DocumentCode :
244164
Title :
Experimental Characterization of Wearable Antennas and Circuits for RF Energy Harvesting in WBANs
Author :
Saraiva, Henrique M. ; Borges, Luis M. ; Pinho, Pedro ; Goncalves, Ricardo ; Chavez-Santiago, Raul ; Barroca, Norberto ; Tavares, Jorge ; Gouveia, Paulo T. ; Borges Carvalho, Nuno ; Balasingham, Ilangko ; Velez, Fernando J. ; Loss, Caroline ; Salvado, Rit
Author_Institution :
DEM, Univ. da Beira Interior, Covilhá, Portugal
fYear :
2014
fDate :
18-21 May 2014
Firstpage :
1
Lastpage :
5
Abstract :
Field trials have been performed in Covilhã to identify the spectrum opportunities for radio frequency (RF) energy harvesting through power density measurements from 350 MHz to 3 GHz. Based on the identification of the most promising opportunities, a dual-band printed antenna was conceived, operating at GSM bands (900/1800), with gains of 1.8 and 2.06 dBi, and efficiency varying from 77.6 to 82%, for the highest and lowest operating frequency bands, respectively. In this paper, guidelines for the design of RF energy harvesting circuits and choice of textile materials for a wearable antenna are briefly discussed. Besides, we address the development and experimental characterization of three different prototypes of a five-stage Dickson voltage multiplier (with and without impedance matching circuit) responsible for RF energy harvesting. All the three prototypes (1, 2 and 3) can power supply the sensor node for RF received powers of 2 dBm, -3 dBm and -4 dBm, and conversion efficiencies of 6, 18 and 20%, respectively.
Keywords :
UHF antennas; antenna radiation patterns; body area networks; cellular radio; energy harvesting; impedance matching; microstrip antennas; multifrequency antennas; radio spectrum management; telecommunication power management; voltage multipliers; wearable antennas; wireless sensor networks; GSM band; RF energy harvesting circuit design experimental characterization; WBAN sensor node power supply; dual band printed antenna; five-stage Dickson voltage multiplier; frequency 350 MHz to 3 GHz; gain 1.8 dB; gain 2.06 dB; impedance matching circuit; power density measurement; radio frequency energy harvesting; spectrum identification; textile material; wearable antenna experimental characterization; wireless body area network; Antenna measurements; Antennas; Dual band; Energy harvesting; Impedance; Prototypes; Radio frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2014 IEEE 79th
Conference_Location :
Seoul
Type :
conf
DOI :
10.1109/VTCSpring.2014.7022920
Filename :
7022920
Link To Document :
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