WO2018121715A1 - 网络资源配置的管控方法、装置 - Google Patents

网络资源配置的管控方法、装置 Download PDF

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Publication number
WO2018121715A1
WO2018121715A1 PCT/CN2017/119724 CN2017119724W WO2018121715A1 WO 2018121715 A1 WO2018121715 A1 WO 2018121715A1 CN 2017119724 W CN2017119724 W CN 2017119724W WO 2018121715 A1 WO2018121715 A1 WO 2018121715A1
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Prior art keywords
control device
resource
configuration information
resource configuration
resources
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PCT/CN2017/119724
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English (en)
French (fr)
Inventor
戴娴娴
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中兴通讯股份有限公司
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Publication of WO2018121715A1 publication Critical patent/WO2018121715A1/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
    • H04L41/0806Configuration setting for initial configuration or provisioning, e.g. plug-and-play
    • 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
    • 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
    • H04L41/0895Configuration of virtualised networks or elements, e.g. virtualised network function or OpenFlow elements

Definitions

  • the present invention relates to the field of communications, and in particular, to a method and apparatus for controlling network resource configuration.
  • SDN Software Defined Network
  • NMS network management system
  • An embodiment of the present disclosure provides a management method for network resource configuration, which is applied to a first control device, where the first control device is connected to a network management system NMS or a software-defined network SDN controller set in a whole network, where the NMS And one of the SDN controllers is a first control device, the other of the NMS and SDN controllers is a second control device, and the first control device is connected to the first control device, the management method includes: Acquiring the first resource requirement information of the first control device; and sending resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information.
  • An embodiment of the present disclosure further provides a management device for network resource configuration, which is applied to a first control device, where the first control device is connected to a network management system NMS or a software-defined network SDN controller provided in the entire network, where One of the NMS and the SDN controller is the first control device, the other of the NMS and the SDN controller is the second control device, and the first control device is connected to the first control device, the control device
  • the first acquiring module is configured to acquire the first resource requirement information of the first control device
  • the first sending module configured to send, to the first control device, the entire network resource according to the first resource requirement information Resource configuration information for available resources.
  • An embodiment of the present disclosure further provides a management method for network resource configuration of a whole network, where the entire network is provided with a first control device and a second control device, and the first control device and the second control device are provided.
  • the management method is configured to manage at least a part of network resources of the entire network, and the first control device is different from the second control device, where the management method includes: acquiring first resource requirement information of the first control device; The first resource requirement information, and the resource configuration information of the available resources in the entire network resource is sent to the first control device.
  • the embodiment of the present disclosure further provides a computer readable storage medium storing a computer program, wherein the computer program causes a computer to perform a management method of network resource configuration, and the management method of the network resource configuration is applied to the first control device,
  • the first control device is connected to a network management system NMS or a software defined network SDN controller included in the entire network, wherein one of the NMS and SDN controllers is a first control device, and the NMS and SDN controllers are The other is a second control device, and the first control device is connected to the first control device,
  • the management method includes: acquiring first resource requirement information of the first control device; and according to the first resource requirement information, And transmitting, to the first control device, resource configuration information of resources available in the entire network resource.
  • FIG. 1 is a flow chart showing a method of controlling a network resource configuration of some embodiments of the present disclosure
  • FIG. 2 is a schematic diagram showing the relationship between NMS and SDN controllers and network resources, in accordance with some embodiments of the present disclosure
  • FIG. 3 is a schematic diagram showing the relationship between NMS and SDN controllers and network resources, in accordance with some embodiments of the present disclosure
  • FIG. 4 is a schematic diagram showing the relationship of NMS and SDN controllers to network resources, in accordance with some embodiments of the present disclosure
  • FIG. 5 is a flowchart showing a method of controlling a network resource configuration of some embodiments of the present disclosure
  • FIG. 6 is a structural block diagram of a management device for network resource configuration of some embodiments of the present disclosure.
  • Embodiments of the present disclosure provide a management method for network resource configuration.
  • the management method is applied to the first control device, and the first control device is connected to a network management system NMS or a software-defined network SDN controller provided in the entire network, wherein one of the NMS and the SDN controller As the first control device, the other of the NMS and SDN controllers is the second control device, and the first control device is connected to the first control device. That is, when the first control device is connected to the NMS, the NMS is the first control device, and the SDN controller is the second control device; when the first control device is connected to the SDN controller, the SDN controller is the first control device.
  • the NMS is the second control device.
  • the management method includes the following steps 101 and 102.
  • step 101 first resource requirement information of the first control device is obtained.
  • the first control device is connected to the first control device, and the first control device is capable of acquiring the first resource requirement information that is sent by the first control device in real time.
  • the first control device is the NMS connected to the first control device, and the SDN controller is the second control device.
  • the first control device may acquire the first resource requirement information from the NMS. For example, when the NMS starts or services, the resource requirement information can be sent to the first control device.
  • step 102 the resource configuration information of the available resources in the entire network resource is sent to the first control device according to the first resource requirement information.
  • the first control device when the first control device acquires the first resource requirement information of the first control device, the first control device may send the entire network resource to the first control device according to the first resource requirement information. Resource configuration information for available resources.
  • the first control device only sends the resource configuration information of the available resources in the entire network resource to the first control device, and the first control device can only view and access the resource configuration information of the available resources, and configure the resources for the unavailable resources. Information cannot be viewed and accessed, thereby avoiding conflicts with resources managed by the second control device.
  • the first control device can only obtain the resource configuration information of the available resources, the first control device can only use the resource configuration information of the available resources to perform service opening, thereby ensuring the service corresponding to the first control device and the entire network. The configuration of each network device is matched, and the first control device does not affect the services that other control devices have opened when adjusting the configuration resources.
  • the first control device may be connected to an NMS or SDN controller provided in the entire network, wherein one of the NMS and SDN controllers connected to the first control device may serve as the first control device, and the other of the NMS and the SDN controller One can be used as the second control device.
  • the first control device sends the resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information of the first control device, so that the first control device can only obtain the resource configuration information of the available resources.
  • the resource configuration information of the unavailable resources in the entire network resource cannot be obtained, so that the first control device can only use the resource configuration information of the available resources to manage the resources, and the unavailable resources cannot interfere with the resources.
  • the first control device can only obtain the resource configuration information of the available resource, the first control device can only utilize The service configuration information of the available resources is used to ensure that the services corresponding to the NMS and the SDN controller match the configuration of each device in the network.
  • the step of sending the resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information may include: sending the network resource to the first control device according to the first resource requirement information The resource configuration information of the resource is pre-divided.
  • the available resources of the first control device include pre-dividing resources.
  • the pre-divided resource is a resource that is pre-divided into the first control device, and the resource that is pre-divided into the first control device does not overlap with the resource that is pre-divided into the second control device.
  • the first control device may be disposed within the first control device. Alternatively, the first control device may be disposed outside of the first control device.
