• DocumentCode
    2027037
  • Title

    Capacity and delay tradeoffs for ad-hoc mobile networks

  • Author

    Neely, Michael J. ; Modiano, Eytan

  • Author_Institution
    Southern California Univ., CA, USA
  • fYear
    2004
  • fDate
    25-29 Oct. 2004
  • Firstpage
    428
  • Lastpage
    438
  • Abstract
    We consider the throughput/delay tradeoffs for scheduling data transmissions in a mobile ad-hoc network. To reduce delays in the network, each user sends the redundant packets along multiple paths to the destination. Assuming the network has a cell partitioned structure and users move according to a simplified iid mobility model, we compute the exact network capacity and the exact end-to-end queueing delay when no redundancy is used. The capacity achieving algorithm is a modified version of the Grossglauser-Tse 2-hop relay algorithm and provides O(N) delay (where N is the number of users). We then show that redundancy cannot increase capacity, but can significantly improve delay. The following necessary tradeoff is established: delay/rate ≥ O(N). Two protocols which use redundancy and operate near the boundary of this curve are developed, with delays of O(√N) and O(log(N)), respectively. Networks with non-iid mobility are also considered and shown through simulation to closely match the performance of iid systems in the O(√N) delay regime.
  • Keywords
    ad hoc networks; delays; mobile radio; queueing theory; scheduling; ad-hoc mobile network; capacity achieving algorithm; delay tradeoff; end-to-end queueing delay; network capacity; scheduling data transmission; Ad hoc networks; Computer networks; Data communication; Delay; Partitioning algorithms; Processor scheduling; Relays; Throughput; Wireless networks; World Wide Web;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Broadband Networks, 2004. BroadNets 2004. Proceedings. First International Conference on
  • Print_ISBN
    0-7695-2221-1
  • Type

    conf

  • DOI
    10.1109/BROADNETS.2004.21
  • Filename
    1363831