Title :
Dual-Band Substrate Integrated Waveguide Textile Antenna With Integrated Solar Harvester
Author :
Lemey, Sam ; Declercq, Frederick ; Rogier, Hendrik
Author_Institution :
Dept. of Inf. Technol., Ghent Univ., Ghent, Belgium
Abstract :
A dual-band wearable textile antenna based on substrate integrated waveguide technology is presented for operation in the [2.4-2.4835]-GHz Industrial, Scientific and Medical band and the [2.5-2.69]-GHz 4G LTE band 7. The antenna features an integrated flexible solar harvesting system, consisting of a flexible solar cell, a power management system, and energy storage. All these components are judiciously positioned on the antenna platform in order not to affect its radiation performance. The measured reflection coefficients and radiation characteristics after bending and deploying the antenna on a human body prove that the antenna is well suited for on-body use. A measured on-body antenna gain and radiation efficiency of 5.0 dBi and 89% are realized. Measurements in a real-life situation have demonstrated the ability to scavenge a maximum of 53 mW by means of a single integrated flexible solar cell.
Keywords :
Long Term Evolution; antenna radiation patterns; energy harvesting; energy management systems; energy storage; multifrequency antennas; slot antennas; solar cells; substrate integrated waveguides; textiles; wearable antennas; 4G LTE band 7; antenna platform; dual-band wearable textile antenna; efficiency 89 percent; energy storage; flexible solar cell; frequency 2.4 GHz to 2.4835 GHz; frequency 2.5 GHz to 2.69 GHz; industrial scientific and medical band; integrated flexible solar harvesting system; power management system; radiation characteristics; reflection coefficients; substrate integrated waveguide technology; Antenna measurements; Antenna radiation patterns; Cavity resonators; Photovoltaic cells; Substrates; Energy harvesting; energy management; energy storage; substrate integrated waveguide (SIW); textile antenna; wearable antenna;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2014.2303573