition scenario of the current protection transition, and when the protection transition instruction triggered by the user based on the selection interface of the transition scenario is detected, the protection transition instruction is corresponding.
  • the change scenario is the change scenario of the current protection transition. It should be noted that after determining the transition scenario, the type, rate, and type of protection of the service are correspondingly limited.
  • Step S20 Determine a current to-be-changed service based on the transition scenario, and allocate corresponding configuration data for each of the to-be-transformed services.
  • the server After determining the transition scenario, the server displays a selection interface of the landing network element and other filtering conditions (such as specific types of services: video, audio, text, etc.) for the user to select; after receiving the selection information input by the user, the server is based on the Select the information to determine the landing network element of the service protection transition and other filtering conditions.
  • the server For the transition scenario from the normal dual-homing protection to the DNI dual-homing protection in the embodiment, the two landing network elements are restricted.
  • the server may also determine whether the user-defined landing network element supports the transitioned protection scenario (DNI dual-homing protection). When the landing network element of the two landing network elements does not support, the prompt information is output. The user can reselect the landing network element based on the prompt information.
  • DNI dual-homing protection transitioned protection scenario
  • the current variable mobility service is filtered based on the foregoing constraint.
  • the server preferably uses all the filtered and changed services as the to-be-changed service.
  • the service to be changed can also be specified by the user.
  • the configuration data to be allocated includes end-to-end service layer service information and protection parameters, and other parameters (such as parameter and configuration of the device family) are directly initialized by the server through a preset parameter template.
  • the protection type is DNI dual-homing protection
  • the end-to-end service layer service information is used by the landing network element to select the service layer tunnel carried by the DNI pseudowire
  • the protection parameter is provided for the landing network element to set the protection group.
  • the protection group includes a working channel and a protection channel. It should be noted that the protection/working channel may specifically be a protection/working tunnel, a protection/work pseudowire or other forms of protection/working channel.
  • the normal dual-homing protection in this embodiment refers to that when a service tunnel fails, the service is switched to the protection tunnel for transmission.
  • the DNI dual-homing protection establishes a pseudowire connection between the two network elements, so that the working channels carried by the two network elements are mutually protected channels.
  • the service can “bypass” to another
  • the working channel carried by the NE is transmitted normally, which solves the problem that the resources required for the common dual-homing protection are large. Obviously, there are a lot of actual needs of the service protection changes in the existing network.
  • Step S30 Perform, according to the configuration data corresponding to the to-be-changed service, a protection channel of each of the to-be-transformed services in a preset granularity.
  • the server changes the protection channel of each to-be-changed service in batches according to a preset granularity, where the pre-predetermined The granularity is set in response to the user operation, for example, the preset granularity is 5, and the protection transition of the five services to be changed is executed in batches.
  • the server sends the configuration data corresponding to each of the to-be-changed services to the landing network element corresponding to the target protection channel of the current protection transition in batches according to the preset granularity, and is executed by the landing network element in response to the received configuration data.
  • the corresponding parameter configuration operation changes the original protection channel of the to-be-changed service to the target protection channel.
  • the service protection transition method provided in this embodiment determines the transition scenario of the current protection transition in response to the user operation, and automatically filters the to-be-changed service based on the determined transition scenario, and allocates corresponding configuration data for each of the to-be-changed services. Then, the original protection channel of the to-be-changed service is changed to the target protection channel according to the configuration data corresponding to each to-be-changed service.
  • the embodiment of the present invention reduces manual intervention, and can effectively improve the efficiency of service protection change compared with related technologies. .
  • determining the current to-be-changed service based on the transition scenario in the foregoing step S10 includes:
  • variable mobility service corresponding to the transition scenario is displayed, and the user selects a service that needs to be protected and changed.
  • the server displays a selection interface of the landing network element and other filtering conditions (such as service type: video, audio, and text) for the user to select; after receiving the selection information input by the user, the server
  • the landing network element of the service protection transition and other filtering conditions are determined based on the selection information.
  • the server may also determine whether the user-defined landing network element supports the transitioned protection scenario (DNI dual-homing protection). When the landing network element of the two landing network elements does not support, the prompt information is output. The user can reselect the landing network element based on the prompt information.
  • the current variable mobility service is filtered based on the foregoing constraint, and the filtered variable mobility service is displayed, for example, in the form of a table, and only the user label and related network may be displayed.
  • the port information of the corresponding service of the element and the related network element is displayed, for example, in the form of a table, and only the user label and related network may be displayed.
  • variable mobility service corresponding to the selection instruction is used as the to-be-transformed service.
  • the variable mobility service corresponding to the selection instruction is used as the to-be-transformed service.
  • the user may also perform adjustment of the to-be-changed service, for example, deleting or adding a to-be-changed service.
  • step S40 is further included:
  • step S40 a bandwidth verification operation is performed on the target protection channel of the current protection transition; when the bandwidth verification is passed, the process proceeds to step S30.
  • the transmission of the service needs to consume a certain bandwidth resource. If the bandwidth resource provided by the protection channel cannot meet the bandwidth requirement of the service, when the working channel fails, the service carried by the working channel will not be obtained. Protection, therefore, the protection of the business in this embodiment Before the transition, the bandwidth protection of the target protection channel for protection transition needs to be performed, and the protection transition of the service is performed only when the bandwidth verification is passed. It should be noted that, in other embodiments, the server may also automatically identify whether bandwidth verification is required based on the user-selected transition scenario and other settings described above, and perform bandwidth verification if and only if needed.
