• DocumentCode
    3206820
  • Title

    Routing bandwidth guaranteed paths with local restoration in label switched networks

  • Author

    Li, Li ; Buddhikot, Milind M. ; Chekuri, Chandra ; Guo, Katherine

  • fYear
    2002
  • fDate
    12-15 Nov. 2002
  • Firstpage
    110
  • Lastpage
    120
  • Abstract
    The emerging multi-protocol label switching (MPLS) networks enable network service providers to route bandwidth guaranteed paths between customer sites (see Davie, B. and Rekhter, Y., 2000; Awduche, D. et. al., 1999; Sharma, V. et al., 2002; Jamoussi et al., 2002). This basic label switched path (LSP) routing is often enhanced using restoration routing which sets up alternate LSPs to guarantee uninterrupted connectivity in case network links or nodes along the primary path fail. We address the problem of distributed routing of restoration paths, defined as follows: given a request for a bandwidth guaranteed LSP between two nodes, find a primary LSP and a set of backup LSPs that protect the links along the primary LSP. A routing algorithm that computes these paths must optimize the restoration latency and the amount of bandwidth used. We introduce the concept of "backtracking" to bound the restoration latency. We consider three different cases characterized by a parameter called backtracking distance, D: (1) no backtracking (D=0); (2) limited backtracking (D=k); (3) unlimited backtracking (D=∞). We use a link cost model that captures bandwidth sharing among links using various types of aggregate link state information. We first show that joint optimization of primary and backup paths is NP-hard in all cases. We then consider algorithms that compute primary and backup paths in two separate steps. Using link cost metrics that capture bandwidth sharing, we devise heuristics for each case. Our simulation study shows that these algorithms offer a way to tradeoff bandwidth to meet a range of restoration latency requirements.
  • Keywords
    backtracking; computational complexity; multiprotocol label switching; optimisation; quality of service; routing protocols; MPLS; QoS; backtracking distance; bandwidth guaranteed paths; bandwidth sharing; distributed routing; label switched networks; label switched path routing; link state information; local restoration paths; multi-protocol label switching; quality-of-service; restoration latency; Bandwidth; Costs; Delay; Intelligent networks; Multiprotocol label switching; Protection; Routing; Switches; Telecommunication traffic; Virtual private networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Network Protocols, 2002. Proceedings. 10th IEEE International Conference on
  • ISSN
    1092-1648
  • Print_ISBN
    0-7695-1856-7
  • Type

    conf

  • DOI
    10.1109/ICNP.2002.1181392
  • Filename
    1181392