  • the entire network resource includes resources pre-divided into the first control device and resources pre-divided into the second control device, and resources pre-divided into the first control device and resources pre-divided into the second control device Do not overlap. That is, the entire network resource is pre-divided into the first control device available resource and the second control device available resource, and the first control device can only view and access the available resources pre-divided to the first control device, and the pre-divided to The available resources of the second control device cannot be viewed and accessed. In this way, it can be ensured that the resources managed by the first control device do not collide with the resources managed by the second control device, and the configuration of the service corresponding to the first control device and the configuration of each network device in the network can be ensured.
  • the NMS is connected to the first control device, ie, the NMS is the first control device and the SDN controller is the second control device.
  • the available resources are pre-divided for the NMS by the first control device, and the available resources are pre-divided for the SDN controller by the second control device, and the available resources pre-divided into the NMS do not overlap with the available resources that are preset to be allocated to the SDN controller.
  • the entire network includes the network device A, the network device B, and the network device C.
  • the fei-0/1 port of the network device A is an available resource pre-divided into the NMS, and then the network device A is The fei-0/1 port is not visible on the SDN controller, that is, the SDN controller cannot view and access the fei-0/1 port.
  • the fei-0/1 port of the network device A in the whole network is an available resource that is pre-divided into the NMS, and for the tunnel tunnel-id in the entire network, the 10000-20000 segment is an available resource pre-divided into the NMS
  • the service is enabled through the SDN controller (for example, a Layer 2 virtual private network (L2VPN) service, such as a multi-segment pseudowire (MS-PW))
  • L2VPN Layer 2 virtual private network
  • MS-PW multi-segment pseudowire
  • the NMS available resources are pre-divided, it is possible to check whether the services already existing on the NMS correspond to the pre-defined NMS available resources. If not, the NMS available resources can be re-divided to make the existing services on the NMS The pre-divided NMS available resources correspond.
  • the step of transmitting the resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information may further include: receiving, by the second control device, the second control device, the entire network resource And the second control device is connected to the second control device; and according to the first resource requirement information and the received resource configuration information of the resource occupied by the second control device in the entire network resource, The control device sends resource configuration information that the second control device does not occupy resources.
  • the available resources of the first control device include that the second control device does not occupy resources.
  • the second control device is coupled to the second control device and the first control device is communicable with the second control device.
  • the first control device may be disposed within the first control device.
  • the first control device can also be arranged outside the first control device.
  • the second control device may be disposed within the second control device.
  • the second control device may be disposed outside of the second control device. In this way, the first control device obtains the resource configuration information of the second control device that does not occupy the resource according to the received resource configuration information of the resource occupied by the second control device in the entire network resource, and sends the second control to the first control device.
  • the resource configuration information of the device that does not occupy resources are examples of the resource configuration information of the device that does not occupy resources.
  • the non-occupied resource of the second control device is used as the available resource of the first control device by using the communication between the first control device and the second control device, which can improve the utilization of the entire network resource and reduce the waste of the entire network resource.
  • the second control device does not occupy the resource as the available resource of the first control device, and increases the resource range of the available resources that the first control device can select when the service is opened, thereby improving the success rate of the service opening.
  • the first control device can only receive the resource configuration information of the second control device that does not occupy the resource, so that the first control device can only perform resource management on the unoccupied resource of the second control device, but does not occupy resources for the second control device.
  • the device can be viewed and accessed, thereby avoiding conflicts between the first control device and the second control device when the resource is managed, and the first control device does not delete or modify the adjustment when the service is opened.
  • the service that has been opened by the control device ensures that the service corresponding to the first control device and the second control device matches the configuration of each device in the network.
  • the first control device when receiving, by the first control device, resource configuration information of resources occupied by the second control device in the entire network resource, the first control device may first distinguish the first control device and the second control device into Main control unit and standby control unit. In some embodiments, the primary control device and the standby control device can be distinguished based on the activation times of the first control device and the second control device. According to an embodiment of the present disclosure, when the startup time of the first control device is earlier than the startup time of the second control device, the first control device is the main control device, and the first control device may receive the real-time transmission of the second control device. The resource configuration information of the resources occupied by the second control device in the entire network resource.
  • the first control device when the startup time of the first control device is later than the startup time of the second control device, the first control device is a standby control device, and the first control device may first send one to the second control device. Querying the query information of the resource configuration information of the resource occupied by the second control device in the entire network resource, and then receiving the resource configuration information of the resource occupied by the second control device in the whole network resource sent by the second control device according to the query message.
  • the NMS is connected to the first control device, that is, the NMS is the first control device
  • the SDN controller connected to the second control device is the second control device
  • the first control Communication between the device and the second control device is possible.
  • the start-up time of the first control device is earlier than the start-up time of the second control device, that is, the first control device is the main control device, and the second control device is the standby control device.
  • the second control device when the SDN controller is enabled, that is, when there is a resource requirement, the second control device sends a query message for querying the resource configuration information of the resource occupied by the NMS in the entire network resource to the first control device, thereby obtaining The NMS does not occupy resource configuration information of the resource, and uses the NMS unoccupied resource as an available resource of the SDN controller.
  • the second control device when the SDN controller is enabled to perform the service, may also send, to the first control device, a query message for querying whether the NMS occupies the resource configuration required for the service opening, according to the resource configuration information required for the service to be activated. And receiving a feedback message that the resource configuration required for the service provisioning fed back by the first control device is an available resource.
  • the service can be opened; if the resources required for the service provisioning are configured as unavailable resources, an error is reported. For example, the return indicates that the service cannot be opened because the resources are not available. Message.
  • the SDN controller starts the service, the SDN controller can be used to open the service.
  • the resources occupied by the service are released, so as to increase the proportion of the unoccupied resources in the entire network and improve the utilization of the entire network.
  • the first control device may be further connected to the second control device.
  • the step of sending the resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information may include: Receiving, by the second control device, the resource configuration information of the resources occupied by the second control device in the whole network resource; and configuring, according to the first resource requirement information, the resource configuration of the resource occupied by the second control device in the entire network resource And sending, to the first control device, resource configuration information that the second control device does not occupy resources.
  • the available resources of the first control device include that the second control device does not occupy resources.
  • the first control device is simultaneously connected to the first control device and the second control device, and both the first control device and the second control device can communicate with the first control device.
  • the first control device can directly obtain the resource configuration information of the resources occupied by the second control device in the entire network resource, so as to obtain the resource configuration information that the second control device does not occupy the resource.
  • the first control device uniformly manages the entire network resource, and when the first control device has a resource requirement, the resource configuration information of the second control device that does not occupy the resource in the entire network resource is sent to the first control device, thereby increasing the management of the entire network resource. Convenience.
  • the first control device sends the resource configuration information of the second control device that does not occupy the resource in the entire network resource to the first control device, and increases the resource range of the available resources that the first control device can select when the service is opened, thereby improving The success rate of business opening.
