Title :
Robust, wearable, on-body antenna relying on half mode substrate integrated waveguide techniques
Author :
Agneessens, Sam ; Rogier, Hendrik ; Moro, Riccardo ; Bozzi, Maurizio
Author_Institution :
Dept. of Inf. Technol. (INTEC), Ghent Univ., Ghent, Belgium
Abstract :
A compact, robust, wearable antenna for body-worn applications in the 2.4 GHz Industrial Medical and Scientific band is designed, fabricated and tested. This novel compact textile cavity backed slot antenna combines a half-mode substrate integrated waveguide topology with an additional row of shorting vias for miniaturization. Excellent free space performance is achieved with a measured 4.6 % impedance bandwidth, maximal gain of 4.7 dBi and radiation efficiency of 81.3 %. On-body measurements reveal minimal frequency detuning when the antenna is worn by a test subject as well as a negligible impedance bandwidth reduction to 4.5 %. The low calculated Specific Absorption Rate of 0.51 W/kg averaged over 1 g of tissue demonstrates high antenna body isolation. Therefore, this design is an attractive option as antenna in smart textile systems.
Keywords :
UHF antennas; slot antennas; substrate integrated waveguides; wearable antennas; frequency 2.4 GHz; half mode substrate integrated waveguide techniques; half-mode substrate integrated waveguide topology; industrial medical and scientific band; minimal frequency detuning; novel compact textile cavity backed slot antenna; robust wearable on-body antenna; smart textile systems; specific absorption rate; Antenna measurements; Cavity resonators; Robustness; Slot antennas; Substrates; Textiles;
Conference_Titel :
Antennas and Propagation Society International Symposium (APSURSI), 2014 IEEE
Conference_Location :
Memphis, TN
Print_ISBN :
978-1-4799-3538-3
DOI :
10.1109/APS.2014.6904488