  • a fourth embodiment of the service protection transition method in the embodiment of the present invention is provided.
  • the foregoing step S30 includes:
  • a preset number of configuration data is extracted from the configuration data corresponding to each of the to-be-changed services.
  • the protection channel of the to-be-transformed service is changed according to the extracted configuration data.
  • the protection transition of the service fails for a variety of reasons.
  • the target protection channel cannot protect the service
  • the original protection channel cannot protect the service.
  • the embodiment provides a scheme for automatic rollback of transition failure.
  • the configuration data is stopped, and the landing network element corresponding to the target protection channel is controlled to roll back based on the current batch.
  • the parameter configuration operation performed by the configuration data corresponding to each service to be changed.
  • the server may perform the foregoing rollback operation only for the service that fails to change, or perform the foregoing rollback operation for the current batch and the to-be-changed service of the batch that has previously completed the protection transition. .
  • the server When the server performs the protection transition operation, the server displays the progress of the configuration data delivery and the result of the transition.
  • step S503 is further included:
  • step S50 when the protection transition of each of the to-be-changed services is completed, the original protection channel of each of the to-be-transformed services is deleted.
  • the original ordinary double-insurance By protecting the bandwidth resources of the protection tunnel, the service can be switched to the protection tunnel for transmission when the working tunnel is faulty, resulting in a large amount of bandwidth resources being wasted, and the DNI dual-homing protection after the transition does not need to reserve bandwidth resources. For example, after all the to-be-changed services have completed the transition, the server deletes the original protection channel to release the bandwidth resources reserved for the original protection channel.
  • the server queries whether the original protection channel carries other services that are not to be changed, and only when the original protection channel does not carry the other services. Delete the original protection channel to avoid breaking the service.
  • the server may also reserve the original protection channel as a low-priority redundant protection channel to improve the overall security of the service transmission when the protection transition of the to-be-transformed service is completed.
  • the embodiment of the present invention further provides a service protection transition device.
  • the service protection transition device includes:
  • the obtaining module 10 is configured to acquire a transition scenario corresponding to the protection transition instruction when the protection transition instruction is detected.
  • the service protection transition method provided in this embodiment is built in the server and can be applied to the multi-service protection transition of the PTN (Packet Transport Network) network.
  • the server with the service protection transition device provided in this embodiment can The variable migration service is automatically filtered out according to the determined transition scenario, and the protection transition of the service is automatically performed in batches, without successive executions, which can effectively improve the efficiency of service protection changes.
  • the obtaining module 10 is configured to select a transition scenario of the transition scenario for the user to select a transition scenario of the current protection transition.
  • the obtaining module 10 acquires the module 10
  • the transition scenario corresponding to the protection transition instruction is used as a transition scenario of the current protection transition.
  • the determined transition scenario is a dual-node protection of DNI (Dual Node Interconnection). It should be noted that after determining the transition scenario, the type, rate, and type of protection of the service are correspondingly limited.
  • the distribution module 20 is configured to determine a current to-be-changed service based on the transition scenario, and allocate corresponding configuration data for each of the to-be-transformed services;
  • the obtaining module 10 displays the landing network element based on the server and The selection interface of the other filtering conditions (such as the service type: video, audio, and text) is selected by the user; after receiving the selection information input by the user, the obtaining module 10 determines the landing network element of the service protection transition based on the selection information. And other filters.
  • the two landing network elements are restricted.
  • the obtaining module 10 may also determine whether the landing network element specified by the user supports the transitioned protection scenario (DNI dual-homing protection). When the landing network element of the two landing network elements is not supported, The prompt information is outputted for the user to reselect the landing network element based on the prompt information.
  • DNI dual-homing protection transitioned protection scenario
  • the allocation module 20 filters out the current variable mobility service based on the foregoing constraints.
  • the allocating module 20 selects all the variable mobility services that are filtered out as the to-be-changed services.
  • the service to be changed can also be specified by the user.
  • the configuration data that the distribution module 20 needs to allocate includes end-to-end service layer service information and protection parameters, and other parameters (such as parameter and configuration of the device family) are directly passed by the distribution module 20 through the server preset parameter template. initialization.
  • the protection type is DNI dual-homing protection
  • the end-to-end service layer service information is used by the landing network element to select the service layer tunnel carried by the DNI pseudowire
  • the protection parameter is provided for the landing network element to set the protection group.
  • the protection group includes a working channel and a protection channel.
  • the protection/working channel can be a protection/working tunnel, a protection/work pseudowire or other forms of protection/working channel.
  • the normal dual-homing protection in this embodiment refers to that when a service tunnel fails, the service is switched to the protection tunnel for transmission.
  • the DNI dual-homing protection establishes a pseudowire connection between the two network elements, so that the working channels carried by the two network elements are mutually protected channels.
  • the service can “bypass” to another
  • the working channel carried by the NE is transmitted normally, which solves the problem that the resources required for the common dual-homing protection are large. Obviously, there are a lot of actual needs of the service protection changes in the existing network.
  • the transition module 30 is configured to batch change the protection channel of each of the to-be-transformed services according to the configuration data corresponding to each of the to-be-changed services.
  • the transition module 30 changes the protection of each of the to-be-changed services in batches based on the preset granularity of the server.