  • the first control device can only receive the resource configuration information that the second control device does not occupy the resource, thereby avoiding the conflict between the first control device and the resource occupied by the second control device when managing the resource, and When the control device is enabled, the service of the second control device is not deleted or modified, and the configuration of the service corresponding to the first control device and the second control device and the configuration of each device in the network are matched.
  • the NMS is a first control device
  • the SDN controller is a second control device
  • the first control device is simultaneously connected to the NMS and the SDN controller
  • both the NMS and the SDN controller are It is capable of communicating with the first control device.
  • the SDN controller may send the first resource requirement information to the first control device, and then receive the first control device according to the first resource requirement information.
  • the resource configuration information of the NMS that does not occupy the resource that is, the resource configuration information of the available resources of the SDN controller.
  • the service can be opened; if the available resources of the SDN controller do not include the resources required for the provisioning service, the service cannot be opened, and if the service fails, the service needs to be opened. Release the resources used when the business is opened.
  • the first control device is a core device for managing the entire network resource, and needs to ensure the reliability of the first control device (supporting a high-availability cluster), such as supporting active/standby. In addition, when the first control device is restarted, in addition to recovering the data itself, it is necessary to retrieve data from the first control device and the second control device and refresh.
  • the resource configuration information of the available resources in the entire network resource is sent to the first control device, so that the first control device can only manage the resource by using the resource configuration information of the available resource, but cannot use the unavailable resource.
  • the first control device can only use the resource configuration information of the available resources to perform service provisioning, and ensure that the service corresponding to the NMS and the SDN controller matches the configuration of each device in the network.
  • Embodiments of the present disclosure also provide a management method for network resource configuration.
  • FIG. 5 is a flow chart showing a method of controlling a network resource configuration of some embodiments of the present disclosure.
  • the first control device is further coupled to the second control device, as shown in FIG. 5, the control method comprising the following steps 501 and 502.
  • step 501 second resource requirement information of the second control device is obtained.
  • the first control device is further connected to the second control device, and the first control device is capable of acquiring the second resource requirement information of the second control device in real time.
  • the second control device starts or activates the service
  • the second resource requirement information may be sent to the first control device.
  • the NMS is the first control device
  • the SDN controller is the second control device.
  • the first control device is also connected to the SDN controller while being connected to the NMS.
  • the SDN controller starts or starts the service
  • the first control device acquires the second resource requirement information of the SDN controller.
  • step 502 the resource configuration information of the available resources in the entire network resource is sent to the second control device according to the second resource requirement information.
  • the second control device may send the entire network resource according to the second resource requirement information. Resource configuration information for available resources.
  • the first control device sends the resource configuration information of the available resources in the entire network resource to the second control device according to the second resource requirement information of the second control device, so that the second control device can only obtain the resource configuration information of the available resources.
  • the resource configuration information of the unavailable resources in the entire network resource cannot be obtained, so that the second control device can only use the resource configuration information of the available resources to manage the resources, and the unavailable resources cannot interfere with the resources.
  • the step of sending the resource configuration information of the available resources in the entire network resource to the second control device according to the second resource requirement information may include: receiving, by the first control device, the first control device in real time The resource configuration information of the resources occupied by the first control device is sent to the second control device according to the second resource requirement information and the resource configuration information of the resources occupied by the first control device in the entire network resource Resource configuration information.
  • the available resources of the second control device include that the first control device does not occupy resources.
  • the first control device can directly obtain the resource configuration information of the resources occupied by the first control device in the entire network resource, so as to obtain the resource configuration information that the first control device does not occupy the resource.
  • the first control device uniformly manages the entire network resource, and when the second control device has a resource requirement, the resource configuration information of the first control device that does not occupy the resource in the entire network resource is sent to the second control device, thereby increasing the management of the entire network resource. Convenience.
  • the first control device sends the resource configuration information that the first control device does not occupy the resource in the entire network resource to the second control device, and increases the resource range of the available resources that the second control device can select when the service is opened, thereby improving The success rate of business opening.
  • the second control device can only receive the resource configuration information that the first control device does not occupy the resource, thereby avoiding the conflict between the second control device and the resource occupied by the first control device when managing the resource, and
  • the second control device is enabled, the services of the first control device and the second control device are matched and the configuration of each device in the network is matched.
  • resource configuration information of the resources occupied by the first control device in the entire network resource and the second control device may be obtained.
  • the resource configuration information of the available resources of the second control device is sent, and the utilization of the resources of the entire network is improved while avoiding the conflict between the resources managed by the first control device and the resources managed by the second control device.
  • Embodiments of the present disclosure also provide a management device for network resource configuration.
  • 6 is a structural block diagram of a management device for network resource configuration of some embodiments of the present disclosure.
  • the control device is applied to the first control device, and one of the network management system NMS and the software-defined network SDN controller provided in the entire network is the first control device, and the other of the NMS and the SDN controller.
  • the second control device is connected to the first control device.
  • control device may include: a first obtaining module 601 configured to acquire first resource requirement information of the first control device; and a first sending module 602 configured to be configured according to the first resource requirement information And transmitting, to the first control device, resource configuration information of available resources in the entire network resource.
  • the first sending module 602 is configured to: according to the first resource requirement information, send resource configuration information of a pre-divided resource in the whole network resource to the first control device.
  • the available resources of the first control device include the pre-divided resources.
  • the first sending module 602 includes: a first receiving unit, configured to receive resource configuration information of resources occupied by the second control device in the entire network resource sent by the second control device, where The second control device is connected to the second control device; and the first sending unit is configured to allocate, according to the first resource requirement information, the resource configuration of the resource occupied by the second control device in the entire network resource And sending, to the first control device, resource configuration information that the second control device does not occupy resources.
  • the available resources of the first control device include that the second control device does not occupy resources.
  • the first receiving unit is further configured to: send a query to the second control device when a start time of the first control device is later than a start time of the second control device An inquiry message of the resource configuration information of the resource occupied by the second control device in the entire network resource; and receiving the resource occupied by the second control device in the whole network resource sent by the second control device according to the query message Resource configuration information.
  • the first control device is further connected to the second control device, and the first sending module 602 includes: a second receiving unit, configured to receive the And the second sending unit is configured to use the first resource requirement information and the received second control device in the entire network resource according to the resource configuration information of the resource occupied by the second network control device;
  • the resource configuration information of the resource is used to send, to the first control device, resource configuration information that the second control device does not occupy resources.
  • the available resources of the first control device include that the second control device does not occupy resources.
  • the first control device is further connected to the second control device, the control device further includes: a second acquisition module, configured to acquire second resource requirement information of the second control device; And a sending module, configured to send resource configuration information of available resources in the entire network resource to the second control device according to the second resource requirement information.
