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WO2015184849A1 - 一种业务端口的预留带宽配置方法及装置 - Google Patents

一种业务端口的预留带宽配置方法及装置 Download PDF

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Publication number
WO2015184849A1
WO2015184849A1 PCT/CN2015/072443 CN2015072443W WO2015184849A1 WO 2015184849 A1 WO2015184849 A1 WO 2015184849A1 CN 2015072443 W CN2015072443 W CN 2015072443W WO 2015184849 A1 WO2015184849 A1 WO 2015184849A1
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service
port
service port
reserved bandwidth
configuration
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PCT/CN2015/072443
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English (en)
French (fr)
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刘金洋
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中兴通讯股份有限公司
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Publication of WO2015184849A1 publication Critical patent/WO2015184849A1/zh

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  • the present invention relates to the field of communications technologies, and in particular, to a method and an apparatus for configuring a reserved bandwidth of a service port.
  • the CAC (Connectivity Allow Control) detection of the bandwidth reservation is a detection based on the bandwidth hierarchy management structure, that is, detecting the reserved bandwidth value of the actual outbound port at the bottom layer and the middle layer respectively in the end-to-end communication.
  • the CAC bandwidth detection needs to be performed end-to-end to determine whether the current bandwidth resource can meet the operation and maintenance requirements of the operator, thereby realizing a resource license commitment to the service according to the existing resource situation.
  • the size of the existing network varies from a few thousand to tens of thousands. It is very cumbersome and has a huge workload to allocate bandwidth for ports or sub-ports of all nodes (including source and sink nodes and intermediate nodes) through which the tunnel passes. There is no effective method in the art.
  • the embodiment of the invention provides a method and a device for configuring a reserved bandwidth of a service port, so as to solve the problem that the operation is cumbersome when the reserved bandwidth configuration is performed in the prior art.
  • the embodiment of the present invention provides a method for configuring a reserved bandwidth of a service port, including: determining a service port carrying a related service in the network; and configuring a preset reserved bandwidth for the service port.
  • the determining, by the service port, the service port that carries the related service in the network includes: determining, according to the network topology structure and the network element basic configuration, a service port that carries the related service in the network.
  • the configuring the preset reserved bandwidth for the service port specifically includes: according to the operation Establishing at least one configuration template for the service requirement and the on-site service situation; configuring the reserved bandwidth for the service port by using the configuration template.
  • the method further includes: performing configuration verification on the configured service port.
  • performing the configuration check on the configured service port includes: checking whether a sum of reserved bandwidths of all service ports in each physical port is less than or equal to a port rate of each physical port; Verify that the sum of all tunnel reserved bandwidths corresponding to each service port is less than or equal to the reserved bandwidth of each service port.
  • the embodiment of the present invention further provides a device for configuring a reserved bandwidth of a service port, including: a determining unit, configured to determine a service port carrying a related service in the network; and a configuration unit, configured to determine the determining unit The service port configures the preset reserved bandwidth.
  • the determining unit is configured to determine a service port that carries related services in the network according to the network topology and the network element basic configuration.
  • the configuration unit is configured to establish at least one configuration template according to an operator requirement and a field service situation, and configure a reserved bandwidth for the service port by using the configuration template.
  • the device further includes: a verification unit, configured to perform configuration verification on the configured service port.
  • a verification unit configured to perform configuration verification on the configured service port.
  • the check unit is configured to check whether a sum of reserved bandwidths of all service ports in each physical port is less than or equal to a port rate of each physical port; and verify that each service port corresponds to Whether the sum of the reserved bandwidths of all the tunnels is less than or equal to the reserved bandwidth of each of the service ports.
  • the embodiment of the present invention further provides a computer program and a storage medium thereof, the computer program comprising program instructions, when the program instruction is executed by a reserved bandwidth configuration device of a service port, enabling the device to implement a reserved bandwidth of the service port.
  • the method and device for configuring a reserved bandwidth of a service port can determine a service port carrying a related service in the network, and configure a preset reserved bandwidth for the service port, so that no manual network is needed. You can find all the service ports to be configured by looking up the service port. The basic situation, and configure the preset reserved bandwidth for each service port, the mass engineering configuration can be completed by a simple operation on the network management, which greatly reduces the engineering maintenance difficulty and workload.