  • the preset granularity is in response to user operation
  • the preset granularity is 5, and the transition module 30 performs 5 protection transitions of the service to be changed in batches.
  • the transition module 30 delivers, according to the server, the configuration data corresponding to each of the to-be-changed services to the landing network element corresponding to the target protection channel of the current protection transition in a preset granularity, and the received network element responds to the received network Configure the data, perform the corresponding parameter configuration operation, and change the original protection channel of the to-be-transformed service to the target protection channel.
  • the service protection transition device determines the transition scenario of the current protection transition in response to the user operation, and automatically filters the to-be-changed service based on the determined transition scenario, and allocates corresponding configuration data for each of the to-be-changed services. Then, based on the configuration data corresponding to each to-be-changed service, the original protection channel of the to-be-changed service is changed to the target protection channel.
  • the invention reduces manual intervention, and can effectively improve the efficiency of the service protection transition compared with the related technology.
  • a second embodiment of the service protection transition apparatus is provided.
  • the allocation module 20 is further configured to display a variable mobility service corresponding to the transition scenario, so that the user needs to select The service of the protection transition is performed; and when the selection instruction triggered by the user based on the display interface of the variable mobility service is received, the variable mobility service corresponding to the selection instruction is used as the to-be-changed service.
  • the obtaining module 10 selects a selection interface based on the server to display the landing network element and other filtering conditions (such as service type: video, audio, text, etc.) for the user to select; after receiving the user input
  • the obtaining module 10 determines the landing network element of the service protection transition and other filtering conditions based on the selection information.
  • the two landing network elements are restricted.
  • the obtaining module 10 may also determine whether the landing network element specified by the user supports the transitioned protection scenario (DNI dual-homing protection). When the landing network element of the two landing network elements is not supported, The prompt information is outputted for the user to reselect the landing network element based on the prompt information.
  • the allocating module 20 filters out the current variable mobility service based on the foregoing constraint, and displays the filtered variable mobility service, for example, in the form of a table, and only displays the user label.
  • the relevant network element and the port information of the corresponding network element corresponding to the service are displayed.
  • the receiving module 20 when receiving the selection instruction triggered by the user based on the display interface of the variable mobility service, uses the variable mobility service corresponding to the selection instruction as the to-be-changed service. It can be understood by those skilled in the art that, in other embodiments, after the user specifies the to-be-transformed service, the allocating module 20 can also perform the adjustment of the to-be-changed service in response to the user operation, for example, deleting or adding the to-be-changed service.
  • the service protection transition apparatus further includes a verification module 40, which is set to The target protection channel of the secondary protection transition performs bandwidth verification operation.
  • the transition module 30 is further configured to, when the bandwidth check is passed, dynamically change the protection channel of each to-be-changed service according to the preset granularity according to the configuration data corresponding to each of the to-be-changed services.
  • the transmission of the service needs to consume a certain bandwidth resource. If the bandwidth resource provided by the protection channel cannot meet the bandwidth requirement of the service, when the working channel fails, the service carried by the working channel will not be obtained. Protection, therefore, before the transition module 30 performs the protection transition of the service, the verification module 40 needs to perform bandwidth verification on the target protection channel of the protection transition, and the protection transition of the service is performed only when the bandwidth verification is passed. It should be noted that, in other embodiments, the verification module 40 may also automatically identify whether bandwidth verification is required based on the transition scenario selected by the user and the foregoing other settings, and perform bandwidth verification if and only if needed.
  • a fourth embodiment of the service protection transition device is provided.
  • the transition module 30 is further configured to be sequentially extracted from configuration data corresponding to each to-be-changed service. a preset number of configuration data; and each time the configuration data is extracted, the protection channel of the to-be-transformed service is changed according to the extracted configuration data; and when the current transition fails, the extraction of the configuration data is stopped, and The protection transition operation based on the configuration data extracted at the current time is reversed; when the current transition is successful, the other configuration data is continuously extracted in order.
  • the protection transition of the service fails for a variety of reasons.
  • the target protection channel cannot protect the service
  • the original protection channel cannot protect the service.
  • the embodiment provides a scheme for automatic rollback of transition failure.
  • the transition module 30 stops extracting the configuration data when the current transition fails, and controls the landing network element corresponding to the target protection channel to fall back. It is based on the configuration data corresponding to each to-be-changed service of the current batch. Parameter configuration operation performed. It should be noted that, in other embodiments, the transition module 30 may perform the foregoing back-off operation only for the service that fails to change, or the foregoing move for the current batch and the batch to-be-changed service that has previously completed the protection transition. Treatment.
  • the transition module 30 displays the progress of the configuration data delivery and the result of the transition based on the server synchronization.
  • the service protection transition device further includes a deletion module 50, which is set to be in the transition.
  • a deletion module 50 which is set to be in the transition.
  • the original dual-homing protection reserves the bandwidth resources of the protection tunnel for the service to be switched to the protection tunnel for transmission when the working tunnel is faulty, resulting in a large number of The bandwidth resource is wasted, and the DNI dual-homing protection after the transition does not need to reserve the bandwidth resource.
  • the deleting module 50 deletes the original protection channel based on the server to release. The bandwidth resource reserved for the original protection channel.
  • the deleting module 50 queries, according to the server, whether the original protection channel carries other services that are not to be changed, and only the original protection channel does not carry the In other services, the original protection channel is deleted to avoid breaking the service.
