WO2012109855A1 - 利用lldp获取网络连接信息的方法及系统 - Google Patents

利用lldp获取网络连接信息的方法及系统 Download PDF

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Publication number
WO2012109855A1
WO2012109855A1 PCT/CN2011/077782 CN2011077782W WO2012109855A1 WO 2012109855 A1 WO2012109855 A1 WO 2012109855A1 CN 2011077782 W CN2011077782 W CN 2011077782W WO 2012109855 A1 WO2012109855 A1 WO 2012109855A1
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Prior art keywords
network element
service
network
address information
service network
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PCT/CN2011/077782
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English (en)
French (fr)
Inventor
徐豪杰
周靓
马西墙
徐洪奎
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华为技术有限公司
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Priority to PCT/CN2011/077782 priority Critical patent/WO2012109855A1/zh
Priority to CN2011800012573A priority patent/CN102318274B/zh
Publication of WO2012109855A1 publication Critical patent/WO2012109855A1/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
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • H04L41/5058Service discovery by the service manager
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/02Topology update or discovery
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/18Selecting a network or a communication service
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method and system for acquiring network connection information by using LLDP. Background technique
  • LLDP provides a standard link layer discovery mode.
  • the main device, management address, device ID, and interface identifier of the local device can be organized into different TLVs (Type/Length/Value, Type/Length/Value).
  • TLVs Type/Length/Value, Type/Length/Value.
  • LLDPPDU Link Layer Discovery Protocol Data Unit
  • MIB Management Information Base
  • a node device For the bearer network, a node device is usually set at the access edge and the output edge of the network, and the network service network element that needs to access the bearer network and the network service network element that receives the output information of the bearer network are respectively connected.
  • the LLDP can only provide the bearer network with the directly connected service network element information and the service network element information directly connected to the network output end, and the service level between the two directly connected service network elements. The attribution relationship still needs to be obtained manually. For example, for the service network element NodeB (base station) and RNC (Radio Network Controller), which NodeB device is connected to which RNC in the service, it cannot be implemented by existing LLDP.
  • the faulty service needs to be located according to the physical topology of the entire network.
  • the present invention solves the problem in the background that the service network element cannot be automatically obtained by relying on the existing LLDP.
  • the service level when the service transmission fails, and the service network element or link that is faulty is located according to the physical topology of the entire network, the manual method will bring great problems to the problem location or link maintenance.
  • a method and system for obtaining network connection information by using LLDP is proposed.
  • the bearer network side can automatically obtain the network element device connected to the bearer network and the network element device connected to the output end of the bearer network.
  • the embodiment of the invention provides a method for obtaining network connection information by using a link layer discovery protocol LLDP, which includes:
  • the bearer network edge node device receives the LLDP packet sent by the network service network element, where the LLDP packet carries the first address information of the first service network element that is connected to the network, and the output of the network The second address information of the second service network element corresponding to the first service network element connected to the end;
  • the bearer network edge node device reports the first address information and the second address information to the network management system, and the network management system obtains the information according to the correspondence between the first address information and the second address information.
  • a system for obtaining network connection information by using a link layer discovery protocol comprising: a bearer network and an out-of-network service network element; wherein, the out-of-network service network element includes: an off-network first service network element and an outer network second
  • the bearer network edge node device is configured to receive the LLDP packet sent by the network service network element, and report the first address information and the second address information to the network management system;
  • the network management system is configured to acquire, according to the correspondence between the first address information and the second address information, a service attribution relationship between the first service network element and the second service network element.
  • the LLDP packet is used to directly carry the address information of the first service network element of the access bearer network and the second service corresponding to the first service network element connected to the output end of the network.
  • the address information of the network element after the receiving edge network node device receives the LLDP packet sent by the network service network element, the device directly acquires the service between the first service network element and the second service network element.
  • the affiliation relationship is such that the acquisition of the service affiliation relationship between the first service network element and the second service network element is greatly facilitated.
  • FIG. 1 is a schematic flowchart of a method for acquiring network connection information by using a link layer discovery protocol LLDP according to an embodiment of the present disclosure
  • FIG. 2 is a schematic diagram of a system for acquiring network connection information by using LLDP according to an embodiment of the present disclosure
  • FIG. 3 is a schematic diagram of a specific application system scenario according to an embodiment of the present invention. detailed description
  • an embodiment of the present invention provides a method for acquiring network connection information by using a link layer discovery protocol (LLDP). As shown in FIG. 1, the method includes the following steps:
  • Step 101 The bearer network edge node device receives the LLDP packet sent by the network service network element, where the LLDP packet carries the first address information of the first service network element that is connected to the bearer network, and the bearer network.
  • the bearer network edge node device includes: a node device set by the bearer network access edge and a node set by the output edge of the bearer network
  • the network service network element includes: a first service network element that connects the bearer network access edge node device and a second service network element that connects the bearer network output edge node device, the first service network element and the second service network element itself
  • the existing LLDP packet is extended, and the extended LLDP packet is sent by using the corresponding network service network element, and the extended LLDP packet is not included in the network.
  • the address information of the first service network element itself also carries the information of the second service network element itself
  • Step 102 The device includes: the first address information and the second address information.
  • the report is sent to the network management system, and the network management system obtains the service attribution relationship between the first service network element and the second service network element according to the correspondence between the first address information and the second address information.
  • the bearer network edge node device receives the LLDP packet sent by the network service network element, and obtains the first address information of the first service network element outside the network and the second address information of the second service network element outside the network, and The address mapping relationship between the first service network element and the second service network element at the service level, so that the network side network management system can obtain the first according to the address correspondence between the first service network element and the second service network element at the service level.
