DocumentCode :
166959
Title :
Design and evaluation of multi-band RF energy harvesting circuits and antennas for WSNs
Author :
Borges, Luis M. ; Barroca, Norberto ; Saraiva, Henrique M. ; Tavares, Jorge ; Gouveia, Paulo T. ; Velez, Fernando J. ; Loss, Caroline ; Salvado, Rita ; Pinho, Pedro ; Goncalves, Ricardo ; Borges Carvalho, Nuno ; Chavez-Santiago, Raul ; Balasingham, Ilangk
Author_Institution :
DEM, Univ. da Beira Interior, Covilha, Portugal
fYear :
2014
fDate :
4-7 May 2014
Firstpage :
308
Lastpage :
312
Abstract :
Radio frequency (RF) energy harvesting is an emerging technology that will enable to drive the next generation of wireless sensor networks (WSNs) without the need of using batteries. In this paper, we present RF energy harvesting circuits specifically developed for GSM bands (900/1800) and a wearable dual-band antenna suitable for possible implementation within clothes for body worn applications. Besides, we address the development and experimental characterization of three different prototypes of a five-stage Dickson voltage multiplier (with match impedance circuit) responsible for harvesting the RF energy. Different printed circuit board (PCB) fabrication techniques to produce the prototypes result in different values of conversion efficiency. Therefore, we conclude that if the PCB fabrication is achieved by means of a rigorous control in the photo-positive method and chemical bath procedure applied to the PCB it allows for attaining better values for the conversion efficiency. All three prototypes (1, 2 and 3) can power supply the IRIS sensor node for RF received powers of -4 dBm, -6 dBm and -5 dBm, and conversion efficiencies of 20, 32 and 26%, respectively.
Keywords :
UHF antennas; energy harvesting; microwave power transmission; mobile antennas; multifrequency antennas; printed circuit manufacture; telecommunication power supplies; voltage multipliers; wearable antennas; wireless sensor networks; GSM bands; IRIS sensor node; WSN; chemical bath procedure; energy harvesting antenna; five stage Dickson voltage multiplier; frequency 1800 MHz; frequency 900 MHz; match impedance circuit; multiband RF energy harvesting circuit; photo-positive method; printed circuit board fabrication technique; radio frequency energy harvesting; rigorous control; wearable dual-band antenna; wireless sensor network; Antennas; Dual band; Energy harvesting; Impedance; Prototypes; Radio frequency; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Telecommunications (ICT), 2014 21st International Conference on
Conference_Location :
Lisbon
Print_ISBN :
978-1-4799-5139-0
Type :
conf
DOI :
10.1109/ICT.2014.6845129
Filename :
6845129
Link To Document :
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