  • the original protection channel may also be reserved and used as a low-priority redundant protection channel to improve overall security of service transmission.
  • a computer readable storage medium storing computer executable instructions that, when executed by a processor, implement the described service protection transition method.
  • all or part of the steps of the foregoing embodiments may also be implemented by using an integrated circuit, and the steps may be separately fabricated into integrated circuit modules, or multiple modules thereof or The steps are made into a single integrated circuit module.
  • 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 determines the transition scenario of the current protection transition in response to the user operation, and automatically filters the to-be-changed service based on the determined transition scenario, and allocates corresponding configuration data for each of the to-be-changed services, based on each to-be-changed service.
  • the original protection channel of the to-be-changed service is changed to the target protection channel in the corresponding configuration data.

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Abstract

本申请公开了一种业务保护变迁方法和装置,所述方法包括:在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景;基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据;基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。

Description

一种业务保护变迁方法及装置 技术领域
本申请涉及但不限于通信技术领域,尤其涉及一种业务保护变迁方法及装置。
背景技术
在电信网络的运维中,工程现网存量业务,由于方案变迁、网络调整原型,对于某些特定的组网场景需要进行批量改造。其中,改造场景如业务由普通双归保护变为双节点互联DNI双归保护,或者由无保护单归变为DNI双归保护等。然而,并不是所有的业务均支持变迁后的保护类型,相关技术在进行多业务的保护变迁时,需要人工判断每个业务是否支持变迁后的保护类型,然后将支持变迁的业务的保护类型逐次变迁为新的保护类型,导致业务保护变迁的效率较低。
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。
本发明实施例的主要目的在于提供一种业务保护变迁方法及装置,能够提高业务保护变迁的效率。
一种业务保护变迁方法,所述方法包括:
在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景。
基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据。
基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
可选地,所述基于所述变迁场景确定当前的待变迁业务包括:
显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务;
在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
可选地,所述方法还包括:在基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之前,对当次保护变迁的目标保护通道进行带宽校验操作。
在带宽校验通过时,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
可选地,所述基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道包括:
依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据。
在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道。
在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所述配置数据进行的保护变迁操作。
在当前变迁成功时,继续按顺序提取其他配置数据。
可选地,所述基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之后,在完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
一种业务保护变迁装置,所述装置包括:
获取模块,设置为在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景。
分配模块,设置为基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据。
变迁模块,设置为基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
可选地,所述分配模块基于所述变迁场景确定当前的待变迁业务包括:显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务;在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
可选地,所述装置还包括校验模块,设置为在所述变迁模块基于每个所 述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之前,对当次保护变迁的目标保护通道进行带宽校验操作;
所述变迁模块还设置为在带宽校验通过时,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
