• DocumentCode
    1152219
  • Title

    An efficient primary-segmented backup scheme for dependable real-time communication in multihop networks

  • Author

    Gummadi, Krishna Phani ; Pradeep, Madhavarapu Jnana ; Murthy, C. Siva Ram

  • Author_Institution
    Indian Inst. of Technol., Madras, India
  • Volume
    11
  • Issue
    1
  • fYear
    2003
  • fDate
    2/1/2003 12:00:00 AM
  • Firstpage
    81
  • Lastpage
    94
  • Abstract
    Several distributed real-time applications (e.g., medical imaging, air traffic control, video conferencing) demand hard guarantees on the message delivery latency and the recovery delay from component failures. As these demands cannot be met in traditional datagram services, special schemes have been proposed to provide timely recovery for real-time communications in multihop networks. These schemes reserve additional network resources (spare resources) a priori along a backup channel that is disjoint with the primary. Upon a failure in the primary channel, its backup is activated, making the real-time connection dependable. We propose a new backup method, called segmented backups, in which backup paths are provided for partial segments of the primary path rather than for its entire length, as is done in the existing schemes. We show that our method offers: 1) improved network resource utilization; 2) higher average call acceptance rate; 3) better quality-of-service guarantees on propagation delays and failure-recovery times; 4) increased flexibility to control the level of fault tolerance of each connection separately. We provide an algorithm for routing the segmented backups and prove its optimality with respect to spare resource reservation. We detail necessary extensions to resource reservation protocol (RSVP) to support our scheme and argue that they increase the implementation complexity of RSVP minimally. Our simulation studies on various network topologies demonstrate that spare resource aggregation methods, such as backup multiplexing, are more effective when applied to our scheme than to earlier schemes.
  • Keywords
    computational complexity; network topology; quality of service; real-time systems; resource allocation; telecommunication channels; telecommunication network reliability; telecommunication network routing; QoS guarantees; RSVP; backup channel; backup paths; call acceptance rate; component failures; failure-recovery times; fault tolerance; message delivery latency; multihop networks; network resource utilization; network topologies; primary-segmented backup scheme; propagation delays; quality-of-service guarantees; real-time communication; resource reservation protocol; routing algorithm; Air traffic control; Biomedical imaging; Fault tolerance; Propagation delay; Protocols; Quality of service; Resource management; Routing; Spread spectrum communication; Videoconference;
  • fLanguage
    English
  • Journal_Title
    Networking, IEEE/ACM Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6692
  • Type

    jour

  • DOI
    10.1109/TNET.2002.808405
  • Filename
    1180547