  • the service attribution relationship between the service network element and the second service network element is attributed to the service network element and the second service network element.
  • the extended LLDP packet directly carries the address information of the first service network element of the access bearer network, and the second service network element corresponding to the first service network element connected to the output end of the network
  • the address information is that, after receiving the LLDP packet sent by the network element of the network, the device of the edge device of the bearer network can automatically obtain the service belonging relationship between the first service network element and the second service network element, so that the first The acquisition of the service attribution relationship between the service network element and the second service network element is greatly facilitated.
  • the device of the bearer network edge node includes: a node device that is set by the bearer network access edge and a node device that is configured by the output edge of the bearer network
  • the network service network element includes: a first service network element that connects the bearer network access edge node device and The second service network element of the device that is connected to the edge device of the bearer network is connected. Therefore, the implementation manner of the LLDP packet sent by the node device at the edge of the bearer network to receive the LLDP packet sent by the network element of the network may include:
  • the node device of the bearer network access edge receives the first LLDP packet sent by the first service network element connected to the first LLDP packet, where the first LLDP packet carries the address information of the first service network element and the second Second address information of the service network element;
  • the node device of the output edge of the bearer network receives the second LLDP packet sent by the second service network element connected thereto, where the second LLDP packet carries the second address information of the second service network element and the first service The address information of the NE.
  • the first service network element that is connected to the edge node device and the second service network element that connects the edge device to the bearer network respectively send LLDP packets to the connected edge device of the bearer network.
  • the first service network element sends the first LLDP to the bearer network access edge node device.
  • the second LLDP packet is sent by the second service network element to the output edge device of the bearer network, where the first LLDP packet and the second LLDP packet carry the address information and the second service of the first service network element.
  • the second address information of the network element is
  • the attribute information carried in the LLDP packet is in the form of a TLV.
  • the first service network element or the second service network element is a service network element of the aggregation node, for example: RNC (since multiple NodeBs can be connected at the same time)
  • the LLDP packet should carry the service attribution relationship with the service network element of the aggregation node at the service level. Address information of each service network element.
  • the LLDP packet is sent by the access-side service network element that is connected to the service network element of the access node, and the LLDP packet is sent by the access node service network element. The address information of each service network element that has a service attribution relationship with the service layer is reported.
  • the H ⁇ second service network element is a convergence node service network element, and in another embodiment provided by the present invention, the node device at the edge of the bearer network receives the LLDP message sent by the network element service network element.
  • the way can also be:
  • the LLDP packet carries the address information of the first service network element and the second address information of the second service network element.
  • the NodeB needs to report the address information of the RNC to which it is connected to the edge node device of the bearer network, and the RNC does not need to report the address information of those NodeBs that are accessed, and only needs to be uploaded. ⁇ It is connected to which GGSN (Gateway GPRS Support Node). Therefore, the RNC can report the address information of multiple NodeBs at the same time, and the TLV data in the LLDP packet exceeds the length limit.
  • GGSN Gateway GPRS Support Node
  • the information about the main device, the management address, the device ID, and the interface identifier of the local device is organized into different TLVs and encapsulated in the LLDPDUs and advertised to neighboring devices directly connected to the LLDP PDU.
  • the LLDP packet is extended by using the reserved space reserved in the TLV, so that the extended LLDP packet carries the address information of the first service network element and the second service network element.
  • the packet type (Type) field in the extended LLDP packet and the extended packet type field carries the first identifier indicating the first address and the second identifier indicating the second address, and the value (Value) is used.
  • the field carries the first address information and the second address information.
  • the extended LLDP packet carries the address information of the first service network element and the address information of the second service network element with the service belonging relationship of the first service network element at the service level.
  • the address information of the two carried in the LLDP packet may be the IP address information of the service data transmission link, or may be the control signaling transmission link.
  • the IP address information, the character encoding of the address information can be ASCII code.
  • the service when the address information of the first service network element and the second service network element carried in the LLDP file includes the IP address information of the service data transmission link and the IP address information of the control signaling transmission link, the service may be a service.
  • the IP address information of the data transmission link and the IP address information of the control signaling transmission link respectively have different Type IDs, and the value fields corresponding to the Type IDs respectively carry different transmission link IP address information;
  • the IP address information of the link and the IP address information of the control signaling transmission link are the same Type ID, and the value field corresponding to the Type ID carries the IP address information of the service data transmission link and the control signaling transmission link. IP address information.
  • the embodiments of the present invention are not specifically limited, and those skilled in the art may perform specific settings according to actual application scenarios.
  • the edge node device obtains the address information of the first service network element and the second service network element, and the first service network element and the second service network element according to the LLDP packet sent by the network service network element. After the address correspondence of the service level is reported, the information is reported to the network management system for storage. When the address correspondence between the first service network element and the second service network element changes at the service level, the network management system is updated. The system directly acquires the service attribution relationship between the first service network element and the second service network element according to the correspondence between the first address information and the second address information.
  • the network management system continues to query the information of each node device connected between the two service network elements in the bearer network, and obtains the complete number of services between the first service network element and the second service network element. According to the control signaling transmission link, the physical topology between the first service network element and the second service network element is obtained. Therefore, when the service transmission fails, and the service network element or link that is faulty is located according to the physical topology of the entire network, it is necessary to manually determine the great inconvenience caused by the affiliation of the service layer between the service network elements.