可选地,所述变迁模块基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道包括:依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据;在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道;在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所述配置数据进行的保护变迁操作;在当前变迁成功时,继续按顺序提取其他配置数据。
可选地,所述业务保护变迁装置还包括删除模块,设置为在所述变迁模块基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之后,所述变迁模块完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
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被处理器执行时实现所述的业务保护变迁方法。
本发明实施例通过响应用户操作确定当次保护变迁的变迁场景,并自动基于确定的变迁场景过滤出待变迁业务,为每个所述待变迁业务分配对应的配置数据,基于每个待变迁业务对应的配置数据批量的将待变迁业务的原保护通道变迁为目标保护通道,本发明实施例方案减少了人工干预,相较于相关技术能够有效的提升业务保护变迁的效率。
附图概述
图1为本发明实施例业务保护变迁方法第一实施例的流程示意图;
图2为本发明实施例业务保护变迁方法第三实施例的流程示意图;
图3为本发明实施例业务保护变迁方法第五实施例的流程示意图;
图4为本发明实施例业务保护变迁装置第一实施例的功能模块示意图;
图5为本发明实施例业务保护变迁装置第三实施例的功能模块示意图;
图6为本发明实施例业务保护变迁装置第五实施例的功能模块示意图。
本发明的实施方式
下文中将结合附图对本发明的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。本发明实施例提供一种业务保护变迁方法,参照图1,在本发明实施例业务保护变迁方法的第一实施例中,所述业务保护变迁方法包括步骤S10-S30:
步骤S10,在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景。
本实施例提供的业务保护变迁方法可以应用于PTN(Packet Transport Network,分组传送网)网络的多业务保护变迁中,例如,采用本实施例提供的业务保护变迁方法能够根据确定的变迁场景自动过滤出可变迁业务,并自动批量进行业务的保护变迁,无需逐次执行,能够有效提升业务保护变迁的效率。
本实施例中,服务器提供变迁场景的选择界面供用户选择当次保护变迁的变迁场景,在侦测到用户基于所述变迁场景的选择界面触发的保护变迁指令时,将所述保护变迁指令对应的变迁场景作为当次保护变迁的变迁场景。需要说明的是,在确定变迁场景之后,业务的类型、速率以及保护类型均相应得以限制。
步骤S20,基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据。
在确定变迁场景之后,服务器显示落地网元以及其他过滤条件(如业务的具体类型:视频、音频以及文字等)的选择界面供用户选择;在接收到用户输入的选择信息之后,服务器基于所述选择信息确定业务保护变迁的落地网元以及其他过滤条件。其中,针对本实施例所述的由普通双归保护变为DNI双归保护的变迁场景,限制选择两个落地网元。可选地,服务器还可判断用户指定的落地网元是否均支持变迁后的保护场景(DNI双归保护),当所述两个落地网元中有落地网元不支持时,输出提示信息,以供用户基于所述提示信息重新选择落地网元。
在变迁场景、落地网元以及其他过滤条件均确定之后,基于前述约束过滤出当前可变迁业务。本实施例中,服务器优选将前述过滤出的全部可变迁业务作为待变迁业务。本领域技术人员可以理解的是,在其他实施例中,还可由用户指定待变迁业务。
本实施例中,需要分配的配置数据包括端到端的服务层业务信息、保护参数,其他参数(如设备族的参数和配置等)则由服务器直接通过预设的参数模板初始化。例如,当保护类型为DNI双归保护时,端到端的服务层业务信息供落地网元选择DNI伪线承载的服务层隧道,保护参数供落地网元设置保护组。所述保护组包括工作通道和保护通道,需要说明的是,保护/工作通道具体可为保护/工作隧道、保护/工作伪线或者其他形式的保护/工作通道。
例如,本实施例所述的普通双归保护是指,业务在工作隧道出现故障时,倒换至保护隧道进行传输。然而,在通常情况下,普通双规保护中只有工作隧道用于承载业务,但需要预留保护隧道的资源,所需资源较多。而DNI双归保护通过在两网元间建立伪线连接,使得两网元各自承载的工作通道互为保护通道,在任一网元承载的工作通道故障时,业务均可“绕道”至另一网元承载的工作通道正常传输,解决了普通双归保护所需资源较多的问题,显而易见的,现网存在着大量业务保护变迁的实际需求。
步骤S30,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
本实施例中,在确定待变迁业务,以及为每个所述待变迁业务分配对应的配置数据之后,服务器按预设粒度批量变迁每个所述待变迁业务的保护通道,其中,所述预设粒度为响应用户操作设置,例如,预设粒度为5,既每次批量执行5条待变迁业务的保护变迁。
服务器将每个所述待变迁业务对应的配置数据按预设粒度批量下发至当次保护变迁的目标保护通道对应的落地网元,由所述落地网元响应接收的所述配置数据,执行相应的参数配置操作,将所述待变迁业务的原保护通道变迁为目标保护通道。
本实施例提供的业务保护变迁方法,响应用户操作确定当次保护变迁的变迁场景,并自动基于确定的变迁场景过滤出待变迁业务,以及为每个所述待变迁业务分配对应的配置数据,然后基于每个待变迁业务对应的配置数据批量的将待变迁业务的原保护通道变迁为目标保护通道,本发明实施例减少了人工干预,相较于相关技术能够有效的提升业务保护变迁的效率。
基于第一实施例,提出本发明实施例业务保护变迁方法的第二实施例,在本实施例中,上述步骤S10中所述基于所述变迁场景确定当前的待变迁业务包括:
显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务。
本实施例中,在确定变迁场景之后,服务器显示落地网元以及其他过滤条件(如业务类型:视频、音频以及文字等)的选择界面供用户选择;在接收到用户输入的选择信息之后,服务器基于所述选择信息确定业务保护变迁的落地网元以及其他过滤条件。其中,针对本实施例所述的由普通双归保护变为DNI双归保护的变迁场景,限制选择两个落地网元。可选地,服务器还可判断用户指定的落地网元是否均支持变迁后的保护场景(DNI双归保护),当所述两个落地网元中有落地网元不支持时,输出提示信息,以供用户基于所述提示信息重新选择落地网元。
在变迁场景、落地网元以及其他过滤条件均确定之后,基于前述约束过滤出当前可变迁业务,并显示过滤出的可变迁业务,例如,用表格的形式展现,可只显示用户标签、相关网元以及相关网元对应业务的端口信息。
在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