  • FIG. 1 is a flowchart of a method for configuring a reserved bandwidth of a service port according to an embodiment of the present invention
  • FIG. 2 is a detailed flowchart of a method for configuring a reserved bandwidth of a service port according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a configuration template according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of an effect of applying a configuration template in FIG. 3 to reserve bandwidth configuration
  • FIG. 5 is a schematic structural diagram of a reserved bandwidth configuration apparatus for a service port according to an embodiment of the present invention.
  • an embodiment of the present invention provides a method for configuring a reserved bandwidth of a service port, including:
  • the method for configuring a reserved bandwidth of a service port can determine a service port that carries the related service in the network, and configure a preset reserved bandwidth for the service port, so that no manual network element search is needed.
  • the service port can know the basic situation of all the service ports to be configured, and configure the preset reserved bandwidth for each service port.
  • the massive engineering configuration can be completed by performing a few simple operations on the network management, which greatly reduces the engineering maintenance. Difficulty and workload.
  • the service port may include a port or a sub-port, because the port in the network and the sub-port of each port can be used as a unit of the bearer service.
  • determining the service port carrying the related service in the network may include: determining a service port carrying the related service in the network according to the network topology structure and the network element basic configuration.
  • the step may be performed by a network/network element management unit (referred to as a network management system).
  • the network management system can learn the topology of the network under its management, and obtain the basic configuration parameters of each network element from the corresponding database, so as to determine the corresponding relationship of the bearer services according to the corresponding relationship between the basic configuration parameters of each network element.
  • the configuration of the reserved bandwidth provides a reference.
  • the network management system can also learn whether each service port has been configured with reserved bandwidth, and display the configuration of the service port and its current reserved bandwidth to the network administrator.
  • the network administrator can select some network elements or network elements of the entire network to determine the corresponding service port.
  • the preset reserved bandwidth may be configured for each service port by using various methods, and the reserved bandwidth of each service port may be the same or different, which is not limited by the embodiment of the present invention.
  • one or more configuration templates may be preset, so that the template may be used to configure the service port that needs to be configured with the same reserved bandwidth. Batch configuration.
  • the reserved bandwidth may be set to a reserved ratio, and the reserved ratio indicates that the reserved service port has a bandwidth value as a percentage of the port rate, for example, the port rate is 10 G, and the reservation ratio is It is 60%, and the bandwidth value of the service port is 6G.
  • configuring the preset reserved bandwidth for the service port may specifically include:
  • the reserved bandwidth is configured for the service port by using the configuration template.
  • the method for configuring the reserved bandwidth of the service port may further include: performing configuration verification on the configured service port, and if the verification is passed, adopting the configured reserved bandwidth for the service port, and if the verification fails, performing corresponding Alerts and keeps the original configuration of the service port.
  • performing configuration verification on the configured service port may include:
  • a method for configuring a reserved bandwidth of a service port includes the following steps:
  • the NMS automatically calculates all ports or sub-ports to be carried according to the topology network and basic configuration of the current network, and displays the configuration of these service ports and their current reserved bandwidth in a table. If the service port has never been configured before, the current reserved bandwidth is 0 kbps, and the corresponding reservation ratio is 0%; if the service port has been previously configured, the current reserved bandwidth value is displayed, for example, if The reserved bandwidth of the service port is 80%, and the reserved bandwidth of the service port is 8M.
  • the user can flexibly select a part of the network element or the entire network element for automatic calculation. It is applicable to both the application scenario of the incremental configuration and the application scenario of the full configuration.
  • the reserved bandwidth of the service port is configured for the first time in the project, it is preferred to perform network-wide calculation to determine all service ports.
  • the target is retargeted. Select the corresponding NE to perform service port calculation. This way of automatically calculating the service port is compared with the manual one by one network port by port, which greatly improves the efficiency and saves manpower and time cost.
  • the calculated service port status and establish a configuration template for reserved bandwidth of one or more service ports.
  • a configuration template for reserved bandwidth of one or more service ports For example, as shown in FIG. 3, in one embodiment of the present invention, two configuration templates are established in advance.
  • the reserved bandwidth of the port of template 1 is set to 80% of the bandwidth of the port, and the reserved bandwidth of the sub-port is set to 10% of the bandwidth of the port. The sum of the two is 90%, which is smaller than the port rate.
