• DocumentCode
    2122494
  • Title

    Vacation policy optimization with application to IEEE 802.16e power saving mechanism

  • Author

    Azad, Amar P. ; Alouf, Sara ; Altman, Eitan ; Borkar, Vivek ; Paschos, Georgios

  • Author_Institution
    INRIA, Sophia Antipolis, France
  • fYear
    2009
  • fDate
    15-17 Dec. 2009
  • Firstpage
    1
  • Lastpage
    7
  • Abstract
    Much research has been devoted to optimizing the power saving mechanism in wireless mobile devices. Recent advances in wireless radio technology facilitate the implementation of various possible sleep policies. One basic question that arises is: which policy performs best under a certain condition? Furthermore, what are the optimal parameters for a given policy? To answer these questions, we formulate an optimization problem, which entails cost minimization for a given parameterized policy and selection of the best policy among a class. We propose a cost function which captures the inherent tradeoff of delay and energy saving. This takes into account the cost of response time due to the extra sleep, the energy saving during the sleep, and the cost for periodic waking up (for listening). As an application, we consider IEEE 802.16e´s power saving mechanism. We study various practical policies and check their performance. We show that the constant duration policy is optimal for Poisson inactivity periods, but not for hyper-exponentially distributed inactivity periods. In the policy where vacations are i.i.d. exponential random variables, we derive analytically the optimal control as a function of the expected inactivity period. This result holds for general inactivity periods. Our framework allows us to compare the performance of several optimal and suboptimal practical policies with that of the IEEE 802.16e standard.
  • Keywords
    broadband networks; metropolitan area networks; mobile radio; optimisation; IEEE 802.16e power saving mechanism; Poisson inactivity periods; cost function; delay saving; energy saving; exponential random variables; hyper-exponentially distributed inactivity periods; optimal control; suboptimal practical policies; vacation policy optimization; wireless mobile devices; wireless radio technology; Base stations; Cost function; Delay; Energy capture; Energy consumption; Internet; Mobile communication; Optimal control; Random variables; Transceivers;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Wireless Days (WD), 2009 2nd IFIP
  • Conference_Location
    Paris
  • Print_ISBN
    978-1-4244-5660-4
  • Electronic_ISBN
    978-1-4244-5662-8
  • Type

    conf

  • DOI
    10.1109/WD.2009.5449688
  • Filename
    5449688