本实施例中,在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。本领域技术人员可以理解的是,在其他实施例中,用户在指定待变迁业务之后,还可以进行待变迁业务的调整,例如,删减或新增待变迁业务。
基于第一或第二实施例,提出本发明实施例业务保护变迁方法的第三实施例,参照图2,在本实施例中,上述步骤S30之前,还包括步骤S40:
步骤S40,对当次保护变迁的目标保护通道进行带宽校验操作;在带宽校验通过时,转入执行步骤S30。
本领域技术人员可以理解的是,业务的传输需要消耗一定的带宽资源,若保护通道所能提供的带宽资源不能满足业务的带宽需求,在工作通道故障时,工作通道承载的业务将得不到保护,因此,本实施例在进行业务的保护 变迁之前,需要对保护变迁的目标保护通道进行带宽校验,在且仅在带宽校验通过时,才进行业务的保护变迁。需要说明的是,在其他实施例中,还可由服务器基于用户选择的变迁场景以及前述其它设置,自动识别是否需要进行带宽校验,当且仅当需要时才进行带宽校验。
基于前述任一实施例,提出本发明实施例业务保护变迁方法的第四实施例,本实施例中,上述步骤S30包括:
依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据。
在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道。
在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所述配置数据进行的保护变迁操作。
在当前变迁成功时,继续按顺序提取其他配置数据。
在实际工程场景中,有多种原因导致业务的保护变迁失败,在保护变迁失败时,将会导致所述目标保护通道无法保护业务,原保护通道也无法保护业务。有鉴于此,本实施例提供一种变迁失败自动回滚的方案,在当前变迁失败时,停止提取所述配置数据,并控制所述目标保护通道对应的落地网元回退其基于当前批次每个待变迁业务对应的配置数据所进行的参数配置操作。需要说明的是,在其他实施例中,服务器还可仅针对变迁失败的业务进行前述回退操作,或者是针对当前批次以及之前已完成保护变迁的批次的待变迁业务进行前述回退操作。
所述服务器在执行保护变迁的操作时,同步显示配置数据下发的进度以及变迁的结果。
基于前述任一实施例,提出本发明实施例业务保护变迁方法的第五实施例,参照图3,在本实施例中,上述步骤S30之后,还包括步骤S503:
步骤S50,在完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
在普通双归保护变为DNI双归保护的变迁场景中,原有的普通双归保 护通过预留保护隧道的带宽资源以供业务能够在工作隧道故障时,倒换至保护隧道进行传输,导致大量的带宽资源浪费,而变迁后的DNI双归保护则无需预留带宽资源,本实施例中,在所述待变迁业务全部完成变迁之后,服务器删除所述原保护通道,以释放为所述原保护通道预留的带宽资源。
可选地,在删除所述原保护通道之前,服务器查询所述原保护通道是否承载有非所述待变迁业务的其他业务,在且仅在所述原保护通道未承载所述其他业务时,删除所述原保护通道,以避免断业务。
可选地,在完成全部所述待变迁业务的保护变迁时,服务器还可以保留所述原保护通道,并将其作为低优先级的冗余保护通道,以提升业务传输整体的安全性。
本发明实施例还提供一种业务保护变迁装置,参照图4,在本发明实施例业务保护变迁装置的第一实施例中,所述业务保护变迁装置包括:
获取模块10,设置为在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景。
本实施例提供的业务保护变迁方法内置于服务器运行,可以应用于PTN(Packet Transport Network,分组传送网)网络的多业务保护变迁中,例如,内置本实施例提供的业务保护变迁装置的服务器能够根据确定的变迁场景自动过滤出可变迁业务,并自动批量进行业务的保护变迁,无需逐次执行,能够有效提升业务保护变迁的效率。
本实施例中,获取模块10基于服务器提供变迁场景的选择界面供用户选择当次保护变迁的变迁场景,在侦测到用户基于所述变迁场景的选择界面触发的保护变迁指令时,获取模块10将所述保护变迁指令对应的变迁场景作为当次保护变迁的变迁场景,例如,参照图2,确定的变迁场景为普通双规保护变为DNI(Dual Node Interconnection,双节点互联)双规保护。需要说明的是,在确定变迁场景之后,业务的类型、速率以及保护类型均相应得以限制。
分配模块20,设置为基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据;
在确定变迁场景之后,所述获取模块10基于服务器显示落地网元以及 其他过滤条件(如业务类型:视频、音频以及文字等)的选择界面供用户选择;在接收到用户输入的选择信息之后,所述获取模块10基于所述选择信息确定业务保护变迁的落地网元以及其他过滤条件。其中,针对本实施例所述的由普通双归保护变为DNI双归保护的变迁场景,限制选择两个落地网元。可选地,所述获取模块10还可判断用户指定的落地网元是否均支持变迁后的保护场景(DNI双归保护),当所述两个落地网元中有落地网元不支持时,输出提示信息,以供用户基于所述提示信息重新选择落地网元。
在变迁场景、落地网元以及其他过滤条件均确定之后,分配模块20基于前述约束过滤出当前可变迁业务。本实施例中,分配模块20选将前述过滤出的全部可变迁业务作为待变迁业务。本领域技术人员可以理解的是,在其他实施例中,还可由用户指定待变迁业务。
本实施例中,分配模块20需要分配的配置数据包括端到端的服务层业务信息、保护参数,其他参数(如设备族的参数和配置等)则由分配模块20直接通过服务器预设的参数模板初始化。例如,当保护类型为DNI双归保护时,端到端的服务层业务信息供落地网元选择DNI伪线承载的服务层隧道,保护参数供落地网元设置保护组。所述保护组包括工作通道和保护通道,需要说明的是,保护/工作通道可为保护/工作隧道、保护/工作伪线或者其他形式的保护/工作通道。
例如,本实施例所述的普通双归保护是指,业务在工作隧道出现故障时,倒换至保护隧道进行传输。然而,在通常情况下,普通双规保护中只有工作隧道用于承载业务,但需要预留保护隧道的资源,所需资源较多。而DNI双归保护通过在两网元间建立伪线连接,使得两网元各自承载的工作通道互为保护通道,在任一网元承载的工作通道故障时,业务均可“绕道”至另一网元承载的工作通道正常传输,解决了普通双归保护所需资源较多的问题,显而易见的,现网存在着大量业务保护变迁的实际需求。
变迁模块30,设置为基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
本实施例中,在分配模块20确定待变迁业务,以及为每个所述待变迁业务分配对应的配置数据之后,变迁模块30基于服务器按预设粒度批量变迁每个所述待变迁业务的保护通道,其中,所述预设粒度为响应用户操作设 置,例如,预设粒度为5,既变迁模块30每次批量执行5条待变迁业务的保护变迁。
变迁模块30基于服务器将每个所述待变迁业务对应的配置数据按预设粒度批量下发至当次保护变迁的目标保护通道对应的落地网元,由所述落地网元响应接收的所述配置数据,执行相应的参数配置操作,将所述待变迁业务的原保护通道变迁为目标保护通道。
