EP3323227A1

Restoration method for an mpls ring network

Abstract

This record has no abstract on file.

Term

8.8 yearsto projected expiry

Projected expiry 16 July 2035, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

43 claims: 20 independent, 23 dependent

  1. 1
    Claims of equivalent WO 2017008862 A1 CLAIMS1 . A method for restoring a Multiprotocol Label Switching (MPLS) ring network in the event of a network link failure, wherein the MPLS ring network comprises a path for traffic around the ring comprising a plurality of sequential Label Switched Paths (LSPs), the method comprising, at a network node in the MPLS ring network:detecting a failure along a network link traversed by a first LSP having an end point at the network node;in response to the detecting, encapsulating an Ethernet Ring Protocol (ERP) restoration message in a restoration pseudowire;and transmitting the restoration pseudowire within a second LSP over a subsequent network link.
  2. 3
    A method according to clam 1 or 2, wherein detecting a failure along the network link traversed by the first LSP comprises detecting that the performance of the network link is below a threshold.
  3. 5
    A method for restoring a Multiprotocol Label Switching (MPLS) ring network in the event of a network link failure, wherein the MPLS ring network comprises a path for traffic around the ring comprising a plurality of sequential Label Switched Paths (LSPs), the method comprising, at a network node in the MPLS ring network:receiving a first LSP comprising a pseudowire;detecting that the pseudowire is a restoration pseudowire comprising an Ethernet Ring Protocol (ERP) restoration message;and in response to the detecting, processing the ERP restoration message.
  4. 6
    A method according to any of claims 5, wherein detecting that the pseudowire is a restoration pseudowire comprises detecting an identifier in header information of the pseudowire, the identifier indicating that the pseudowire carries an ERP restoration message.
  5. 14
    A method according to any of claims 1 to 4 or 8 to 13, wherein the second LSP is one of a plurality of LSPs having an end point at the network node, and wherein the first LSP is associated with the second LSP.
  6. 21
    A network node for a Multiprotocol Label Switching (MPLS) ring network, the network node comprising a processor and a memory, wherein the processor is configured to:detect a failure along a network link traversed by a first Label Switched Path (LSP) which is terminated at the network node;in response to the detection, encapsulate an Ethernet Ring Protocol (ERP) restoration message in a restoration pseudowire;and transmit the restoration pseudowire within a second LSP over a subsequent network link.
  7. 23
    A network node according to clam 21 or 22, wherein the processor is configured to detect a failure along the network link traversed by the first LSP by detecting that the performance of the network link is below a threshold.
  8. 24
    A network node according to any of claims 21 to 23, wherein the processor is further configured to insert an identifier in header information of the restoration psuedowire, the identifier indicating that the pseudowire carries an ERP restoration message.
  9. 25
    A network node for a Multiprotocol Label Switching (MPLS) ring network, the network node comprising a processor and a memory, wherein the processor is configured to:receive a first Label Switched Path (LSP) comprising a pseudowire;detect that the pseudowire is a restoration pseudowire comprising an Ethernet Ring Protocol (ERP) restoration message;and in response to the detection, process the ERP restoration message.
  10. 33
    A network node according to any of claims 29 to 32, wherein the processor is configured to forward the traffic pseudowire in dependence on the ERP restoration message.
  11. 34
    A network node according to any of claims 21 to 24 or 28 to 33, wherein the second LSP is one of a plurality of LSPs having an end point at the network node, and wherein the first LSP is associated with the second LSP.
  12. 35
    A network node according to any of claims 21 to 34, wherein the network node is at least one of an ingress network node for the traffic or an egress network node for the traffic.
  13. 36
    A network node according to any of claims 21 to 35, wherein the ERP restoration message comprises a Ring Automatic Protection Switching (R-APS) message.
  14. 37
    A network node according to any of claims 21 to 36, wherein the ERP restoration message is defined according to ITU-T G.8032.
  15. 38
    A network node according to any of claims 21 to 37, wherein the first LSP and or the second LSP is bidirectional.
  16. 39
    A network node according to any of claims 21 to 38, wherein the first LSP and or the second LSP has a spoke configuration.
  17. 40
    A network node according to any of claims 21 to 39, wherein the network node is coupled to a further MPLS ring network.
  18. 41
    A Multiprotocol Label Switching (MPLS) ring network comprising a path for traffic around the ring, the path comprising a plurality of sequential Label Switched Paths (LSPs), the MPLS ring network further comprising one or more network nodes according to any of claims 21 to 24 and one or more network nodes according to any of claims 25 to 34.
  19. 42
    A network node for a Multiprotocol Label Switching (MPLS) ring network, the network node comprising:a detecting module for detecting a failure along a network link traversed by a first Label Switched Path (LSP) which is terminated at the network node;an encapsulating module for, in response to the detection, encapsulating an Ethernet Ring Protocol (ERP) restoration message in a restoration pseudowire;and a transmitting module for transmitting the restoration pseudowire within a second LSP over a subsequent network link.
  20. 43
    A network node for a Multiprotocol Label Switching (MPLS) ring network, the network node comprising:a receiving module for receiving a first Label Switched Path (LSP) comprising a pseudowire;a detecting module for detecting that the pseudowire is a restoration pseudowire comprising an Ethernet Ring Protocol (ERP) restoration message;and a processing module for, in response to the detection, processing the ERP restoration message.
Independent claims20