  • the present invention further provides a system for acquiring network connection information by using LLDP, as shown in FIG. 2, which is a schematic structural diagram of the system.
  • the system specifically includes: a bearer network 20 and an out-of-network service network element 21; the off-net service network element 21 includes: an off-network first service network element 211 and an off-net second service network element 212;
  • the network edge node device 201 and the network management system 202 are included;
  • the out-of-network service network element 21 is configured to send an LLDP packet to the edge network node device 201, where the LLDP packet carries a first address of the first service network element 211 that is connected to the bearer network.
  • the network edge node device 201 is configured to receive the LLDP packet sent by the network service network element 21, and report the first address information and the second address information to the network management system 202;
  • the system 202 is configured to acquire, according to the correspondence between the first address information and the second address information, a service attribution relationship between the first service network element 211 and the second service network element 212.
  • the network service network element includes: a first service network element that accesses the bearer network and a second service network element that is connected to the output end of the bearer network, and the first service network element and the second service network element are not themselves Management of the bearer network side network management system. Therefore, the existing LLDP packet is extended, and the extended LLDP packet is transmitted by using the corresponding network service network element, and the extended LLDP packet carries the address information of the first service network element outside the network, and carries The information of the second service network element itself, and the address correspondence between the first service network element and the second service network element at the service level.
  • the device at the edge of the bearer network receives the LLDP packet sent by the network element of the network, and obtains the first address information of the first service network element outside the network and the second address information of the second service network element outside the network, and the first service network.
  • the address correspondence between the element and the second service network element at the service level so that, according to the address correspondence between the first service network element and the second service network element at the service level, the network-side network management system can obtain the first service network element and The service attribution relationship between the second service network elements.
  • the extended LLDP packet directly carries the address information of the first service network element of the access bearer network, and the second service network element corresponding to the first service network element connected to the output end of the network
  • the address information is that, after receiving the LLDP packet sent by the network element of the network, the device of the edge device of the bearer network can automatically obtain the service belonging relationship between the first service network element and the second service network element, so that the first The acquisition of the service attribution relationship between the service network element and the second service network element is greatly facilitated.
  • the bearer network edge node device may specifically include: a node device that is set by the bearer network access edge and a node device that is set by the output edge of the bearer network.
  • the node device 2011 of the bearer network access edge is configured to receive a first LLDP packet sent by the first service network element 211 connected thereto, where the An LLDP packet carries address information of the first service network element 211 and second address information of the second service network element 212;
  • the node device 2012 of the output network of the bearer network is configured to receive a second LLDP packet sent by the second service network element 212 connected to the second network element 212, and the second LLDP packet carries the second The address information and the address information of the first service network element 211.
  • the first service network element that is connected to the edge node device and the second service network element that is connected to the edge device of the bearer network can send LLDP packets to the connected edge device of the bearer network.
  • the serving network element sends the first LLDP packet to the bearer network access edge node device
  • the second service network element sends the second LLDP packet, the first LLDP packet and the second LLDP packet to the output edge device of the bearer network.
  • Each carries the address information of the first service network element and the second address information of the second service network element.
  • the information about the attribute carried in the LLDP packet is in the form of a TLV.
  • the LLDP packet carries the LLDP packet
  • the LLDP packet carries the address information of each service NE associated with the service network element of the aggregation node at the service level.
  • the LLDP packet is sent by the access-side service network element that is connected to the service network element of the access node, and the LLDP packet is sent by the access network edge device.
  • the address information of each service network element that has a service attribution relationship with the service layer is reported.
  • the first service may be The network element sends a first LLDP packet to the bearer network access edge node device to which the network element is connected, where the first LLDP packet carries the address information of the first service network element and the second service network element Address information.
  • the first service network element and the first service network element may extend the packet type field in the LLDP packet, and use the extended packet type field to carry the first identifier indicating the first address and And a second identifier indicating the second address, where the first address information and the second address information are carried by the value field.
  • the extended LLDP packet carries the address information of the first service network element and the address information of the second service network element with the service belonging relationship of the first service network element at the service level.
  • the address information of the two carried in the LLDP packet may be the IP address information of the service data transmission link, or may be the control signaling transmission link. IP address information.
  • the edge node device obtains the address information of the first service network element and the second service network element, and the first service network element and the second service network element according to the LLDP packet sent by the network service network element. After the address correspondence of the service level is reported, the information is reported to the network management system for storage. When the address correspondence between the first service network element and the second service network element changes at the service level, the network management system is updated. The system directly acquires the service attribution relationship between the first service network element and the second service network element according to the correspondence between the first address information and the second address information.
  • the network management system After the service affiliation relationship between the first service network element and the second service network element is determined, one of the two service network elements is a sender of service data or control signaling, and the other is a corresponding service data or The receiver of the control signaling, the network management system continues to query the information of each node device connected between the two service network elements in the bearer network, and obtains complete service data between the first service network element and the second service network element. Or controlling the signaling transmission link to obtain a physical topology between the first service network element and the second service network element.
  • the technical solution of the present invention is applicable to a mobile bearer network, and is also applicable to a core layer network, and is not subject to wireless
  • the influence of the system can be in GSM (Global System of Mobile communication), CDMA (Code Division Multiple Access), TDS-CDMA (Time Division Synchronous CDMA), WCDMA (Wideband) Code Division Multiple Access, LTE (Long Term Evolution), and future possible standards.
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • TDS-CDMA Time Division Synchronous CDMA
  • WCDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • modules described as separate components may or may not be physically separate, and the components displayed as modules may or may not be physical modules, ie may be located One place, or it can be distributed to multiple network modules. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment. Those of ordinary skill in the art can understand and implement without any creative effort.