  • the second sending module includes: a third receiving unit, configured to receive resource configuration information of resources occupied by the first control device in the entire network resource sent by the first control device in real time; a sending unit, configured to send, to the second control device, the first control device according to the second resource requirement information and the received resource configuration information of the resource occupied by the first control device in the entire network resource Resource configuration information that occupies resources.
  • the available resources of the second control device include that the first control device does not occupy resources.
  • the management device transmits the resource configuration information of the available resources in the entire network resource to the first control device according to the first resource requirement information of the first control device, thereby avoiding the NMS and SDN control in the prior art.
  • Embodiments of the present disclosure also provide a computer readable storage medium storing a computer program, wherein the computer program causes a computer to perform a management method of network resource configuration, and the management method of the network resource configuration is applied to the first control device
  • the first control device is connected to a network management system NMS or a software-defined network SDN controller provided in the entire network, wherein the NMS or SDN controller to which the first control device is connected is a first control device, the NMS And the other one of the SDN controllers that is the first control device is the second control device, the management method includes: acquiring the first resource requirement information of the first control device; and according to the first resource requirement information, The first control device sends resource configuration information of available resources in the entire network resource.
  • first control device and the second control device in the present disclosure are not limited to NMS and SDN controllers. More specifically, the present disclosure can be applied to any environment that performs multi-head management of network resources, and achieves similar effects.
  • an embodiment of the present disclosure further provides a management method for network resource configuration of a whole network, where the entire network is provided with a first control device and a second control device, and the first control device and the first The second control device is configured to manage at least a part of network resources of the entire network, and the first control device is different from the second control device, and the control method includes: acquiring first resource requirement information of the first control device And sending, according to the first resource requirement information, resource configuration information of available resources in the entire network resource to the first control device.
  • All or part of the steps of the above embodiments may also be implemented using an integrated circuit. These steps may be separately fabricated into individual integrated circuit modules, or a plurality of modules or steps may be implemented as a single integrated circuit module.
  • the apparatus/function modules/functional units of 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 of the above embodiment When the device/function module/functional unit of 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.

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Abstract

