• DocumentCode
    266280
  • Title

    Energy-efficient antenna selection and power allocation for large-scale multiple antenna systems with hybrid energy supply

  • Author

    Zhenyu Zhou ; Sheng Zhou ; Jie Gong ; Zhisheng Niu

  • Author_Institution
    State Key Lab. of Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
  • fYear
    2014
  • fDate
    8-12 Dec. 2014
  • Firstpage
    2574
  • Lastpage
    2579
  • Abstract
    The combination of energy harvesting and large-scale multiple antenna technologies provides a promising solution for improving the energy efficiency (EE) by exploiting renewable energy sources and reducing the transmission power per user and per antenna. However, the introduction of energy harvesting capabilities into large-scale multiple antenna systems poses many new challenges for energy-efficient system design due to the intermittent characteristics of renewable energy sources and limited battery capacity. Furthermore, the total manufacture cost and the sum power of a large number of radio frequency (RF) chains can not be ignored, and it would be impractical to use all the antennas for transmission. In this paper, we propose an energy-efficient antenna selection and power allocation algorithm to maximize the EE subject to the constraint of user´s quality of service (QoS). An iterative offline optimization algorithm is proposed to solve the non-convex EE optimization problem by exploiting the properties of nonlinear fractional programming. The relationships among maximum EE, selected antenna number, battery capacity, and EE-SE tradeoff are analyzed and verified through computer simulations.
  • Keywords
    antenna arrays; concave programming; energy conservation; energy harvesting; iterative methods; nonlinear programming; renewable energy sources; EE maximization; RF chain; battery capacity; computer simulation; energy efficiency improvement; energy harvesting; energy harvesting capability; energy-efficient antenna selection; energy-efficient system design; hybrid energy supply; intermittent characteristics; iterative offline optimization algorithm; large-scale multiple-antenna systems; large-scale multiple-antenna technology; limited battery capacity; nonconvex EE optimization problem; nonlinear fractional programming; power allocation; radiofrequency chain; renewable energy sources; selected antenna number; sum power; total manufacture cost; transmission power reduction; user QoS; user quality of service; Batteries; Optimization; Radio frequency; Renewable energy sources; Resource management; Transmitting antennas;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Global Communications Conference (GLOBECOM), 2014 IEEE
  • Conference_Location
    Austin, TX
  • Type

    conf

  • DOI
    10.1109/GLOCOM.2014.7037195
  • Filename
    7037195