• DocumentCode
    1522960
  • Title

    Harvesting Ambient Kinetic Energy With Switched-Inductor Converters

  • Author

    Kwon, Dongwon ; Rincón-Mora, Gabriel A. ; Torres, Erick O.

  • Author_Institution
    Georgia Tech Analog, Power, & Energy IC Res. Lab., Georgia Inst. of Technol., Atlanta, GA, USA
  • Volume
    58
  • Issue
    7
  • fYear
    2011
  • fDate
    7/1/2011 12:00:00 AM
  • Firstpage
    1551
  • Lastpage
    1560
  • Abstract
    The potential application space for miniaturized systems like wireless microsensors is expansive, from reconnaissance mission work and remote sensors to biomedical implants and disposable consumer products. Conforming to microscale dimensions, however, constrains energy and power to such an extent that sustaining critical power-hungry functions like wireless communication is problematical. Harvesting ambient kinetic energy offers an appealing alternative, except the act of transferring energy requires power that could easily exceed what the harvester generates in the first place. This paper reviews piezoelectric and electrostatic harvester circuits, describes how to design low-power switched-inductor converters capable of producing net energy gains when supplied from piezoelectric and electrostatic transducers, and presents experimental results from prototype embodiments. In the electrostatic case shown, the controller dissipated 0.91 nJ per cycle and the switched-inductor precharger achieved 90.3% efficiency to allow the harvester to net a gain of 2.47 nJ per cycle from a capacitor that oscillated between 157 and 991 pF. The piezoelectric counterpart harnessed 1.6 to 29.6 μW from weak periodic vibrations with 0.05-0.16- m/s2 accelerations and 65.3 μJ from (impact-produced) nonperiodic motion.
  • Keywords
    energy harvesting; piezoelectric transducers; vibrations; ambient kinetic energy harvesting; biomedical implants; disposable consumer products; electrostatic harvester; low-power switched-inductor converters; periodic vibrations; piezoelectric harvester; piezoelectric transducers; power-hungry functions; remote sensors; switched-inductor converters; wireless communication; wireless microsensors; Batteries; Electrostatics; Kinetic energy; Switches; Switching circuits; Transducers; Vibrations; Battery charger; electrostatic; harvesting/harnessing energy; piezoelectric; rectifier; switched-inductor converter; vibration; wireless microsensor;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Regular Papers, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1549-8328
  • Type

    jour

  • DOI
    10.1109/TCSI.2011.2142731
  • Filename
    5772038