提供了一种网络资源配置的管控方法及装置。所述管控方法应用于第一控制装置,第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接。NMS和SDN控制器中的一者为第一控制设备,NMS和SDN控制器中的另一者为第二控制设备。所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根据第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息。

Description

网络资源配置的管控方法、装置 技术领域
本发明涉及通信领域,尤其涉及网络资源配置的管控方法、装置。
背景技术
软件定义网络(Software Defined Network,SDN)技术具有很多优点,例如,网络流量的灵活控制;简化转发设备,使之标准化;终端用户可以自行开发网络新功能。
在传统网络向SDN网络的演进时,一个重要的问题是,在传统网络的网络管理系统(Network Management System,NMS)和SDN控制器的共同管理下,如何避免共同管理下的网络资源冲突以及如何保证NMS和SDN控制器对应的业务和网络中每台设备的配置匹配,并且在一方(例如SDN)调整配置时,不会影响到另一方(例如NMS)已开通的业务。
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。
本公开的实施例提供了一种网络资源配置的管控方法,应用于第一控制装置,所述第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中NMS和SDN控制器中的一者为第一控制设备,所述NMS和SDN控制器中的另一者为第二控制设备,并且第一控制装置与第一控制设备连接,所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
本公开的实施例还提供了一种网络资源配置的管控装置,应用于第一控制装置,所述第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中NMS和SDN控制器中的一 者为第一控制设备,所述NMS和SDN控制器中的另一者为第二控制设备,且第一控制设装置与第一控制设备连接,所述管控装置包括:第一获取模块,用于获取第一控制设备的第一资源需求信息;以及第一发送模块,用于根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
本公开的实施例还提供了一种整网的网络资源配置的管控方法,所述整网中设置有第一控制设备和第二控制设备,所述第一控制设备和所述第二控制设备分别配置为对整网的至少一部分网络资源进行管理,并且所述第一控制设备不同于所述第二控制设备,所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
本公开实施例还提供了一种存储有计算机程序的计算机可读存储介质,其中所述计算机程序使计算机执行网络资源配置的管控方法,所述网络资源配置的管控方法应用于第一控制装置,所述第一控制装置与整网包括的网络管理系统NMS或软件定义网络SDN控制器连接,其中所述NMS和SDN控制器中的一者为第一控制设备,所述NMS和SDN控制器中的另一者为第二控制设备,并且第一控制装置与第一控制设备连接,所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
附图说明
图1是示出本公开的一些实施例的网络资源配置的管控方法的流程图;
图2是示出本公开的一些实施例的NMS和SDN控制器与整网资源的关系的示意图;
图3是示出本公开的一些实施例的NMS和SDN控制器与整网资源的关系的示意图;
图4是示出本公开的一些实施例的NMS和SDN控制器与整网资 源的关系的示意图;
图5是示出本公开的一些实施例的网络资源配置的管控方法的流程图;以及
图6是示出本公开的一些实施例的网络资源配置的管控装置的结构框图。
具体实施方式
下面将参照附图更详细地描述本公开的示例性实施例。虽然附图中显示了本公开的示例性实施例,然而应当理解,可以以各种形式实现本公开而不应被这里阐述的实施例所限制。相反,提供这些实施例是为了能够更透彻地理解本公开,并且能够将本公开的范围完整的传达给本领域的技术人员。
本公开的实施例提供了一种网络资源配置的管控方法。在一些实施例中,该管控方法应用于第一控制装置,且第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中NMS和SDN控制器中的一者为第一控制设备,NMS和SDN控制器中的另一者为第二控制设备,且第一控制装置与第一控制设备连接。也就是说,当第一控制装置与NMS连接时,NMS为第一控制设备,SDN控制器为第二控制设备;当第一控制装置与SDN控制器连接时,SDN控制器为第一控制设备,NMS为第二控制设备。
图1是示出本公开的一些实施例的网络资源配置的管控方法的流程图。如图1所示,在一些实施例中,该管控方法包括如下步骤101和102。
在步骤101,获取第一控制设备的第一资源需求信息。
在本步骤中,根据本公开的实施例,第一控制装置和第一控制设备连接,第一控制装置能够获取第一控制设备实时发送的第一资源需求信息。根据本公开的实施例,假设与第一控制装置连接第一控制设备为NMS,则SDN控制器为第二控制设备,此时,第一控制装置可以从NMS获取第一资源需求信息。例如,当NMS启动或开通业务时,均可以向第一控制装置发送资源需求信息。
在步骤102,根据第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息。
在本步骤中,根据本公开的实施例,当第一控制装置获取到第一控制设备的第一资源需求信息时,可以根据该第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息。
这样,第一控制装置仅将整网资源中可用资源的资源配置信息发送至第一控制设备,则第一控制设备只能查看并访问可用资源的资源配置信息,并且对于不可用资源的资源配置信息不能够进行查看并访问,从而避免了与第二控制设备管理的资源之间的冲突。此外,由于第一控制设备只能获取到可用资源的资源配置信息,因此第一控制设备只能利用可用资源的资源配置信息进行业务开通,从而保证了第一控制设备对应的业务和整网中每台网络设备的配置匹配,且保证了第一控制设备在调整配置资源时不会影响到其他控制设备已开通的业务。
第一控制装置可以与整网中设置的NMS或SDN控制器连接,其中NMS和SDN控制器中与第一控制装置连接的一者可以作为第一控制设备,而NMS和SDN控制器中的另一者可以作为第二控制设备。这样,第一控制装置根据第一控制设备的第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息,使得第一控制设备只能获取到可用资源的资源配置信息,而对整网资源中不可用资源的资源配置信息则不能获取到,从而使得第一控制设备只能利用可用资源的资源配置信息对资源进行管理,而对不可用资源则不能进行干涉,避免了第一控制设备在对资源进行管理时与第二控制设备管理的资源之间的冲突;此外,由于第一控制设备只能获取到可用资源的资源配置信息,因此第一控制设备只能利用可用资源的资源配置信息进行业务开通,保证了NMS和SDN控制器对应的业务和网络中每台设备的配置匹配。
在一些实施例中,根据第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息的步骤可以包括:根据第一资源需求信息,向第一控制设备发送整网资源中预先划分资源的资源配 置信息。
根据本公开的实施例,第一控制设备的可用资源包括预先划分资源。例如,该预先划分资源为预先划分至第一控制设备的资源,且预先划分至第一控制设备的资源与预先划分至第二控制设备的资源不重叠。根据本公开的实施例,第一控制装置可以设置在第一控制设备内。可替换地,第一控制装置可以设置在第一控制设备的外部。
在一些实施例中,整网资源包括预先划分至第一控制设备的资源和预先划分至第二控制设备的资源,且预先划分至第一控制设备的资源与预先划分至第二控制设备的资源不重叠。也就是说,整网资源预先划分为第一控制设备可用资源和第二控制设备可用资源,且第一控制设备只能够查看并访问预先划分至第一控制设备的可用资源,而对预先划分至第二控制设备的可用资源则不能够进行查看并访问。这样,可以保证第一控制设备管理的资源不会和第二控制设备管理的资源发生冲突,且能够保证第一控制设备对应的业务和网络中每台网络设备的配置匹配。
下面,以示例方式,结合图2对根据本公开的实施例的网络资源配置的管控方法进行说明。