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  • Data Exchanges In Wide-Area Networks (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

一种利用LLDP获取网络连接信息的方法及系统。其中,所述方法包括:承载网边缘节点设备接收网外业务网元发送的LLDP报文,所述LLDP报文中携带接入所述承载网的第一业务网元的第一地址信息、与所述承载网输出端连接的对应所述第一业务网元的第二业务网元的第二地址信息;所述承载网边缘节点设备将所述第一地址信息和第二地址信息上报至网管系统,由所述网管系统根据所述第一地址信息和第二地址信息之间的对应关系,获取所述第一业务网元与第二业务网元之间的业务归属关系。本发明实施例通过扩展LLDP,使得承载网侧能够自动获取接入承载网的网元设备和承载网输出端连接的网元设备之间的业务归属信息。

Description

利用 LLDP获取网络连接信息的方法及系统 技术领域
本发明涉及通信技术领域,尤其涉及一种利用 LLDP获取网络连接信息的 方法及系统。 背景技术
目前, 网络设备的种类日益繁多且各自的配置错综复杂, 为了使不同厂商 的设备能够在网络中相互发现并交互各自的系统及配置信息,需要有一个标准 的信息交流平台。 因此, LLDP ( Link Layer Discovery Protocol, 链路层发现协 议)应运而生。
LLDP提供了一种标准的链路层发现方式, 可以将本端设备的主要能力、 管理地址、设备标识、接口标识等信息组织成不同的 TLV ( Type/Length/Value, 类型 /长度 /值), 并封装在 LLDPDU ( Link Layer Discovery Protocol Data Unit, 些信息后将其以标准 MIB ( Management Information Base, 管理信息库) 的形 式保存起来, 以供网络管理系统查询及判断链路的通信状况。
对于承载网来说,通常在该网络接入边缘和输出边缘设置节点设备, 分别 连接需要接入该承载网的网外业务网元、以及接收承载网输出信息的网外业务 网元。现有技术通过 LLDP只能向承载网提供接入该网络的直连业务网元信息 以及与该网络输出端直连的业务网元信息,而对于这两个直连业务网元之间业 务层面的归属关系, 仍然需要依靠人工方式进行获取。 例如: 对于业务网元 NodeB (基站 )和 RNC ( Radio Network Controller, 无线网络控制器 ) 来说, 某 NodeB设备在业务上具体与哪台 RNC连接, 通过现有 LLDP无法实现。
因此, 当业务传输出现故障, 需要根据全网物理拓朴定位出现故障的业务
发明内容
本发明为解决背景技术中由于依靠现有 LLDP 无法自动获取业务网元间 业务层面的归属关系, 而导致当业务传输出现故障, 需要根据全网物理拓朴定 位出现故障的业务网元或链路时,依靠人工方式将会对问题定位或链路维护带 来极大的不便这一技术问题,提出一种利用 LLDP获取网络连接信息的方法及 系统, 通过扩展 LLDP, 使得承载网侧能够自动获取接入承载网的网元设备和 承载网输出端连接的网元设备之间的业务归属信息,从而便于承载网侧获取全 网物理拓朴。
本发明的技术解决方案是:
本发明实施例提供一种利用链路层发现协议 LLDP 获取网络连接信息的 方法, 包括:
承载网边缘节点设备接收网外业务网元发送的 LLDP报文,所述 LLDP报 文中携带接入所述^载网的第一业务网元的第一地址信息、与所述^载网输出 端连接的对应所述第一业务网元的第二业务网元的第二地址信息;
所述承载网边缘节点设备将所述第一地址信息和第二地址信息上报至网 管系统,由所述网管系统根据所述第一地址信息和第二地址信息之间的对应关 系, 获取所述第一业务网元与第二业务网元之间的业务归属关系。
一种利用链路层发现协议 LLDP获取网络连接信息的系统, 包括: 承载网 和网外业务网元; 其中, 所述网外业务网元包括: 网外第一业务网元和网外第 二业务网元; 所述承载网包括: 承载网边缘节点设备和网管系统; 其中, 所述网外业务网元, 用于向所述承载网边缘节点设备发送 LLDP报文, 所 述 LLDP报文中携带接入所述承载网的第一业务网元的第一地址信息、与所述 承载网输出端连接的对应所述第一业务网元的第二业务网元的第二地址信息; 所述承载网边缘节点设备, 用于接收所述网外业务网元发送的 LLDP报 文, 将所述第一地址信息和第二地址信息上报至所述网管系统;
所述网管系统,用于根据所述第一地址信息和第二地址信息之间的对应关 系, 获取所述第一业务网元与第二业务网元之间的业务归属关系。
本发明实施例中,通过扩展 LLDP报文, 利用 LLDP报文直接携带接入承 载网的第一业务网元的地址信息、以及^载网输出端连接的对应第一业务网元 的第二业务网元的地址信息,当承载网边缘节点设备接收到网外业务网元发送 的上述 LLDP报文之后,便可自动获取第一业务网元与第二业务网元之间的业 务归属关系,从而使得第一业务网元与第二业务网元之间的业务归属关系的获 得大为筒便。 附图说明
图 1为本发明实施例提供的一种利用链路层发现协议 LLDP获取网络连接 信息的方法流程示意图;
图 2为本发明实施例提供的一种利用 LLDP获取网络连接信息的系统示意 图;
