• DocumentCode
    3768594
  • Title

    Joint optimization of transmission and reception policies for energy harvesting nodes

  • Author

    Qing Bai;Josef A. Nossek

  • Author_Institution
    Institute for Circuit Theory and Signal Processing, Technische Universit?t M?nchen, Munich, Germany
  • fYear
    2015
  • Firstpage
    416
  • Lastpage
    420
  • Abstract
    In the recent years, resource allocation problems for energy harvesting nodes have been studied extensively. While a large portion of these contributions focus on the transmit side, less attention has been paid to the receive side or jointly on both sides. In this work, we investigate the joint optimization of transmit and receive policies for a pair of energy harvesting nodes, in the basic setting of point-to-point communication over a single link. The discrete energy arrivals at the two nodes are assumed as independent Poisson processes, and are only known to the respective nodes causally. To this end, we model the system as two decentralized Markov decision processes, which do not share information about their local states but are coupled only through a global reward function, namely, the average throughput of the system. We first compute an upper bound on the system performance by assuming a central controller which is aware of the states of both nodes, and applying the policy-iteration algorithm. Then, based on the transition-independent property of the problem, we employ a low-complexity bilinear programming approach, which, via comparison with the obtained upper bound, is shown to produce local policies with very good performance.
  • Keywords
    "Receivers","Transmitters","Energy harvesting","Optimization","Throughput","Batteries","Energy resolution"
  • Publisher
    ieee
  • Conference_Titel
    Wireless Communication Systems (ISWCS), 2015 International Symposium on
  • Electronic_ISBN
    2154-0225
  • Type

    conf

  • DOI
    10.1109/ISWCS.2015.7454376
  • Filename
    7454376