• DocumentCode
    2014621
  • Title

    CAD of multi-resonator rectenna for micro-power generation

  • Author

    Rizzoli, Vittorio ; Bichicchi, Giacomo ; Costanzo, Alessandra ; Donzelli, Francesco ; Masotti, Diego

  • Author_Institution
    DEIS, Univ. of Bologna, Bologna, Italy
  • fYear
    2009
  • fDate
    28-29 Sept. 2009
  • Firstpage
    331
  • Lastpage
    334
  • Abstract
    We introduce a compact, lightweight and highly efficient multi-resonator rectenna (rectifying antenna) designed to harvest the RF energy really obtainable in humanized environments. Such sources, radiated from cell phones, radio transmitters and Wi-Fi equipments, are ubiquitously available but have very low power densities, at different frequency bands, with unknown directions of incidence and polarization. In order to harvest a significant quantity of energy it is mandatory to put a very special care in the design of each part of the receiving/storing system. For this purpose a combination of resonant antennas, each one designed for a specific application-dependent frequency band, is optimised together with the rectifying circuit and the load. This is accomplished by a rigorous design tool, based on the concurrent use of nonlinear and electromagnetic CAD methods. Multi-source non linear simulation of the harvester in realistic operating conditions predicts a DC power of a few hundred muW, which represents the typical energy requirement of a sensor node.
  • Keywords
    CAD; computational electromagnetics; energy harvesting; low-power electronics; rectennas; rectifying circuits; resonators; CAD; DC power; RF energy harvesting; Wi-Fi equipment; cell phone; humanized environment; micropower generation; multiresonator rectenna; multisource nonlinear harvester simulation; nonlinear-electromagnetic CAD method; radio transmitter; rectifying antenna; rectifying circuit; resonant antenna; specific application-dependent frequency band; unknown incidence direction; unknown polarization direction; Cellular phones; Design automation; Design optimization; Loaded antennas; Optical polarization; Radio frequency; Radio transmitters; Rectennas; Rectifying circuits; Resonance;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave Integrated Circuits Conference, 2009. EuMIC 2009. European
  • Conference_Location
    Rome
  • Print_ISBN
    978-1-4244-4749-7
  • Type

    conf

  • Filename
    5296024