  • Template 2 is the pre-port of the port.
  • the reserved bandwidth is set to 70% of the port rate, and the reserved bandwidth of the subport is set to 15% of the port rate.
  • the sum of the reserved bandwidths of all the ports and sub-ports is only required to be smaller than the port rate.
  • the configuration template can be flexibly modified, added, and deleted according to the usage, thereby further improving the efficiency of the reserved bandwidth configuration.
  • the network administrator can select the service port of a certain area and apply the reserved bandwidth value on the corresponding template, as shown in Figure 4.
  • the template application of all service ports can be delivered on the U2000.
  • the configuration succeeds or the configuration fails and displays specific error information.
  • the mass engineering configuration can be completed by simple operation, and the risk caused by the missing configuration can be effectively prevented.
  • Figure 4 shows the effect of the reserved bandwidth configuration. As shown in Figure 4, except for the third line, the configuration result of all service ports is "adjusted successfully", the reserved bandwidth of the port is 80% of the port rate configured on template 1, and the sub-port is the pre-line of line 9. The remaining bandwidth is 10% of the port rate configured on Template 1.
  • the embodiment of the present invention further provides a device for configuring a reserved bandwidth of a service port, where the device includes a processor and a storage device, and further includes:
  • a determining unit 30 configured to determine a service port that carries related services in the network
  • the configuration unit 32 is configured to configure a preset reserved bandwidth for the service port determined by the determining unit 30.
  • the determining unit 30 can determine the service port carrying the related service in the network, and the configuration unit 32 can configure the preset reserved bandwidth for the service port, so that You can learn the basic situation of all the service ports to be configured, and configure the preset reserved bandwidth for each service port. You can complete the massive project configuration only by performing a few simple operations on the NMS. , greatly reducing the difficulty and workload of engineering maintenance.
  • the determining unit 30 is specifically configured to determine, according to the network topology and the network element basic configuration, a service port that carries the related service in the network.