图 3为本发明实施例提供的一个具体应用系统场景示意图。 具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整的描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是 全部的实施例。基于本发明中的实施例, 本领域普通技术人员在没有做出创造 性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
首先,本发明实施例提供一种利用链路层发现协议 LLDP获取网络连接信 息的方法, 如图 1所示, 该方法包括以下步骤:
步骤 101、 承载网边缘节点设备接收网外业务网元发送的 LLDP报文, 所 述 LLDP报文中携带接入所述承载网的第一业务网元的第一地址信息、与所述 承载网输出端连接的对应所述第一业务网元的第二业务网元的第二地址信息; 通常,承载网边缘节点设备包括: 承载网接入边缘设置的节点设备和承载 网输出边缘设置的节点设备, 网外业务网元包括: 连接承载网接入边缘节点设 备的第一业务网元和连接承载网输出边缘节点设备的第二业务网元,第一业务 网元和第二业务网元本身不受承载网侧网管系统的管理, 本发明实施例中, 对 现有 LLDP报文进行扩展,利用相应网外业务网元发送扩展之后的 LLDP报文, 扩展之后的 LLDP报文中除携带网外第一业务网元自身的地址信息,还携带有 第二业务网元自身的信息,以及第一业务网元和第二业务网元在业务层面的地 址对应关系;
步骤 102、 所述^载网边缘节点设备将所述第一地址信息和第二地址信息 上报至网管系统,由所述网管系统根据所述第一地址信息和第二地址信息之间 的对应关系, 获取所述第一业务网元与第二业务网元之间的业务归属关系。
上述步骤中, 承载网边缘节点设备接收到网外业务网元发送的 LLDP报 文,得到网外第一业务网元的第一地址信息和网外第二业务网元的第二地址信 息、 以及第一业务网元和第二业务网元在业务层面的地址对应关系, 从而, 根 据第一业务网元和第二业务网元在业务层面的地址对应关系 , 载网侧网管系 统可以获取第一业务网元与第二业务网元之间的业务归属关系。
通过上述发明实施例,利用扩展后的 LLDP报文直接携带接入承载网的第 一业务网元的地址信息、以及^载网输出端连接的对应第一业务网元的第二业 务网元的地址信息, 当承载网边缘节点设备接收到网外业务网元发送的上述 LLDP报文之后, 便可自动获取第一业务网元与第二业务网元之间的业务归属 关系,从而使得第一业务网元与第二业务网元之间的业务归属关系的获得大为 筒便。
为了便于对本发明实施例技术方案的充分理解,下面将结合本发明实施例 中的附图, 对本发明实施例中的技术方案进行清楚、 完整的描述。
由于,承载网边缘节点设备包括: 承载网接入边缘设置的节点设备和承载 网输出边缘设置的节点设备, 网外业务网元包括: 连接承载网接入边缘节点设 备的第一业务网元和连接承载网输出边缘节点设备的第二业务网元, 因此, 上 述技术方案在具体实施时,所述承载网边缘的节点设备接收网外业务网元发送 的 LLDP报文的实现方式具体可以包括:
承载网接入边缘的节点设备接收与其连接的所述第一业务网元发送的第 一 LLDP报文,所述第一 LLDP报文携带所述第一业务网元的地址信息及所述 第二业务网元的第二地址信息;
承载网输出边缘的节点设备接收与其连接的第二业务网元发送的第二 LLDP报文, 所述第二 LLDP报文携带所述第二业务网元的第二地址信息及所 述第一业务网元的地址信息。
该实施例中,由连接承载网接入边缘节点设备的第一业务网元和连接承载 网输出边缘节点设备的第二业务网元分别向各自连接的承载网边缘节点设备 发送 LLDP报文, 由第一业务网元向承载网接入边缘节点设备发送第一 LLDP 报文, 由第二业务网元向承载网输出边缘节点设备发送第二 LLDP报文, 第一 LLDP报文和第二 LLDP报文中均携带有第一业务网元的地址信息及第二业务 网元的第二地址信息。
需要说明的是, LLDP报文中携带的各属性信息为 TLV形式, 当第一业务 网元或第二业务网元中一方为汇聚节点业务网元, 例如: RNC (由于可以同时 连接多个 NodeB, 称之为汇聚节点), 如果由汇聚节点业务网元向其连接的承 载网边缘设备发送 LLDP报文,则该 LLDP报文中应当携带与该汇聚节点业务 网元在业务层面有业务归属关系的各业务网元的地址信息。 然而, 受到 LLDP 报文中 TLV长度的限制, 可以采取仅由接入汇聚节点业务网元的接入侧业务 网元向其连接的承载网边缘设备发送 LLDP报文,而汇聚节点业务网元无需上 报与它在业务层面有业务归属关系的各业务网元的地址信息。
由此, H殳第二业务网元为汇聚节点业务网元, 则在本发明提供的另一个 实施例中,所述承载网边缘的节点设备接收网外业务网元发送的 LLDP报文的 实现方式还可以为:
仅由所述第一业务网元向其所连接的承载网接入边缘节点设备发送第一
LLDP报文, 所述第一 LLDP报文携带所述第一业务网元的地址信息及所述第 二业务网元的第二地址信息。
应用该实施例技术方案,在移动承载网中, NodeB需要向承载网边缘节点 设备上报它所连接的 RNC 的地址信息, 而 RNC 则不需要上报接入的那些 NodeB的地址信息,只需要上才艮它与哪台 GGSN( Gateway GPRS Support Node , 网关 GPRS支持节点)连接即可。 从而, 可以避免 RNC同时上报多个 NodeB 的地址信息而导致 LLDP报文中 TLV数据超过长度限制。
