EP0920153A2

Ring network for sharing protection resource by working communications paths

Abstract

In a ring topology network, a number of nodes interconnect transmission links to form first and second working rings and first and second optical protection rings in a ring topology. Multiple working paths are established on each working ring and multiple protection paths are established on each protection ring corresponding to the working paths. A first working path spans across first and second nodes for transmission of a signal in a first direction of the ring topology, and a second working path of the second working ring spans across the first and second nodes for transmission of a signal in a second direction of the ring topology opposite to the first direction A first protection path on the first protection ring spans across the first and second nodes for transmission of a signal in the second direction of the ring topology, and a second protection path of the second protection ring spans across the first and second nodes for transmission of a signal in the first direction of the ring topology. The first and second nodes normally use the first and second working paths, respectively. Responsive to a failure of one of the first and second working paths, the first and second nodes use a corresponding one of the first and second protection paths, instead of the failed working path.

EP0920153A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 30 November 2018, 7.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

27 claims: 6 independent, 21 dependent

  1. 1
    A communications network comprising:a plurality of transmission links;and a plurality of nodes for interconnecting said links to form a working ring and a protection ring in a ring topology, and establishing a plurality of working paths on said working ring and a plurality of protection paths on said protection ring corresponding to said plurality of working paths, one of said working paths spanning across first and second nodes of said plurality of nodes for transmission of a signal in a first direction of said ring topology, one of said protection paths spanning across said first and second nodes for transmission of a signal in a second direction of said ring topology opposite to said first direction, said first and second nodes normally using said one working path and being responsive to a failure of said one working path for using said one protection path instead of said one working path.
  2. 2
    A communications network comprising:a plurality of transmission links;and a plurality of nodes for interconnecting said transmission links to form first and second working rings and first and second protection rings in a ring topology, and establishing a plurality of working paths on each of said working rings and a plurality of protection paths on each of said protection rings corresponding to said plurality of working paths, a first one of said working paths of said first working ring spanning across first and second nodes of said plurality of nodes for transmission of a signal in a first direction of said ring topology, a second one of said working paths of said second working ring spanning across the first and second nodes for transmission of a signal in a second direction of the ring topology opposite to the first direction, a first one of said protection paths on said first protection ring spanning across the first and second nodes for transmission of a signal in said second direction of said ring topology, a second one of said protection paths of said second protection ring spanning across the first and second nodes for transmission of a signal in said first direction of said ring topology, said first and second nodes normally using said first and second working paths, respectively, and being responsive to a failure of one of said first and second working paths for using a corresponding one of the first and second protection paths instead of the failed working path.
  3. 3
    A communications network comprising:a plurality of transmission links;and a plurality of nodes for interconnecting said links to form a working ring and a protection ring in a ring topology, and establishing a plurality of working paths on said working ring and a plurality of extra traffic paths on said protection ring, one of said working paths spanning across first and second nodes of said plurality of nodes for transmission of a signal in a first direction of said ring topology, one of said extra traffic paths spanning across said first and second nodes for transmission of a low-priority signal in a second direction of said ring topology opposite to said first direction, said first and second nodes normally using said one working path and being responsive to a failure of said one working path for clearing said one extra traffic path to establish a first protection path and using the first protection path, clearing other extra traffic paths to establish a second protection path if said first protection path is not successfully established and using said second protection path instead of the failed working path, said first protection path having a shorter length than said second protection path.
  4. 18
    A network node for a ring topology network, the network having first and second working rings and first and second optical protection rings in a ring topology, and a plurality of working paths on each of said working rings and a plurality of protection paths on each of said protection rings corresponding to said plurality of working paths, the network node comprising:a first demultiplexer for receiving a multiplex signal from one of the working paths for producing drop-off signals;a first multiplexer for multiplexing add-up signals onto said one working path;a first path switch connected between said first demultiplexer and said first multiplexer;a second demultiplexer for receiving a multiplex signal from one of said protection paths for producing drop-off signals;a second multiplexer for multiplexing add-up signals onto said one protection path;a second path switch connected between said second demultiplexer and said second multiplexer;a transmit protection switch;a receive protection switch;and control circuitry for monitoring said one working path and controlling said transmit protection switch so that one of said add-up signals is coupled to said first multiplexer when no failure is detected in said one working path and coupled to said second multiplexer when a failure is detected in said one working path, and controlling said receive protection switch so that one of said drop-off signals of said first multiplexer is received when no failure is detected in said one working path and one of said drop-off signals of said second multiplexer is received when said failure is detected.
  5. 26
    A fault recovery method for a communications network, wherein the network comprises a plurality of transmission links, and a plurality of nodes for interconnecting said links to form a working ring and a protection ring in a ring topology, and establishing a plurality of working paths on said working ring and a plurality of protection paths on said protection ring corresponding to said plurality of working paths, the method comprising the steps of:a) establishing one of said working paths between source and destination nodes of said plurality of nodes for transmission of a signal in a first direction of said ring topology and establishing one of said protection paths between said source and destination nodes for transmission of a signal in a second direction of said ring topology opposite to said first direction;b) using said one working path for communication between said source and destination nodes;c) monitoring said working path at said destination node;d) transmitting a switching command message from said destination node to said source node if a failure is detected in said working path;and e) using said one protection path for communication between said source and destination nodes, instead of the failed working path, in response to said switching command message.
  6. 27
    A fault recovery method for a communications network, wherein the network comprises a plurality of transmission links, and a plurality of nodes for interconnecting said links to form a working ring and a protection ring in a ring topology, and establishing a plurality of working paths on said working ring and a plurality of extra traffic paths on said protection ring, the method comprising the steps of:a) establishing one of said working paths between source and destination nodes of said plurality of nodes for transmission of a signal in a first direction of said ring topology and establishing one of said extra traffic paths between said source and destination nodes for transmission of a low-priority signal in a second direction of said ring topology opposite to said first direction, b) normally using said one working path between said source and destination nodes;c) monitoring said one working path at said destination node;d) clearing said one extra traffic path to establish a short-haul protection path between said source and destination nodes when a failure is detected in said one working path and using the short-haul protection path, instead of the failed working path, between said source and destination nodes;and e) clearing other extra traffic paths to establish a long-haul protection path if said short-haul protection path is not successfully established and using said long-haul protection path, instead of the failed working path, between said source and destination nodes.