  • the configuration unit 32 is specifically configured to:
  • the reserved bandwidth is configured for the service port by using the configuration template.
  • the device may further include a verification unit, configured to perform configuration verification on the configured service port.
  • the verification unit may be specifically configured to:
  • the method and device for configuring a reserved bandwidth of a service port can determine a service port that carries the related service in the network, and configure a preset reserved bandwidth for the service port, without manually searching for the service element by network element.
  • the port can know the basic situation of all the service ports to be configured, and configure the preset reserved bandwidth for each service port, which can greatly reduce the engineering maintenance difficulty and workload.

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Abstract

一种业务端口的预留带宽配置方法及装置,所述方法包括:确定网络中承载相关业务的业务端口,为所述业务端口配置预设的预留带宽。本发明实施例无需人工逐个网元查找业务端口即可获知所有要配置的业务端口的基本情况,并为每个业务端口配置预设的预留带宽,解决了相关技术中进行预留带宽配置时,操作繁琐工作量巨大的问题。

Description

一种业务端口的预留带宽配置方法及装置 技术领域
本发明涉及通信技术领域,特别是涉及一种业务端口的预留带宽配置方法及装置。
背景技术
带宽预留的CAC(Connectivity Allow Control,连接允许控制)检测,是一种基于带宽层次管理结构的检测,即分别检测端到端的通信中,位于底层的实际出端口的预留带宽值、中间层的静态隧道的预留带宽值,以及最上层的伪线的预留带宽值,使得上层的预留带宽不超过为其服务的下层的预留带宽,也就是被申请的服务层(下层)要有足够带宽来满足申请者(上层)的需求。对于现网业务,需要端到端的进行CAC带宽检测以便确定当前带宽资源是否能满足运营商的运维需求,从而实现根据现有资源情况对业务做出一种资源许可承诺。
然而,现网网络规模从几千端到上万端不等,针对隧道经过的所有节点(包括源宿节点和中间节点)的端口或者子端口进行预留带宽配置将非常繁琐且工作量巨大,现有技术中尚无有效方法。
发明内容
本发明实施例提供一种业务端口的预留带宽配置方法及装置,以解决现有技术中进行预留带宽配置时,操作繁琐工作量巨大的问题。
为解决上述技术问题,本发明实施例提供了一种业务端口的预留带宽配置方法,包括:确定网络中承载相关业务的业务端口;为所述业务端口配置预设的预留带宽。
可选地,所述确定网络中承载相关业务的业务端口包括:根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。
可选地,所述为所述业务端口配置预设的预留带宽具体包括:根据运营 商需求和现场业务情况建立至少一个配置模板;通过所述配置模板为所述业务端口配置预留带宽。
可选地,所述为所述业务端口配置预设的预留带宽之后,所述方法还包括:对配置后的所述业务端口进行配置校验。
可选地,所述对配置后的所述业务端口进行配置校验包括:校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的端口速率;校验每个业务端口对应的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
另一方面,本发明实施例还提供一种业务端口的预留带宽配置装置,包括:确定单元,设置为确定网络中承载相关业务的业务端口;配置单元,设置为为所述确定单元确定的业务端口配置预设的预留带宽。
可选地,所述确定单元是设置为根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。
可选地,所述配置单元是设置为根据运营商需求和现场业务情况建立至少一个配置模板;通过所述配置模板为所述业务端口配置预留带宽。
可选地,所述装置还包括:校验单元,设置为对配置后的所述业务端口进行配置校验。
可选地,所述校验单元是设置为校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的端口速率;校验每个业务端口对应的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
本发明实施例还提供一种计算机程序及其存储介质,该计算机程序包括程序指令,当该程序指令被业务端口的预留带宽配置设备执行时,使得该设备可实施上述业务端口的预留带宽配置的方法,所述存储介质存储所述计算机程序。