对于 LLDP来说, 其是将本端设备的主要能力、 管理地址、 设备标识、 接 口标识等信息组织成不同的 TLV, 并封装在 LLDPDU中发布给与自己直连的 相邻设备。 本发明实施例通过利用 TLV中预留的扩充空间, 对 LLDP报文进 行扩展,使得扩展之后的 LLDP报文中携带上述第一业务网元和第二业务网元 各自的地址信息。 具体的实现方式为:
扩展 LLDP报文中的报文类型(Type )字段, 利用扩展之后的报文类型字 段携带表示第一地址的第一标识及表示第二地址的第二标识, 利用值(Value ) 字段携带所述第一地址信息及第二地址信息。
通过对 LLDP报文进行扩展,使得扩展之后的 LLDP报文中同时携带第一 业务网元的地址信息,以及对第一业务网元在业务层面有业务归属关系的第二 业务网元的地址信息。
对于承载网内传输链路来说,其可以包括业务数据传输链路和控制信令传 输链路。 其中, 对于业务数据传输链路, 其用于业务数据的传输; 而控制信令 传输链路, 则用于控制信令的传输。 由此, 对应第一业务网元和第二业务网元 来说, LLDP报文中携带的二者的地址信息可以是业务数据传输链路的 IP地 址信息, 也可以是控制信令传输链路的 IP地址信息, 地址信息的字符编码可 以为 ASCII码。
具体实施时,当 LLDP 文中携带的第一业务网元和第二业务网元的地址 信息同时包括业务数据传输链路的 IP地址信息和控制信令传输链路的 IP地址 信息时, 可以为业务数据传输链路的 IP地址信息和控制信令传输链路的 IP地 址信息分别制定不同的 Type ID, 相应 Type ID对应的值字段中分别携带不同 传输链路 IP地址信息; 也可以为业务数据传输链路的 IP地址信息和控制信令 传输链路的 IP地址信息制定相同的 Type ID, 则该 Type ID对应的值字段中同 时携带业务数据传输链路的 IP地址信息和控制信令传输链路的 IP地址信息。 对此, 本发明实施例并不做具体限定, 本领域技术人员可以根据实际应用场景 进行具体设置。
此外, 上述承载网中, 当边缘节点设备根据网外业务网元发送的 LLDP报 文获取第一业务网元和第二业务网元的地址信息,以及第一业务网元和第二业 务网元在业务层面的地址对应关系之后, 将上述信息上报至网管系统进行存 储, 当第一业务网元和第二业务网元在业务层面的地址对应关系发生变化时, 则进行网管系统更新,使得网管系统根据第一地址信息和第二地址信息之间的 对应关系, 直接获取所述第一业务网元与第二业务网元之间的业务归属关系。 当第一业务网元与第二业务网元之间的业务归属关系确定之后,上述两个业务 网元中一方即为业务数据或控制信令的发送方,而另一方则为相应业务数据或 控制信令的接收方,网管系统继续查询承载网内上述两个业务网元之间所连接 的各节点设备信息,便可获取第一业务网元与第二业务网元之间完整的业务数 据或控制信令传输链路,进而获得第一业务网元与第二业务网元之间的物理拓 朴。 从而, 避免当业务传输出现故障, 需要根据全网物理拓朴定位出现故障的 业务网元或链路时,依靠人工方式确定业务网元间业务层面的归属关系带来的 极大不便。 相应上述方法实施例,本发明还提供了一种利用 LLDP获取网络连接信息 的系统, 如图 2所示, 为该系统的结构示意图。 该系统具体包括: 承载网 20 和网外业务网元 21; 所述网外业务网元 21包括: 网外第一业务网元 211和网 外第二业务网元 212; 所述^载网 20包括: 载网边缘节点设备 201和网管 系统 202; 其中,
所述网外业务网元 21 , 用于向所述^载网边缘节点设备 201发送 LLDP 报文,所述 LLDP报文中携带接入所述承载网的第一业务网元 211的第一地址 信息、与所述承载网输出端连接的对应所述第一业务网元 211的第二业务网元 212的第二地址信息;
所述^载网边缘节点设备 201 , 用于接收所述网外业务网元 21 发送的 LLDP报文, 将所述第一地址信息和第二地址信息上报至所述网管系统 202; 所述网管系统 202, 用于根据所述第一地址信息和第二地址信息之间的对 应关系,获取所述第一业务网元 211与第二业务网元 212之间的业务归属关系。
上述系统中, 网外业务网元包括: 接入承载网的第一业务网元以及与承载 网输出端连接的第二业务网元,而第一业务网元和第二业务网元本身不受承载 网侧网管系统的管理。 因此, 对现有 LLDP报文进行扩展, 利用相应网外业务 网元发送扩展之后的 LLDP报文,扩展之后的 LLDP报文中除携带网外第一业 务网元自身的地址信息,还携带有第二业务网元自身的信息, 以及第一业务网 元和第二业务网元在业务层面的地址对应关系。
承载网边缘节点设备接收到网外业务网元发送的 LLDP报文,得到网外第 一业务网元的第一地址信息和网外第二业务网元的第二地址信息、以及第一业 务网元和第二业务网元在业务层面的地址对应关系,从而,根据第一业务网元 和第二业务网元在业务层面的地址对应关系 , 载网侧网管系统可以获取第一 业务网元与第二业务网元之间的业务归属关系。 通过上述系统实施例,利用扩展后的 LLDP报文直接携带接入承载网的第 一业务网元的地址信息、以及^载网输出端连接的对应第一业务网元的第二业 务网元的地址信息, 当承载网边缘节点设备接收到网外业务网元发送的上述 LLDP报文之后, 便可自动获取第一业务网元与第二业务网元之间的业务归属 关系,从而使得第一业务网元与第二业务网元之间的业务归属关系的获得大为 筒便。
