• DocumentCode
    730489
  • Title

    Multiuser charging control in wireless power transfer via magnetic resonant coupling

  • Author

    Vedady Moghadam, Mohammad R. ; Rui Zhang

  • Author_Institution
    ECE Dept., Nat. Univ. of Singapore, Singapore, Singapore
  • fYear
    2015
  • fDate
    19-24 April 2015
  • Firstpage
    3182
  • Lastpage
    3186
  • Abstract
    Magnetic resonant coupling (MRC) is a practically appealing method for realizing the near-field wireless power transfer (WPT). The MRC-WPT system with a single pair of transmitter and receiver has been extensively studied in the literature, while there is limited work on the general setup with multiple transmitters and/or receivers. In this paper, we consider a point-to-multipoint MRC-WPT system with one transmitter sending power wirelessly to a set of distributed receivers simultaneously. We derive the power delivered to the load of each receiver in closed-form expression, and reveal a “near-far” fairness issue in multiuser power transmission due to users´ distance-dependent mutual inductances with the transmitter. We also show that by designing the receivers´ load resistances, the near-far issue can be optimally solved. Specifically, we propose a centralized algorithm to jointly optimize the load resistances to minimize the power drawn from the energy source at the transmitter under given power requirements for the loads. We also devise a distributed algorithm for the receivers to adjust their load resistances iteratively, for ease of practical implementation.
  • Keywords
    inductive power transmission; multiuser channels; radio receivers; radio transmitters; distance-dependent mutual inductances; magnetic resonant coupling; multiuser charging control; multiuser power transmission; near-far fairness issue; near-field wireless power transfer; point-to-multipoint MRC-WPT system; radio receiver; radio transmitter; receivers load resistances; Magnetic resonance; Optimization; Receivers; Resistance; Transmitters; Wireless communication; Wireless power transfer; iterative algorithm; magnetic resonant coupling; multiuser charging control; optimization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Acoustics, Speech and Signal Processing (ICASSP), 2015 IEEE International Conference on
  • Conference_Location
    South Brisbane, QLD
  • Type

    conf

  • DOI
    10.1109/ICASSP.2015.7178558
  • Filename
    7178558