本发明实施例提供的业务端口的预留带宽配置方法及装置,能够在网络中确定出承载相关业务的业务端口,并为所述业务端口配置预设的预留带宽,这样,无需人工逐个网元查找业务端口即可获知所有要配置的业务端口 的基本情况,并为每个业务端口配置预设的预留带宽,通过在网管上进行简单几步操作即可完成海量工程配置,大大降低了工程维护难度和工作量。
附图概述
图1是本发明实施例的业务端口的预留带宽配置方法的一种流程图;
图2是本发明实施例的业务端口的预留带宽配置方法的一种详细流程图;
图3是本发明实施例的配置模板的一种结构示意图;
图4是应用图3中的配置模板进行预留带宽配置的一种效果示意图;
图5是本发明实施例的业务端口的预留带宽配置装置的一种结构示意图。
本发明的较佳实施方式
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。另外,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不限定本发明。
如图1所示,本发明实施例提供一种业务端口的预留带宽配置方法,包括:
S11,确定网络中承载相关业务的业务端口;
S12,为所述业务端口配置预设的预留带宽。
本发明实施例提供的业务端口的预留带宽配置方法,能够在网络中确定出承载相关业务的业务端口,并为所述业务端口配置预设的预留带宽,这样,无需人工逐个网元查找业务端口即可获知所有要配置的业务端口的基本情况,并为每个业务端口配置预设的预留带宽,通过在网管上进行简单几步操作即可完成海量工程配置,大大降低了工程维护难度和工作量。
需要说明的是,本发明的实施例中,业务端口可包括端口或者子端口,因为网络中的端口以及各个端口的子端口都可以作为承载业务的单位。
具体而言,在步骤S11中,确定网络中承载相关业务的业务端口可包括:根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。可选的,该步骤可以由网络/网元管理单元(简称网管)执行。网管可以获知其管理下的网络的拓扑结构,并且可以从相应的数据库中获取各个网元的基础配置参数,从而根据各个网元间基础配置参数的对应关系来确定其承载业务的对应关系,为预留带宽的配置提供参考。
可选地,网管还可以获知每个业务端口是否已经配置了预留带宽,并将业务端口及其当前预留带宽的配置情况显示给网络管理员。网络管理员即可以选择部分网元或者全网网元来确定出相应的业务端口。
在步骤S12中,可以通过各种方法为各个业务端口配置预设的预留带宽,各个业务端口的预留带宽既可以相同,也可以不同,本发明实施例对此不做限制。较佳地,为了加快业务端口的配置速率,在本发明的一些实施例中,还可以预先设置好一个或多个配置模板,从而可以利用该模板对需要配置为相同预留带宽的业务端口进行批量配置。可选地,在每个配置模板中可以将预留带宽设置成预留比的形式,预留比表明预留的业务端口的带宽值为端口速率的百分比,比如端口速率是10G,预留比是60%,业务端口的带宽值就是6G。
具体而言,步骤S12中,为所述业务端口配置预设的预留带宽具体可包括:
根据运营商需求和现场业务情况建立至少一个配置模板;
通过所述配置模板为所述业务端口配置预留带宽。
这样通过使用模板进行业务端口的预留带宽批量配置,不但无需人工逐个设置业务端口的预留带宽,而且对不同的业务端口可灵活使用不同的模板,从而大大提高了预留带宽的配置效率。
为了保证配置的预留带宽能够较为适宜地对业务端口的业务分配进行限制,可选地,为所述业务端口配置预设的预留带宽之后,本发明实施例提供 的业务端口的预留带宽配置方法还可包括:对配置后的业务端口进行配置校验,如果校验通过,则对业务端口采用所配置的预留带宽,如果校验失败,则进行相应的报警提示,并保留该业务端口原来的配置。
可选地,对配置后的所述业务端口进行配置校验可具体包括:
校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的端口速率;
校验每个业务端口对应承载的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
下面通过具体实施例来对本发明提供的业务端口的预留带宽配置方法进行详细说明。
如图2所示,在本发明的一个实施例中,业务端口的预留带宽配置方法包括如下步骤:
S201,确定业务端口。
网管会根据现网的拓扑组网和基础配置自动计算出所有要承载业务的端口或子端口,并用表格展示出这些业务端口及其当前预留带宽的配置情况。如果该业务端口此前从未被配置过,当前预留带宽就为0kbps,对应的预留比为0%;如果该业务端口此前已经被配置过,则显示当前的预留带宽值,例如,如果物理端口速率为10M,业务端口配置的预留带宽的预留比为80%,则该业务端口对应的预留带宽即为8M。
本步骤中,用户可以灵活选择部分网元或者全网网元进行自动计算,既适用于增量配置的应用场景,也适用于全量配置的应用场景。当工程上第一次进行业务端口的预留带宽配置时,优选进行全网计算,确定所有业务端口;当后续新增网元或者修改部分网元的业务端口的预留带宽时,再针对性地选择相应网元进行业务端口计算。这种自动计算业务端口的方式,相对于人工逐个网元逐个端口进行检查,大大提升了效率,节约了人力和时间成本。
S202,建立预留带宽的配置模板。
综合考虑运营商的用户规划需求、现场使用情况、步骤S201中自动计 算出的业务端口情况,建立一个或多个业务端口预留带宽的配置模板。例如,如图3所示,在本发明的一个实施例中,预先建立了2个配置模板。模板1的端口的预留带宽设置为端口速率的80%带宽,子端口的预留带宽设置为端口速率的10%带宽,二者之和为90%,小于端口速率;模板2是端口的预留带宽设置为端口速率的70%,子端口的预留带宽设置为端口速率的15%。当然,在本发明的其他实施例中,子端口也可以多个,此时只需使所有的端口、子端口的预留带宽之和小于端口速率即可,本发明实施例对此不做限制。较佳地,配置模板也可以根据使用情况灵活进行修改、增加和删除,进一步提高了预留带宽配置效率。
S203,对业务端口应用配置模板进行预留带宽配置;