通常,承载网边缘节点设备具体可以包括: 承载网接入边缘设置的节点设 备和承载网输出边缘设置的节点设备。 在图 3 所示的一个具体应用系统场景 中, 所述承载网接入边缘的节点设备 2011 , 用于接收与其连接的所述第一业 务网元 211发送的第一 LLDP报文,所述第一 LLDP报文携带所述第一业务网 元 211的地址信息及所述第二业务网元 212的第二地址信息;
所述承载网输出边缘的节点设备 2012, 用于接收与其连接的第二业务网 元 212发送的第二 LLDP报文, 所述第二 LLDP报文携带所述第二业务网元 212的第二地址信息及所述第一业务网元 211的地址信息。
可见,可以由连接承载网接入边缘节点设备的第一业务网元和连接承载网 输出边缘节点设备的第二业务网元分别向各自连接的承载网边缘节点设备发 送 LLDP报文,由第一业务网元向承载网接入边缘节点设备发送第一 LLDP报 文, 由第二业务网元向承载网输出边缘节点设备发送第二 LLDP报文, 第一 LLDP报文和第二 LLDP报文中均携带有第一业务网元的地址信息及第二业务 网元的第二地址信息。
除了上述实现方式, 由于 LLDP报文中携带的各属性信息为 TLV形式, 当第一业务网元或第二业务网元中一方为汇聚节点业务网元,如果由汇聚节点 业务网元向其连接的承载网边缘设备发送 LLDP报文,则该 LLDP报文中应当 携带与该汇聚节点业务网元在业务层面有业务归属关系的各业务网元的地址 信息。 然而, 受到 LLDP报文中 TLV长度的限制, 可以采取仅由接入汇聚节 点业务网元的接入侧业务网元向其连接的承载网边缘设备发送 LLDP报文,而 汇聚节点业务网元无需上报与它在业务层面有业务归属关系的各业务网元的 地址信息。
由此,假设第二业务网元为汇聚节点业务网元, 则可以仅由所述第一业务 网元向其所连接的承载网接入边缘节点设备发送第一 LLDP报文, 所述第一 LLDP报文携带所述第一业务网元的地址信息及所述第二业务网元的第二地 址信息。
具体实现过程中,所述第一业务网元和第一业务网元,可以通过扩展 LLDP 报文中的报文类型字段,利用扩展之后的报文类型字段携带表示第一地址的第 一标识及表示第二地址的第二标识,利用值字段携带所述第一地址信息及第二 地址信息。
通过对 LLDP报文进行扩展,使得扩展之后的 LLDP报文中同时携带第一 业务网元的地址信息,以及对第一业务网元在业务层面有业务归属关系的第二 业务网元的地址信息。
对于承载网内传输链路来说,其可以包括业务数据传输链路和控制信令传 输链路。 其中, 对于业务数据传输链路, 其用于业务数据的传输; 而控制信令 传输链路, 则用于控制信令的传输。 由此, 对应第一业务网元和第二业务网元 来说, LLDP报文中携带的二者的地址信息可以是业务数据传输链路的 IP地 址信息, 也可以是控制信令传输链路的 IP地址信息。
此外, 上述承载网中, 当边缘节点设备根据网外业务网元发送的 LLDP报 文获取第一业务网元和第二业务网元的地址信息,以及第一业务网元和第二业 务网元在业务层面的地址对应关系之后, 将上述信息上报至网管系统进行存 储, 当第一业务网元和第二业务网元在业务层面的地址对应关系发生变化时, 则进行网管系统更新,使得网管系统根据第一地址信息和第二地址信息之间的 对应关系, 直接获取所述第一业务网元与第二业务网元之间的业务归属关系。 当第一业务网元与第二业务网元之间的业务归属关系确定之后,上述两个业务 网元中一方即为业务数据或控制信令的发送方,而另一方则为相应业务数据或 控制信令的接收方,网管系统继续查询承载网内上述两个业务网元之间所连接 的各节点设备信息,便可获取第一业务网元与第二业务网元之间完整的业务数 据或控制信令传输链路,进而获得第一业务网元与第二业务网元之间的物理拓 朴。 本发明技术方案适用于移动承载网络, 同样适用于核心层网络, 不受无线 制式的影响, 可以在 GSM ( Global System of Mobile communication , 全球移动 通讯系统)、 CDMA ( Code Division Multiple Access, 码分多址)、 TDS-CDMA ( Time Division Synchronous CDMA, 时分同步 CDMA ), WCDMA ( Wideband Code Division Multiple Access , 宽带码分多址 )、 LTE ( Long Term Evolution,长 期演进) 以及未来可能出现的制式下工作。 对于系统实施例而言, 由于其基本相应于方法实施例, 所以描述得比较筒 单,相关之处参见方法实施例的部分说明即可。 以上所描述的系统实施例仅仅 是示意性的,其中所述作为分离部件说明的模块可以是或者也可以不是物理上 分开的,作为模块显示的部件可以是或者也可以不是物理模块, 即可以位于一 个地方, 或者也可以分布到多个网络模块上。可以根据实际的需要选择其中的 部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出 创造性劳动的情况下, 即可以理解并实施。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本 发明。 对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见 的,本文中所定义的一般原理可以在不脱离本发明实施例的精神或范围的情况 下, 在其它实施例中实现。 因此, 本发明实施例将不会被限制于本文所示的这 些实施例, 而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims

