• DocumentCode
    87159
  • Title

    Discrete-Rate Adaptation and Selection in Energy Harvesting Wireless Systems

  • Author

    Khairnar, Parag S. ; Mehta, Neelesh B.

  • Author_Institution
    Marvell India Private Ltd., Pune, India
  • Volume
    14
  • Issue
    1
  • fYear
    2015
  • fDate
    Jan. 2015
  • Firstpage
    219
  • Lastpage
    229
  • Abstract
    In a system with energy harvesting (EH) nodes, the design focus shifts from minimizing energy consumption by infrequently transmitting less information to making the best use of available energy to efficiently deliver data while adhering to the fundamental energy neutrality constraint. We address the problem of maximizing the throughput of a system consisting of rate-adaptive EH nodes that transmit to a destination. Unlike related literature, we focus on the practically important discrete-rate adaptation model. First, for a single EH node, we propose a discrete-rate adaptation rule and prove its optimality for a general class of stationary and ergodic EH and fading processes. We then study a general system with multiple EH nodes in which one is opportunistically selected to transmit. We first derive a novel and throughput-optimal joint selection and rate adaptation rule (TOJSRA) when the nodes are subject to a weaker average power constraint. We then propose a novel rule for a multi-EH node system that is based on TOJSRA, and we prove its optimality for stationary and ergodic EH and fading processes. We also model the various energy overheads of the EH nodes and characterize their effect on the adaptation policy and the system throughput.
  • Keywords
    energy harvesting; fading channels; TOJSRA; discrete-rate adaptation rule; energy consumption; energy harvesting wireless systems; fundamental energy neutrality constraint; multi EH node system; novel throughput-optimal joint selection and rate adaptation rule; rate-adaptive EH nodes; Adaptation models; Batteries; Bit error rate; Rayleigh channels; Throughput; Wireless communication; Energy harvesting; energy neutrality; fading channels; opportunistic selection; power constraint; rate adaptation;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2014.2337296
  • Filename
    6851199