图2是示出本公开的一些实施例的NMS和SDN控制器与整网资源的关系的示意图。如图2所示,在一些实施例中,NMS与第一控制装置连接,即,NMS为第一控制设备,SDN控制器为第二控制设备。此时,通过第一控制装置针对NMS预先划分可用资源,通过第二控制装置针对SDN控制器预先划分可用资源,且预先划分至NMS的可用资源与预设划分至SDN控制器的可用资源不重叠。根据本公开的实施例,例如,整网中包括网络设备A、网络设备B和网络设备C,网络设备A的fei-0/1端口为预先划分至NMS的可用资源,则该网络设备A的fei-0/1端口在SDN控制器上不可见,即SDN控制器不能够查看并访问该fei-0/1端口。又例如,如果整网中网络设备A的fei-0/1端口为预先划分至NMS的可用资源,且对于整网中隧道tunnel-id,10000-20000区段为预先划分至NMS的可用资源,则通过SDN控制器开通业务时(例如,二层虚拟专用网(L2VPN)业务,比如多段伪线 (MS-PW)),该业务不能用在网络设备A的fei-0/1端口上,且不会承载在10000-20000区段的隧道上。此外,在预先划分NMS可用资源时,可以查看NMS上已经存在的业务是否与预先划分的NMS可用资源相对应,如果不相对应,则可以重新划分NMS可用资源,使NMS上已经存在的业务与预先划分的NMS可用资源相对应。
在一些实施例中,根据第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息的步骤还可以包括:接收第二控制装置发送的第二控制设备在整网资源中所占用资源的资源配置信息,第二控制装置与第二控制设备连接;根据第一资源需求信息和接收到的第二控制设备在整网资源中所占用资源的资源配置信息,向第一控制设备发送第二控制设备未占用资源的资源配置信息。根据本公开的实施例,第一控制设备的可用资源包括第二控制设备未占用资源。
在一些实施例中,第二控制设备与第二控制装置连接,且第一控制装置可以与第二控制装置进行通信。根据本公开的实施例,第一控制装置可以设置在第一控制设备内。可替换地,第一控制装置也可以设置在第一控制设备的外部。根据本公开的实施例,第二控制装置可以设置在第二控制设备内。可替换地,第二控制装置可以设置在第二控制设备的外部。这样,第一控制装置根据接收到的第二控制设备在整网资源中所占用资源的资源配置信息,得到第二控制设备未占用资源的资源配置信息,并向第一控制设备发送第二控制设备未占用资源的资源配置信息。通过第一控制装置和第二控制装置的通信,将第二控制设备未占用资源作为第一控制设备的可用资源,可以提高整网资源的利用率,减少整网资源的浪费。此外,将第二控制设备未占用资源作为第一控制设备的可用资源,增加了第一控制设备在开通业务时能够选择的可用资源的资源范围,从而提高了业务开通的成功率。另外,第一控制设备只能够接收到第二控制设备未占用资源的资源配置信息,使得第一控制设备只能对第二控制设备未占用资源进行资源管理,而对第二控制设备占用资源不能够进行查看和访问,从而避免了第一控制设备在对资源进行管理时与第二控制设备占用资源之间 的冲突,且第一控制设备在开通业务时,也不会误删除或修改调整第二控制设备已开通的业务,保证了第一控制设备和第二控制设备对应的业务和网络中每台设备的配置匹配。
在一些实施例中,第一控制装置在接收第二控制装置发送的第二控制设备在整网资源中所占用资源的资源配置信息时,可以先将第一控制装置和第二控制装置区分为主控制装置和备控制装置。在一些实施例中,可以根据第一控制装置和第二控制装置的启动时间来区分主控制装置和备控制装置。根据本公开的实施例,当第一控制装置的启动时间早于第二控制装置的启动时间时,第一控制装置为主控制装置,此时第一控制装置可以接收第二控制装置实时发送的第二控制设备在整网资源中所占用资源的资源配置信息。根据本公开的实施例,当第一控制装置的启动时间晚于第二控制装置的启动时间时,第一控制装置为备控制装置,此时第一控制装置可以先向第二控制装置发送一查询第二控制设备在整网资源中所占用资源的资源配置信息的查询消息,然后接收第二控制装置根据查询消息发送的第二控制设备在整网资源中所占用资源的资源配置信息。
下面,以示例方式,结合图3对根据本公开的实施例的网络资源配置的管控方法进行说明。
图3是示出本公开的一些实施例的NMS和SDN控制器与整网资源的关系的示意图。如图3所示,在一些实施例中,NMS与第一控制装置连接,即,NMS为第一控制设备,而与第二控制装置连接的SDN控制器为第二控制设备,且第一控制装置与第二控制装置之间能够进行通信。这里,假设第一控制装置的启动时间早于第二控制装置的启动时间时,即,第一控制装置为主控制装置,第二控制装置为备控制装置。在这种情况下,当SDN控制器开通业务时,即有资源需求时,第二控制装置向第一控制装置发送查询NMS在整网资源中所占用资源的资源配置信息的查询消息,从而获取NMS未占用资源的资源配置信息,并将该NMS未占用资源作为SDN控制器可用资源。在一替代实施例中,当SDN控制器开通业务时,第二控制装置也可以根据业务开通所需资源配置信息,向第一控制装置发送查询NMS是否占用业务开 通所需资源配置的查询消息,并接收第一控制装置反馈的业务开通所需资源配置是否为可用资源的反馈消息。此时,若业务开通所需资源配置为可用资源,则可以进行业务开通;若业务开通所需资源配置为不可用资源,则报错,例如返回表示“因获取不到资源,业务无法开通”的消息。这样,当SDN控制器开通业务时,可以利用SDN控制器可用资源开通业务。此外,若SDN控制器业务开通失败,则需要将开通业务时所占用资源进行释放,以增加整网资源中未占用资源的比例,提高整网资源的利用率。
在一些实施例中,第一控制装置还可以与第二控制设备连接,此时,根据第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息的步骤可以包括:接收第二控制设备实时发送的第二控制设备在整网资源中所占用资源的资源配置信息;根据第一资源需求信息和接收到的第二控制设备在整网资源中所占用资源的资源配置信息,向第一控制设备发送第二控制设备未占用资源的资源配置信息。根据本公开的实施例,第一控制设备的可用资源包括第二控制设备未占用资源。
在此情况下,第一控制装置同时和第一控制设备和第二控制设备连接,且第一控制设备和第二控制设备均可以与第一控制装置进行通信。这样,第一控制装置可以直接获取到第二控制设备在整网资源中所占用资源的资源配置信息,从而获取到第二控制设备未占用资源的资源配置信息。通过第一控制装置统一管理整网资源,在第一控制设备有资源需求时,将整网资源中第二控制设备未占用资源的资源配置信息发送给第一控制设备,增加了整网资源管理的便捷性。此外,第一控制装置将整网资源中第二控制设备未占用资源的资源配置信息发送给第一控制设备,增加了第一控制设备在开通业务时能够选择的可用资源的资源范围,从而提高了业务开通的成功率。另外,第一控制设备只能接收到第二控制设备未占用资源的资源配置信息,从而避免了第一控制设备在对资源进行管理时与第二控制设备占用资源之间的冲突,且使得第一控制设备在开通业务时,也不会误删除或修改调整第二控制设备已开通的业务,保证了第一控制设备和第二控制 设备对应的业务和网络中每台设备的配置匹配。
下面,以示例方式,结合图4对根据本公开的实施例的网络资源配置的管控方法进行说明。
图4是示出本公开的一些实施例的NMS和SDN控制器与整网资源的关系的示意图。如图4所示,在一些实施例中,例如,NMS为第一控制设备,SDN控制器为第二控制设备,第一控制装置同时与NMS和SDN控制器连接,且NMS和SDN控制器均能与第一控制装置进行通信。例如,当通过SDN控制器开通业务(例如,L2VPN业务,比如MS-PW)时,SDN控制器可以向第一控制装置发送第一资源需求信息,然后接收第一控制装置根据第一资源需求信息发送的NMS未占用资源的资源配置信息,即SDN控制器可用资源的资源配置信息。此时,若SDN控制器可用资源中包括开通业务所需资源,则可以进行业务开通;若SDN控制器可用资源中不包括开通业务所需资源,则无法开通业务,若业务开通失败,则需要释放开通业务时所占用资源。另外,第一控制装置作为管理整网资源的核心装置,需要保证第一控制装置的可靠性(支持高可用性集群),如支持主备。另外,在第一控制装置整机重启时,除了需要恢复自身保存数据以外,还需要向第一控制设备和第二控制设备捞取数据并刷新。
根据本公开的实施例,向第一控制设备发送整网资源中可用资源的资源配置信息,使得第一控制设备只能利用可用资源的资源配置信息对资源进行管理,而对不可用资源则不能进行干涉,从而使得第一控制设备在对资源进行管理时不会与其他控制设备管理或占用的资源发生冲突;此外,由于第一控制设备只能获取到可用资源的资源配置信息,因此第一控制设备只能利用可用资源的资源配置信息进行业务开通,保证了NMS和SDN控制器对应的业务和网络中每台设备的配置匹配。
本公开的实施例还提供了一种网络资源配置的管控方法。图5是示出本公开的一些实施例的网络资源配置的管控方法的流程图。在一些实施例中,第一控制装置还与第二控制设备连接,如图5所示,该管控方法包括如下步骤501和502。