权 利 要 求
1、 一种利用链路层发现协议 LLDP获取网络连接信息的方法, 其特征在 于, 包括:
承载网边缘节点设备接收网外业务网元发送的 LLDP报文,所述 LLDP报 文中携带接入所述^载网的第一业务网元的第一地址信息、与所述^载网输出 端连接的对应所述第一业务网元的第二业务网元的第二地址信息;
所述承载网边缘节点设备将所述第一地址信息和第二地址信息上报至网 管系统,由所述网管系统根据所述第一地址信息和第二地址信息之间的对应关 系, 获取所述第一业务网元与第二业务网元之间的业务归属关系。
2、 根据权利要求 1所述的利用 LLDP获取网络连接信息的方法, 其特征 在于,所述承载网边缘的节点设备接收网外业务网元发送的 LLDP报文,包括: 承载网接入边缘的节点设备接收与其连接的所述第一业务网元发送的第 一 LLDP报文,所述第一 LLDP报文携带所述第一业务网元的地址信息及所述 第二业务网元的第二地址信息;
承载网输出边缘的节点设备接收与其连接的第二业务网元发送的第二 LLDP报文, 所述第二 LLDP报文携带所述第二业务网元的第二地址信息及所 述第一业务网元的地址信息。
3、 根据权利要求 1所述的利用 LLDP获取网络连接信息的方法, 其特征 在于,所述承载网边缘的节点设备接收网外业务网元发送的 LLDP报文,包括: 仅由所述第一业务网元向其所连接的承载网接入边缘节点设备发送第一 LLDP报文, 所述第一 LLDP报文携带所述第一业务网元的地址信息及所述第 二业务网元的第二地址信息。
4、 根据权利要求 1所述的利用 LLDP获取网络连接信息的方法, 其特征 在于, 所述 LLDP报文中携带接入所述承载网的第一业务网元的第一地址信 息、与所述 载网输出端连接的对应所述第一业务网元的第二业务网元的第二 地址信息, 包括:
扩展 LLDP报文中的报文类型字段,利用扩展之后的报文类型字段携带表 示第一地址的第一标识及表示第二地址的第二标识,利用值字段携带所述第一 地址信息及第二地址信息。
5、 根据权利要求 1所述的利用 LLDP获取网络连接信息的方法, 其特征 在于, 所述第一地址信息及第二地址信息包括:
业务数据传输链路的 IP地址信息; 或者, 控制信令传输链路的 IP地址信 息。
6、 根据权利要求 1-5中任一项所述的利用 LLDP获取网络连接信息的方 法, 其特征在于, 还包括:
由所述网管系统根据所述第一业务网元与第二业务网元之间的业务归属 关系, 获取所述第一业务网元与第二业务网元之间的物理拓朴。
7、 一种利用链路层发现协议 LLDP获取网络连接信息的系统, 其特征在 于, 包括: 承载网和网外业务网元; 其中, 所述网外业务网元包括: 网外第一 业务网元和网外第二业务网元; 所述^载网包括: 载网边缘节点设备和网管 系统; 其中,
所述网外业务网元, 用于向所述承载网边缘节点设备发送 LLDP报文, 所 述 LLDP报文中携带接入所述承载网的第一业务网元的第一地址信息、与所述 承载网输出端连接的对应所述第一业务网元的第二业务网元的第二地址信息; 所述承载网边缘节点设备, 用于接收所述网外业务网元发送的 LLDP报 文, 将所述第一地址信息和第二地址信息上报至所述网管系统;
所述网管系统,用于根据所述第一地址信息和第二地址信息之间的对应关 系, 获取所述第一业务网元与第二业务网元之间的业务归属关系。
8、 根据权利要求 7所述的利用链路层发现协议 LLDP获取网络连接信息 的系统, 其特征在于, 所述承载网边缘节点设备包括: 承载网接入边缘的节点 设备和承载网输出边缘的节点设备, 其中,
所述承载网接入边缘的节点设备,用于接收与其连接的所述第一业务网元 发送的第一 LLDP报文,所述第一 LLDP报文携带所述第一业务网元的地址信 息及所述第二业务网元的第二地址信息;
所述承载网输出边缘的节点设备,用于接收与其连接的第二业务网元发送 的第二 LLDP报文,所述第二 LLDP报文携带所述第二业务网元的第二地址信 息及所述第一业务网元的地址信息。
9、 根据权利要求 7所述的利用链路层发现协议 LLDP获取网络连接信息 的系统, 其特征在于,
所述第一业务网元和第一业务网元,通过扩展 LLDP报文中的报文类型字 段,利用扩展之后的报文类型字段携带表示第一地址的第一标识及表示第二地 址的第二标识, 利用值字段携带所述第一地址信息及第二地址信息。
10、根据权利要求 7所述的利用链路层发现协议 LLDP获取网络连接信息 的系统, 其特征在于, 所述第一地址信息及第二地址信息包括:
业务数据传输链路的 IP地址信息; 或者, 控制信令传输链路的 IP地址信 息。
11、 根据权利要求 7-10中任一项所述的利用链路层发现协议 LLDP获取 网络连接信息的系统, 其特征在于, 所述网管系统还用于, 根据所述第一业务 网元与第二业务网元之间的业务归属关系,获取所述第一业务网元与第二业务 网元之间的物理拓朴。
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