EP1545071A1

A method for improved handling of dynamic bandwidth changes in a transport network using inverse multiplexing

Abstract

One of the objects of the invention is a method for improved handling of dynamic bandwidth changes in a transport network using inverse multiplexing such that at least one connection end-point of a connection does not correspond to an inverse multiplexing end-point, said method including a step wherein said at least one connection end-point is informed of said bandwidth change by at least one inverse multiplexing end-point aware of said bandwidth change.

EP1545071A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 19 December 2023, 2.8 years ago.

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  2. Published
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  4. Today

51 claims: 25 independent, 26 dependent

  1. 1
    A method for improved handling of dynamic bandwidth changes in a transport network using inverse multiplexing such that at least one connection end-point does not correspond to an inverse multiplexing end-point, a method including a step wherein said at least one connection end-point is informed of a bandwidth change by at least one inverse multiplexing end-point aware of said bandwidth change.
  2. 4
    A method according to any of claims 1 to 3, wherein said step includes a step wherein a first connection end-point corresponding to an inverse multiplexing end-point informs a second connection end-point not corresponding to an inverse multiplexing end-point of a bandwidth change of which it is aware.
  3. 5
    A method according to any of claims 1 to 4, wherein said step includes a first step wherein a first connection end-point not corresponding to an inverse multiplexing end-point is informed of a bandwidth change by an inverse multiplexing end-point aware of said bandwidth change, and a second step wherein said first connection end-point informs a second connection end-point not corresponding to an inverse multiplexing end-point of said bandwidth change.
  4. 6
    A method according to any of claims 1 to 5, wherein information indicative of a bandwidth change, received by said at least one connection end-point, includes a currently available bandwidth.
  5. 7
    A method according to any of claims 1 to 6, wherein a bandwidth change corresponds to a failure of at least one link in a group of links between two inverse multiplexing end-points.
  6. 11
    A method according to any of claims 1 to 10, including a step wherein said at least one connection end-point uses information indicative of a bandwidth change, received from said at least one inverse multiplexing end-point, to correspondingly adjust the traffic load.
  7. 12
    A method according to any of claims 7 to 11, including a step wherein said at least one connection end-point uses said information indicative of a bandwidth change, received from said at least one inverse multiplexing end-point to take defence actions against congestion due to said link failure.
  8. 13
    A method according to any of claims 1 to 12, wherein said transport network corresponds to the radio access network of a mobile communication system, and a first and a second connection end-point respectively correspond to a first and a second network element communicating across a given interface of said radio access network.
  9. 17
    A method according to any of claims 13 to 16, wherein said first and second network elements respectively correspond to a base station and to a base station controller.
  10. 24
    A network element for the radio access network of a mobile communication system, including means for performing a method according to any of claims 1 to 23.
  11. 25
    A base station, for the radio access network of a mobile communication system, including means for performing a method according to any of claims 1 to 23.
  12. 26
    A base station controller, for the radio access network of a mobile communication system, including means for performing a method according to any of claims 1 to 23.
  13. 27
    A method for improved handling of link failure in a transport network using inverse multiplexing technique, a method including a step wherein said transport network takes preventive and /or defence actions against congestion due to said link failure, based on a criterion of traffic priority, in a way as to protect traffic of high priority against said congestion.
  14. 30
    A method according to any of claims 27 to 29, wherein said preventive actions include marking traffic priority.
  15. 33
    A method according to any of claims 31 or 32, wherein said transport network using ATM as a transport technology, in the case where AAL2 connections of different priorities are multiplexed on a same VC, an ATM cell containing at least part of a CPS packet of high priority is considered to have a high priority.
  16. 35
    A method according to any of claims 27 to 34, wherein said transport network using ATM as a transport technology, said defence actions include ATM cell discarding.
  17. 36
    A method according to any of claims 27 to 35, wherein high priority traffic to be protected against said congestion is determined having regard to the least admissible traffic corresponding to the highest number of links failure in an inverse multiplexing for ATM group.
  18. 37
    A method according to any of claims 27 to 36, wherein high priority traffic includes control plane traffic.
  19. 38
    A method according to any of claims 27 to 36, wherein high priority traffic includes important user plane traffic.
  20. 39
    A method according to any of claims 30 to 38, wherein marking traffic priority is performed in both transmission directions.
  21. 40
    A method according to any of claims 27 to 39, wherein said transport network corresponds to the radio access network of a mobile communication system, enabling two network elements to communicate across a given interface of said radio access network.
  22. 45
    A method according to any of claims 41 to 44, wherein said first and second network elements respectively correspond to a base station and to a base station controller.
  23. 49
    A network element, for the radio access network of a mobile communication system, including means for performing a method according to any of claims 27 to 48.
  24. 50
    A base station, for the radio access network of a mobile communication system, including means for performing a method according to any of claims 27 to 48.
  25. 51
    A base station controller, for the radio access network of a mobile communication system, including means for performing a method according to any of claims 27 to 48.
Independent claims25