在步骤501,获取第二控制设备的第二资源需求信息。
在本步骤中,根据本公开的实施例,第一控制装置还与第二控制设备连接,且第一控制装置能够实时获取第二控制设备的第二资源需求信息。根据本公开的实施例,在第二控制设备启动或开通业务时,可用向第一控制装置发送第二资源需求信息。例如,如图4所示,假设NMS为第一控制设备,SDN控制器为第二控制设备,第一控制装置在与NMS连接的同时,还与SDN控制器连接。当SDN控制器启动或开通业务时,第一控制装置获取SDN控制器的第二资源需求信息。
在步骤502,根据第二资源需求信息,向第二控制设备发送整网资源中可用资源的资源配置信息。
在本步骤中,根据本公开的实施例,当第一控制装置获取到第二控制设备的第二资源需求信息时,可以根据该第二资源需求信息,向第二控制设备发送整网资源中可用资源的资源配置信息。
这样,第一控制装置根据第二控制设备的第二资源需求信息,向第二控制设备发送整网资源中可用资源的资源配置信息,使得第二控制设备只能获取到可用资源的资源配置信息,而对整网资源中不可用资源的资源配置信息则不能获取到,从而使得第二控制设备只能利用可用资源的资源配置信息对资源进行管理,而对不可用资源则不能进行干涉,避免了第二控制设备在对资源进行管理时与第一控制设备管理的资源之间的冲突;此外,由于第二控制设备只能获取到可用资源的资源配置信息,因此第二控制设备只能利用可用资源的资源配置信息进行业务开通,保证了NMS和SDN控制器对应的业务和网络中每台设备的配置匹配。
在一些实施例中,根据第二资源需求信息,向第二控制设备发送整网资源中可用资源的资源配置信息的步骤可以包括:接收第一控制设备实时发送的第一控制设备在整网资源中所占用资源的资源配置信息;根据第二资源需求信息和接收到的第一控制设备在整网资源中所占用资源的资源配置信息,向第二控制设备发送第一控制设备未占用资源的资源配置信息。根据本公开的实施例,第二控制设备的可用资源包括第一控制设备未占用资源。
这样,第一控制装置可以直接获取到第一控制设备在整网资源中所占用资源的资源配置信息,从而获取到第一控制设备未占用资源的资源配置信息。通过第一控制装置统一管理整网资源,在第二控制设备有资源需求时,将整网资源中第一控制设备未占用资源的资源配置信息发送给第二控制设备,增加了整网资源管理的便捷性。此外,第一控制装置将整网资源中第一控制设备未占用资源的资源配置信息发送给第二控制设备,增加了第二控制设备在开通业务时能够选择的可用资源的资源范围,从而提高了业务开通的成功率。另外,第二控制设备只能接收到第一控制设备未占用资源的资源配置信息,从而避免了第二控制设备在对资源进行管理时与第一控制设备占用资源之间的冲突,且使得第二控制设备在开通业务时,也不会误删除或修改调整第一控制设备已开通的业务,保证了第一控制设备和第二控制设备对应的业务和网络中每台设备的配置匹配。
根据本公开的实施例,当第一控制装置与第一控制设备和第二控制设备均连接时,可以获取第一控制设备在整网资源中所占用资源的资源配置信息和第二控制设备在整网资源中所占用资源的资源配置信息,从而使得第一控制装置可以对整网资源进行管控,进而能够对第一控制设备发送第一控制设备可用资源的资源配置信息,对第二控制设备发送第二控制设备可用资源的资源配置信息,在避免了第一控制设备所管理的资源和第二控制设备所管理的资源之间的冲突的同时,提高了整网资源的利用率。
本公开的实施例还提供了一种网络资源配置的管控装置。图6是示出本公开的一些实施例的网络资源配置的管控装置的结构框图。在一些实施例中,管控装置应用于第一控制装置,整网中设置的网络管理系统NMS和软件定义网络SDN控制器中的一者为第一控制设备,NMS和SDN控制器中的另一者为第二控制设备,所述第一控制装置与第一控制设备连接。
如图6所示,所述管控装置可以包括:第一获取模块601,配置为获取第一控制设备的第一资源需求信息;以及第一发送模块602,配置为根据所述第一资源需求信息,向所述第一控制设备发送整网资 源中可用资源的资源配置信息。
在一些实施例中,所述第一发送模块602配置为:根据所述第一资源需求信息,向所述第一控制设备发送整网资源中预先划分资源的资源配置信息。根据本公开的实施例,第一控制设备的可用资源包括所述预先划分资源。
在一些实施例中,所述第一发送模块602包括:第一接收单元,配置为接收第二控制装置发送的所述第二控制设备在整网资源中所占用资源的资源配置信息,所述第二控制装置与所述第二控制设备连接;以及第一发送单元,用于根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述第一控制设备发送第二控制设备未占用资源的资源配置信息。根据本公开的实施例,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
在一些实施例中,所述第一接收单元还配置为:当所述第一控制装置的启动时间晚于所述第二控制装置的启动时间时,向所述第二控制装置发送一查询所述第二控制设备在整网资源中所占用资源的资源配置信息的查询消息;以及接收所述第二控制装置根据所述查询消息发送的所述第二控制设备在整网资源中所占用资源的资源配置信息。
在一些实施例中,所述第一控制装置还与所述第二控制设备连接,所述第一发送模块602包括:第二接收单元,用于接收所述第二控制设备实时发送的所述第二控制设备在整网资源中所占用资源的资源配置信息;以及第二发送单元,用于根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述第一控制设备发送第二控制设备未占用资源的资源配置信息。根据本公开的实施例,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
在一些实施例中,所述第一控制装置还与所述第二控制设备连接,所述管控装置还包括:第二获取模块,用于获取第二控制设备的第二资源需求信息;以及第二发送模块,用于根据所述第二资源需求 信息,向所述第二控制设备发送整网资源中可用资源的资源配置信息。
在一些实施例中,所述第二发送模块包括:第三接收单元,用于接收所述第一控制设备实时发送的第一控制设备在整网资源中所占用资源的资源配置信息;以及第三发送单元,用于根据所述第二资源需求信息和接收到的所述第一控制设备在整网资源中所占用资源的资源配置信息,向所述第二控制设备发送第一控制设备未占用资源的资源配置信息。根据本公开的实施例,所述第二控制设备的可用资源包括所述第一控制设备未占用资源。
根据本公开的实施例,管控装置通过根据第一控制设备的第一资源需求信息,向第一控制设备发送整网资源中可用资源的资源配置信息,避免了现有技术中在NMS和SDN控制器共同管理时的网络资源冲突,以及保证了NMS和SDN控制器对应的业务和网络中每台设备的配置匹配。
本公开的实施例还提供了一种存储有计算机程序的计算机可读存储介质,其中所述计算机程序使计算机执行网络资源配置的管控方法,所述网络资源配置的管控方法应用于第一控制装置,所述第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中所述第一控制装置所连接的NMS或SDN控制器为第一控制设备,所述NMS和SDN控制器中为第一控制设备外的另一个为第二控制设备,所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
本领域技术人员应当理解,本公开中的第一控制设备和第二控制设备不限于NMS和SDN控制器。更确切地说,本公开可以应用于对网络资源进行多头管理的任何环境中,并且实现相类似的效果。
相应地,本公开的实施例还提供了一种整网的网络资源配置的管控方法,所述整网中设置有第一控制设备和第二控制设备,所述第一控制设备和所述第二控制设备分别配置为对整网的至少一部分网络资源进行管理,并且所述第一控制设备不同于所述第二控制设备,所述管控方法包括:获取第一控制设备的第一资源需求信息;以及根 据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
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。
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。