网络管理员可以选择某片区域的业务端口,应用对应模板上的预留带宽值,具体可如图4所示。
S204,校验配置调整是否成功,如果是,执行S205,如果否,执行S206;
对业务端口应用模板时可以进行相应校验:一个物理端口上的所有子端口与端口的预留带宽的和要小于等于该端口的速率;同一端口(或者子端口)上的所有隧道预留带宽之和不能超过此端口(或者子端口)的预留带宽。只有这两个条件同时满足,才能够校验通过。
网管上可以呈现所有业务端口的模板应用下发情况,例如配置成功或者是配置失败并显示具体的错误信息。这样通过简单操作即可完成海量工程配置,并能有效防止漏配所带来的风险。
S205,将模板配置的预留带宽值作为业务端口的预留带宽。
图4显示了预留带宽配置效果。如图4所示,除第3行外,所有业务端口的配置结果均为“调整成功”,端口的预留带宽为模板1上配置的端口速率的80%;子端口即第9行的预留带宽为模板1上配置的端口速率的10%。
S206,向网络管理员提示错误信息,并指示进行手工检查和配置。
对于校验出错的情况,“调整结果”列中会呈现具体的错误信息,如图4的第3行。此时可以人工分析排查原因,然后手工去调整其业务端口的预留 带宽。
S207,配置结束。
相应的,如图5所示,本发明实施例还提供一种业务端口的预留带宽配置装置,所述装置包括处理器和存储设备,还包括:
确定单元30,用于确定网络中承载相关业务的业务端口;
配置单元32,用于为确定单元30确定的业务端口配置预设的预留带宽。
本发明实施例提供的业务端口的预留带宽配置装置,确定单元30能够在网络中确定出承载相关业务的业务端口,配置单元32能够为所述业务端口配置预设的预留带宽,这样,无需人工逐个网元查找业务端口即可获知所有要配置的业务端口的基本情况,并为每个业务端口配置预设的预留带宽,仅在网管上进行简单几步操作即可完成海量工程配置,大大降低了工程维护难度和工作量。
可选地,确定单元30,可具体用于根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。
可选地,配置单元32具体用于:
根据运营商需求和现场业务情况建立至少一个配置模板;
通过所述配置模板为所述业务端口配置预留带宽。
进一步的,所述装置还可包括校验单元,用于对配置后的所述业务端口进行配置校验。
具体地,所述校验单元可具体用于:
校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的业务速率;
校验每个业务端口对应的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件完成,所述程序可以存储于计算机可读存储介质中,如只读 存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。本发明不限制于任何特定形式的硬件和软件的结合。
当然,本发明还可有其他多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明的权利要求的保护范围。
工业实用性
本发明实施例提供的业务端口的预留带宽配置方法及装置,能够在网络中确定出承载相关业务的业务端口,为所述业务端口配置预设的预留带宽,无需人工逐个网元查找业务端口即可获知所有要配置的业务端口的基本情况,并为每个业务端口配置预设的预留带宽,可以大大降低工程维护难度和工作量。

Claims (12)

  1. 一种业务端口的预留带宽配置方法,包括:
    确定网络中承载相关业务的业务端口;
    为所述业务端口配置预设的预留带宽。
  2. 根据权利要求1所述的方法,其中,所述确定网络中承载相关业务的业务端口包括:
    根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。
  3. 根据权利要求1所述的方法,其中,所述为所述业务端口配置预设的预留带宽具体包括:
    根据运营商需求和现场业务情况建立至少一个配置模板;
    通过所述配置模板为所述业务端口配置预留带宽。
  4. 根据权利要求1至3中任一项所述的方法,在所述为所述业务端口配置预设的预留带宽之后,所述方法还包括:
    对配置后的所述业务端口进行配置校验。
  5. 根据权利要求4所述的方法,其中,所述对配置后的所述业务端口进行配置校验包括:
    校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的端口速率;
    校验每个业务端口对应的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
  6. 一种业务端口的预留带宽配置装置,包括:
    确定单元,设置为确定网络中承载相关业务的业务端口;
    配置单元,设置成为所述确定单元确定的业务端口配置预设的预留带宽。
  7. 根据权利要求6所述的装置,其中,所述确定单元是设置为根据网络拓扑结构和网元基础配置确定网络中承载相关业务的业务端口。
  8. 根据权利要求6所述的装置,其中,所述配置单元是设置为:
    根据运营商需求和现场业务情况建立至少一个配置模板;
    通过所述配置模板为所述业务端口配置预留带宽。
  9. 根据权利要求6至8中任一项所述的装置,其中,所述装置还包括:
    校验单元,设置为对配置后的所述业务端口进行配置校验。
  10. 根据权利要求9所述的装置,其中,所述校验单元是设置为:
    校验每个物理端口中所有业务端口的预留带宽之和是否小于或等于所述每个物理端口的端口速率;
    校验每个业务端口对应的所有隧道预留带宽之和是否小于或等于所述每个业务端口的预留带宽。
  11. 一种计算机程序,包括程序指令,当该程序指令被业务端口的预留带宽配置设备执行时,使得该设备可实施权利要求1-5任一项的方法。
  12. 一种载有权利要求11所述计算机程序的载体。
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