• DocumentCode
    1080726
  • Title

    Energy Optimization under Informed Mobility

  • Author

    Tang, Chiping ; McKinley, Philip K.

  • Author_Institution
    Microsoft Corp., Redmond, WA
  • Volume
    17
  • Issue
    9
  • fYear
    2006
  • Firstpage
    947
  • Lastpage
    962
  • Abstract
    Energy optimization is important in wireless ad hoc networks, where node battery power is usually limited. Research results show that such a network can exploit controlled node mobility to reduce communication-related energy consumption. However, node movement itself usually consumes energy. In this paper we study the energy optimization problem that accounts for energy costs associated with both communication and physical node movement. We refer to this model as informed mobility. We first review the theoretical foundations on how to reduce total communication energy consumption, as well as increase system lifetime, by combining node movement and transmission power adaptation. Next, we describe and analyze the informed mobility optimization problem. Based on this analysis, we introduce localized algorithms and protocols for informed mobility. We propose iMobif, a flow-based informed mobility framework that collects network information for mobility decision making. We demonstrate how to use iMobif to minimize total communication energy consumption as well as to maximize system lifetime. We compare the performance of iMobif to that of systems with no mobility or only cost-unaware mobility. Simulation results show iMobif is effective in reducing energy consumption relative to such systems
  • Keywords
    ad hoc networks; mobility management (mobile radio); power consumption; routing protocols; telecommunication traffic; wireless sensor networks; communication-related energy consumption reduction; energy optimization problem; iMobif flow-based informed mobility framework; informed mobility optimization problem; informed mobility routing protocols; mobile ad hoc network; mobility decision making; node mobility; transmission power adaptation; wireless ad hoc network; Algorithm design and analysis; Batteries; Communication system control; Cost function; Decision making; Energy consumption; Mobile ad hoc networks; Network topology; Power system modeling; Protocols; Mobile ad hoc network; energy optimization; informed mobility; localized algorithm; node position; routing protocol; system lifetime.;
  • fLanguage
    English
  • Journal_Title
    Parallel and Distributed Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1045-9219
  • Type

    jour

  • DOI
    10.1109/TPDS.2006.122
  • Filename
    1668060