出于示意和描述目的已示出对本发明实施例的上述描述。其并非旨在穷举或将本发明限制为所公开的确切形式或示例性实施例。因此,上述描述应当被认为是示意性的而非限制性的。显然,许多修改和变形对于本领域技术人员而言将是显而易见的。选择和描述这些实施例是为了解释本发明的原理和其最佳方式的实际应用,从而使得本领域技术人员能够理解本发明适用于特定用途或所构思的实施方式的各种实施例及各种变型。本发明的范围旨在由所附权利要求及其等同形式限定,其中除非另有说明,否则所有术语以其最宽的合理意义解释。因此,术语“发明”、“本发明”等不一定将权利范围限制为具体实施例,并且对本发明示例性实施例的参考不隐含对本发明的限制,并且不应推断出这种限制。本发明仅由随附权利要求的精神和范围限定。此外,这些权利要求可涉及使用跟随有名词或元素的“第一”、“第二”等术语。这种术语应当理解为一种命名方式而非意在 对由这种命名方式修饰的元素的数量进行限制,除非给出具体数量。所描述的任何优点和益处不一定适用于本发明的全部实施例。应当认识到的是,本领域技术人员在不脱离随附权利要求所限定的本发明的范围的情况下可以对所描述的实施例进行变化。

Claims (16)

  1. 一种网络资源配置的管控方法,应用于第一控制装置,所述第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中所述NMS和SDN控制器中的一者为第一控制设备,所述NMS和SDN控制器中的另一者为第二控制设备,并且所述第一控制装置与第一控制设备连接,所述管控方法包括:
    获取第一控制设备的第一资源需求信息;以及
    根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
  2. 根据权利要求1所述的网络资源配置的管控方法,其中,根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息的步骤包括:
    根据所述第一资源需求信息,向所述第一控制设备发送整网资源中预先划分资源的资源配置信息,
    其中,所述第一控制设备的可用资源包括所述预先划分资源。
  3. 根据权利要求1所述的网络资源配置的管控方法,其中,根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息的步骤包括:
    接收第二控制装置发送的所述第二控制设备在整网资源中所占用资源的资源配置信息,所述第二控制装置与所述第二控制设备连接;以及
    根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述第一控制设备发送第二控制设备未占用资源的资源配置信息,
    其中,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
  4. 根据权利要求3所述的网络资源配置的管控方法,其中,接收第二控制装置发送的所述第二控制设备在整网资源中所占用资源的资源配置信息的步骤包括:
    当所述第一控制装置的启动时间晚于所述第二控制装置的启动时间时,所述第一控制装置向所述第二控制装置发送查询消息,以查询所述第二控制设备在整网资源中所占用资源的资源配置信息;以及接收所述第二控制装置根据所述查询消息发送的所述第二控制设备在整网资源中所占用资源的资源配置信息。
  5. 根据权利要求1所述的网络资源配置的管控方法,其中,所述第一控制装置还与所述第二控制设备连接,根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息的步骤包括:
    接收所述第二控制设备实时发送的所述第二控制设备在整网资源中所占用资源的资源配置信息;以及
    根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述第一控制设备发送第二控制设备未占用资源的资源配置信息,
    其中,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
  6. 根据权利要求1所述的网络资源配置的管控方法,其中,所述第一控制装置还与所述第二控制设备连接,所述管控方法还包括:
    获取第二控制设备的第二资源需求信息;以及
    根据所述第二资源需求信息,向所述第二控制设备发送整网资源中可用资源的资源配置信息。
  7. 根据权利要求6所述的网络资源配置的管控方法,其中,根据所述第二资源需求信息,向所述第二控制设备发送整网资源中可用资源的资源配置信息的步骤包括:
    接收所述第一控制设备实时发送的第一控制设备在整网资源中所占用资源的资源配置信息;以及
    根据所述第二资源需求信息和接收到的所述第一控制设备在整网资源中所占用资源的资源配置信息,向所述第二控制设备发送第一控制设备未占用资源的资源配置信息,
    其中,所述第二控制设备的可用资源包括所述第一控制设备未占用资源。
  8. 一种网络资源配置的管控装置,应用于第一控制装置,所述第一控制装置与整网中设置的网络管理系统NMS或软件定义网络SDN控制器连接,其中所述NMS和SDN控制器中的一者为第一控制设备,所述NMS和SDN控制器中的另一者为第二控制设备,并且所述第一控制装置与第一控制设备连接,所述管控装置包括:
    第一获取模块,配置为获取第一控制设备的第一资源需求信息;以及
    第一发送模块,配置为根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
  9. 根据权利要求8所述的网络资源配置的管控装置,其中,所述第一发送模块配置为:根据所述第一资源需求信息,向所述第一控制设备发送整网资源中预先划分资源的资源配置信息,
    其中,第一控制设备的可用资源包括所述预先划分资源。
  10. 根据权利要求8所述的网络资源配置的管控装置,其中,所述第一发送模块包括:
    第一接收单元,配置为接收第二控制装置发送的所述第二控制设备在整网资源中所占用资源的资源配置信息,所述第二控制装置与所述第二控制设备连接;以及
    第一发送单元,配置为根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述 第一控制设备发送第二控制设备未占用资源的资源配置信息,
    其中,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
  11. 根据权利要求10所述的网络资源配置的管控装置,其中,所述第一接收单元还配置为:
    当所述第一控制装置的启动时间晚于所述第二控制装置的启动时间时,向所述第二控制装置发送查询消息,以查询所述第二控制设备在整网资源中所占用资源的资源配置信息;以及
    接收所述第二控制装置根据所述查询消息发送的所述第二控制设备在整网资源中所占用资源的资源配置信息。
  12. 根据权利要求8所述的网络资源配置的管控装置,其中,所述第一控制装置还与所述第二控制设备连接,所述第一发送模块包括:
    第二接收单元,配置为接收所述第二控制设备实时发送的所述第二控制设备在整网资源中所占用资源的资源配置信息;以及
    第二发送单元,配置为根据所述第一资源需求信息和接收到的所述第二控制设备在整网资源中所占用资源的资源配置信息,向所述第一控制设备发送第二控制设备未占用资源的资源配置信息,
    其中,所述第一控制设备的可用资源包括所述第二控制设备未占用资源。
  13. 根据权利要求8所述的网络资源配置的管控装置,其中,所述第一控制装置还与所述第二控制设备连接,所述管控装置还包括:
    第二获取模块,配置为获取第二控制设备的第二资源需求信息;以及
    第二发送模块,配置为根据所述第二资源需求信息,向所述第二控制设备发送整网资源中可用资源的资源配置信息。
  14. 根据权利要求13所述的网络资源配置的管控装置,其中,所述第二发送模块包括:
    第三接收单元,配置为接收所述第一控制设备实时发送的第一控制设备在整网资源中所占用资源的资源配置信息;以及
    第三发送单元,用于根据所述第二资源需求信息和接收到的所述第一控制设备在整网资源中所占用资源的资源配置信息,向所述第二控制设备发送第一控制设备未占用资源的资源配置信息,
    其中,所述第二控制设备的可用资源包括所述第一控制设备未占用资源。
  15. 一种整网的网络资源配置的管控方法,所述整网中设置有第一控制设备和第二控制设备,所述第一控制设备和所述第二控制设备分别配置为对整网的至少一部分网络资源进行管理,并且所述第一控制设备不同于所述第二控制设备,所述管控方法包括:
    获取第一控制设备的第一资源需求信息;以及
    根据所述第一资源需求信息,向所述第一控制设备发送整网资源中可用资源的资源配置信息。
  16. 一种存储有计算机程序的计算机可读存储介质,所述计算机程序使计算机执行根据权利要求1至7中任一项所述的方法。
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