本实施例提供的业务保护变迁装置,响应用户操作确定当次保护变迁的变迁场景,并自动基于确定的变迁场景过滤出待变迁业务,以及为每个所述待变迁业务分配对应的配置数据,然后基于每个待变迁业务对应的配置数据批量的将待变迁业务的原保护通道变迁为目标保护通道,本发明减少了人工干预,相较于相关技术能够有效的提升业务保护变迁的效率。
基于第一实施例,提出本发明实施例业务保护变迁装置的第二实施例,在本实施例中,所述分配模块20还设置为显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务;以及在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
本实施例中,在确定变迁场景之后,所述获取模块10基于服务器显示落地网元以及其他过滤条件(如业务类型:视频、音频以及文字等)的选择界面供用户选择;在接收到用户输入的选择信息之后,所述获取模块10基于所述选择信息确定业务保护变迁的落地网元以及其他过滤条件。其中,针对本实施例所述的由普通双归保护变为DNI双归保护的变迁场景,限制选择两个落地网元。可选地,所述获取模块10还可判断用户指定的落地网元是否均支持变迁后的保护场景(DNI双归保护),当所述两个落地网元中有落地网元不支持时,输出提示信息,以供用户基于所述提示信息重新选择落地网元。
在变迁场景、落地网元以及其他过滤条件均确定之后,分配模块20基于前述约束过滤出当前可变迁业务,并显示过滤出的可变迁业务,例如,用表格的形式展现,可只显示用户标签、相关网元以及相关网元对应业务的端口信息。
所述分配模块20在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。本领域技术人员可以理解的是,在其他实施例中,在用户指定待变迁业务之后,分配模块20还可以响应用户操作进行待变迁业务的调整,例如,删减或新增待变迁业务。
基于第一或第二实施例,提出本发明实施例业务保护变迁装置的第三实施例,参照图5,在本实施例中,所述业务保护变迁装置还包括校验模块40,设置为对当次保护变迁的目标保护通道进行带宽校验操作。
所述变迁模块30还设置为在带宽校验通过时,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
本领域技术人员可以理解的是,业务的传输需要消耗一定的带宽资源,若保护通道所能提供的带宽资源不能满足业务的带宽需求,在工作通道故障时,工作通道承载的业务将得不到保护,因此,变迁模块30在进行业务的保护变迁之前,需要校验模块40对保护变迁的目标保护通道进行带宽校验,在且仅在带宽校验通过时,才进行业务的保护变迁。需要说明的是,在其他实施例中,还可由校验模块40基于用户选择的变迁场景以及前述其它设置,自动识别是否需要进行带宽校验,当且仅当需要时才进行带宽校验。
基于前述任一实施例,提出本发明实施例业务保护变迁装置的第四实施例,本实施例中,所述变迁模块30还设置为依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据;以及在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道;以及在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所述配置数据进行的保护变迁操作;在当前变迁成功时,继续按顺序提取其他配置数据。
在实际工程场景中,有多种原因导致业务的保护变迁失败,在保护变迁失败时,将会导致所述目标保护通道无法保护业务,原保护通道也无法保护业务。有鉴于此,本实施例提供一种变迁失败自动回滚的方案,所述变迁模块30在当前变迁失败时,停止提取所述配置数据,并控制所述目标保护通道对应的落地网元回退其基于当前批次每个待变迁业务对应的配置数据所 进行的参数配置操作。需要说明的是,在其他实施例中,变迁模块30还可仅针对变迁失败的业务进行前述回退操作,或者是针对当前批次以及之前已完成保护变迁的批次的待变迁业务进行前述回退操作。
所述变迁模块30在执行保护变迁操作时,基于服务器同步显示配置数据下发的进度以及变迁的结果。
基于前述任一实施例,提出本发明实施例业务保护变迁装置的第五实施例,参照图6,在本实施例中,所述业务保护变迁装置还包括删除模块50,设置为在所述变迁模块30完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
在普通双归保护变为DNI双归保护的变迁场景中,原有的普通双归保护通过预留保护隧道的带宽资源以供业务能够在工作隧道故障时,倒换至保护隧道进行传输,导致大量的带宽资源浪费,而变迁后的DNI双归保护则无需预留带宽资源,本实施例中,在所述待变迁业务全部完成变迁之后,删除模块50基于服务器删除所述原保护通道,以释放为所述原保护通道预留的带宽资源。
可选地,删除模块50在删除所述原保护通道之前,基于服务器查询所述原保护通道是否承载有非所述待变迁业务的其他业务,在且仅在所述原保护通道未承载所述其他业务时,删除所述原保护通道,以避免断业务。
可选地,在完成全部所述待变迁业务的保护变迁时,还可以保留所述原保护通道,并将其作为低优先级的冗余保护通道,以提升业务传输整体的安全性。
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被处理器执行时实现所述的业务保护变迁方法。
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。
工业实用性
本发明实施例通过响应用户操作确定当次保护变迁的变迁场景,并自动基于确定的变迁场景过滤出待变迁业务,为每个所述待变迁业务分配对应的配置数据,基于每个待变迁业务对应的配置数据批量的将待变迁业务的原保护通道变迁为目标保护通道,本发明实施例方案减少了人工干预,相较于相关技术能够有效的提升业务保护变迁的效率。

Claims (11)

  1. 一种业务保护变迁方法,所述方法包括:
    在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景;
    基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据;
    基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
  2. 如权利要求1所述的业务保护变迁方法,其中,所述基于所述变迁场景确定当前的待变迁业务包括:
    显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务;
    在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
  3. 如权利要求1所述的业务保护变迁方法,所述方法还包括:
    在基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之前,对当次保护变迁的目标保护通道进行带宽校验操作;
    在带宽校验通过时,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
  4. 如权利要求1-3任一项所述的业务保护变迁方法,其中,所述基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道包括:
    依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据;
