DocumentCode
1681713
Title
Low-power density wireless powering for battery-less sensors
Author
Popovic, Zoya ; Falkenstein, E. ; Zane, Regan
Author_Institution
Univ. of Colorado, Boulder, CO, USA
fYear
2013
Firstpage
31
Lastpage
33
Abstract
This paper presents an overview of far-field wireless powering for low-power wireless sensors. With expected RF power densities in the 20 to 200μW/cm2 range, and desired small sensor overall size, low-power non-directive wireless powering is appropriate for sensors that transmit data at low duty cycles. The sensor platform is powered through an antenna which receives incident electromagnetic waves in the GHz frequency range, couples the energy to a rectifier circuit which charges a storage device (e.g. thin-film battery) through an efficient power management circuit, and the entire platform, is controlled through a low-power micro-controller. For low incident power density levels, co-design of the RF powering and the power management circuits is required for optimal performance. Results are presented with integrated antenna-rectifiers operating in the 2-GHz cellular band with over 50% efficiency for an incident power density of 75μW/cm2.
Keywords
UHF antennas; UHF radio propagation; data communication; low-power electronics; microcontrollers; microwave power transmission; power supplies to apparatus; rectennas; rectifying circuits; wireless sensor networks; RF power densities; RF powering circuits; battery-less sensors; cellular band; codesign; data transmission; duty cycles; electromagnetic waves; far-field wireless powering; frequency 2 GHz; integrated antenna rectifiers; low incident power density levels; low-power density wireless powering; low-power microcontroller; low-power nondirective wireless powering; low-power wireless sensors; optimal performance; power management circuit; receiving antenna; rectenna; rectifier circuit; storage device charging; Batteries; Impedance; Rectennas; Rectifiers; Sensors; Wireless communication; Wireless sensor networks; Wireless power transfer; rectenna; wireless sensor;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio and Wireless Symposium (RWS), 2013 IEEE
Conference_Location
Austin, TX
ISSN
2164-2958
Print_ISBN
978-1-4673-2929-3
Electronic_ISBN
2164-2958
Type
conf
DOI
10.1109/RWS.2013.6486631
Filename
6486631
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