• DocumentCode
    2829899
  • Title

    Swarm intelligence routing resilient to byzantine adversaries

  • Author

    Awerbuch, Baruch ; Holmer, David ; Rubens, Herbert

  • Author_Institution
    Dept. of Comput. Sci., Johns Hopkins Univ., Baltimore, MD, USA
  • fYear
    2004
  • fDate
    2004
  • Firstpage
    160
  • Lastpage
    163
  • Abstract
    An ad hoc wireless network is an autonomous self-organizing system of mobile nodes connected by wireless links where nodes not in direct range communicate via intermediary nodes. Routing in ad hoc networks is a challenging problem as a result of highly dynamic topology as well as bandwidth and energy constraints. The Swarm intelligence paradigm has recently demonstrated as an effective approach for routing in small network configurations with no adversarial intervention. These algorithms have also been proven to be robust and resilient to changes in node configuration. However, none of the existing routing algorithms can withstand a dynamic proactive adversarial attack, where the network may be completely controlled by byzantine adversaries. The routing protocol presented in this work attempts to provide throughput competitive route selection against an adversary which is essentially unlimited; more specifically, the adversary benefits from complete collusion of adversarial nodes, can engage in arbitrary byzantine behavior and can mount arbitrary selective adaptive attacks, dynamically changing its attack with each new packet. In this work, we show how to use the Swarm intelligence paradigm and distributed reinforcement learning in order to develop provably secure routing against byzantine adversaries. Preliminary simulation results are presented.
  • Keywords
    ad hoc networks; learning (artificial intelligence); mobile radio; radio links; routing protocols; self-adjusting systems; Swarm intelligence routing; ad hoc wireless network; arbitrary selective adaptive attack; autonomous self-organizing system; byzantine adversary; distributed reinforcement learning; dynamic topology; energy constraint; mobile node; node configuration; routing protocol; secure routing; static network configuration; throughput competitive route selection; wireless link; Ad hoc networks; Communication system security; Computer crime; Computer science; Learning; Organizing; Particle swarm optimization; Robustness; Routing protocols; Wireless networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communications, 2004 International Zurich Seminar on
  • Print_ISBN
    0-7803-8329-X
  • Type

    conf

  • DOI
    10.1109/IZS.2004.1287413
  • Filename
    1287413