Title :
Embroidered Multiband Body-Worn Antenna for GSM/PCS/WLAN Communications
Author :
Zheyu Wang ; Lee, Lanlin Z. ; Psychoudakis, Dimitris ; Volakis, J.L.
Author_Institution :
Dept. of Electr. & Comput. Eng., Ohio State Univ., Columbus, OH, USA
Abstract :
A novel textile-based body-worn antenna covering the Global System for Mobile Communications/personal communications services/wireless local-area network frequency bands is presented. This antenna was made of densely embroidered metal-coated polymer fibers (e-fibers). These e-fibers are 15 μm thick and consist of high strength, flexible polymer cores with conductive silver coatings, providing mechanical flexibility and low loss at radio frequencies. When measured in free space, the textile antenna showed comparable performance to its copper counterpart, having ~ 2 dBi realized gain at all three bands. This textile antenna was simulated and measured on a full body phantom to determine the body´s influence on antenna performance, including frequency detuning and pattern shadowing. The measured radiation pattern of the body-worn antenna matched well with simulation at various on-body locations for the three bands. Field measurements were also carried out by mounting the antenna onto the shoulder of a jacket, and using it to replace the one of a cell phone. We found that the communication quality using the body-worn textile antenna was equivalent to the best location of the original cell-phone antenna. Therefore, this textile-based antenna provided for a more reliable body-worn communication when mounted on the body´s shoulder.
Keywords :
cellular radio; coatings; mobile antennas; mobile handsets; personal communication networks; polymers; textile fibres; wearable antennas; wireless LAN; GSM-PCS-WLAN communications; Global System for Mobile Communications; antenna performance; body-worn antenna; body-worn communication; body-worn textile antenna; cell-phone antenna; communication quality; conductive silver coatings; e-fibers; embroidered metal-coated polymer fibers; embroidered multiband body-worn antenna; field measurements; frequency detuning; full body phantom; high strength flexible polymer cores; mechanical flexibility; on-body locations; pattern shadowing; personal communications services; radio frequencies; textile-based antenna; textile-based body-worn antenna; wireless local-area network; Antenna measurements; Antenna radiation patterns; GSM; Mobile communication; Radio frequency; Textile antennas; Wireless LAN; Body-worn communication; conductive textiles; multiband antenna; wearable antenna;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2014.2314311