    在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道;
    在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所 述配置数据进行的保护变迁操作;
    在当前变迁成功时,继续按顺序提取其他配置数据。
  5. 如权利要求1-3任一项所述的业务保护变迁方法,所述方法还包括:在基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之后,在完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
  6. 一种业务保护变迁装置,所述装置包括:
    获取模块,设置为在侦测到保护变迁指令时,获取所述保护变迁指令对应的变迁场景;
    分配模块,设置为基于所述变迁场景确定当前的待变迁业务,并为每个所述待变迁业务分配对应的配置数据;
    变迁模块,设置为基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
  7. 如权利要求6所述的业务保护变迁装置,其中,所述分配模块基于所述变迁场景确定当前的待变迁业务包括:显示所述变迁场景对应的可变迁业务,供用户选择需要进行保护变迁的业务;在接收到用户基于所述可变迁业务的显示界面触发的选择指令时,将所述选择指令对应的可变迁业务作为待变迁业务。
  8. 如权利要求6所述的业务保护变迁装置,所述装置还包括校验模块,设置为在所述变迁模块基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之前,对当次保护变迁的目标保护通道进行带宽校验操作;
    所述变迁模块还设置为在带宽校验通过时,基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道。
  9. 如权利要求6-8任一项所述的业务保护变迁装置,其中,所述变迁 模块基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道包括:依次由每个所述待变迁业务对应的配置数据中提取预设数量的配置数据;在每次提取到配置数据时,按照提取的所述配置数据变迁所述待变迁业务的保护通道;在当前变迁失败时,停止提取所述配置数据,并回退基于当次提取的所述配置数据进行的保护变迁操作;在当前变迁成功时,继续按顺序提取其他配置数据。
  10. 如权利要求6-8任一项所述的业务保护变迁装置,所述装置还包括删除模块,设置为在所述变迁模块基于每个所述待变迁业务对应的配置数据,按预设粒度批量变迁每个所述待变迁业务的保护通道之后,在所述变迁模块完成每个所述待变迁业务的保护变迁时,删除每个所述待变迁业务的原保护通道。
  11. 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被处理器执行时实现权利要求1至5任意一项所述的业务保护变迁方法。
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112887355A (zh) * 2019-11-29 2021-06-01 北京百度网讯科技有限公司 异常服务器的业务处理方法及装置
CN114257504A (zh) * 2021-12-15 2022-03-29 烽火通信科技股份有限公司 业务场景切换方法及系统

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20130286816A1 (en) * 2006-12-20 2013-10-31 Rockstar Consortium, US LP Communicating data units in a communications network that provides failure protection
CN104618150A (zh) * 2015-01-09 2015-05-13 烽火通信科技股份有限公司 一种ptn二层转三层业务场景下的业务配置方法及系统
CN104734950A (zh) * 2013-12-20 2015-06-24 中兴通讯股份有限公司 一种对ptn网络业务进行保护的方法及装置

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100438475C (zh) * 2004-09-21 2008-11-26 华为技术有限公司 环网中保护倒换的实现方法
CN102142975B (zh) * 2010-02-01 2015-05-13 中兴通讯股份有限公司 基于传送网中双节点互连保护结构的业务保护方法及系统
CN104809610A (zh) * 2015-05-12 2015-07-29 努比亚技术有限公司 业务流程处理方法及装置

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20130286816A1 (en) * 2006-12-20 2013-10-31 Rockstar Consortium, US LP Communicating data units in a communications network that provides failure protection
CN104734950A (zh) * 2013-12-20 2015-06-24 中兴通讯股份有限公司 一种对ptn网络业务进行保护的方法及装置
CN104618150A (zh) * 2015-01-09 2015-05-13 烽火通信科技股份有限公司 一种ptn二层转三层业务场景下的业务配置方法及系统

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
GUO, KAI ET AL.: "shi2xian4 gao2ke3kao4 del PTN huan2wang3 bao3hu4", HUAWEI TECHNOLOGY, 31 August 2012 (2012-08-31) *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112887355A (zh) * 2019-11-29 2021-06-01 北京百度网讯科技有限公司 异常服务器的业务处理方法及装置
CN112887355B (zh) * 2019-11-29 2022-09-27 北京百度网讯科技有限公司 异常服务器的业务处理方法及装置
US11734057B2 (en) 2019-11-29 2023-08-22 Beijing Baidu Netcom Science And Technology Co., Ltd. Method and apparatus for processing a service of an abnormal server
CN114257504A (zh) * 2021-12-15 2022-03-29 烽火通信科技股份有限公司 业务场景切换方法及系统
CN114257504B (zh) * 2021-12-15 2023-05-23 烽火通信科技股份有限公司 业务场景切换方法及系统

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