Title :
A smart wearable textile array system for biomedical telemetry applications
Author :
Soh, Ping Jack ; Van den Bergh, Bertold ; Hantao Xu ; Aliakbarian, Hadi ; Farsi, S. ; Samal, P. ; Vandenbosch, Guy A. E. ; Schreurs, D.M.M. ; Nauwelaers, Bart K. J. C.
Author_Institution :
Dept. of Electr. Eng., Katholieke Univ. Leuven, Leuven, Belgium
Abstract :
A smart wearable textile array system (SWTAS) with direction of arrival (DoA) estimation and beamforming is proposed and developed for biomedical telemetry applications. This conformal system enables effective and continuous patient monitoring when combined with one or more health sensors, as information about the subject´s health condition is received adaptively to guarantee link reliability. This operation is facilitated by a receiver front-end and a digital baseband beamforming network, which enables scalability and flexibility. The proposed SWTAS also features flexible antenna arrays made using textiles, which are arbitrarily located on a cylindrically shaped body phantom to ensure wide spatial DoA estimation capability. Besides being designed to suit on-body placement, the system performance is also characterized for on-body usage using a commercial body-emulating liquid, and placed at a realistic distance from the body, considering user clothing. Investigation indicated a good performance in the system´s ±80° forward plane with a DoA accuracy of 3° . Finally, a practical evaluation is presented using two transmitters placed at distinct locations and distances. The system successfully estimated both DoAs and received the telemetry signals using beamforming.
Keywords :
adaptive antenna arrays; array signal processing; biomedical telemetry; body sensor networks; conformal antennas; direction-of-arrival estimation; medical signal processing; patient monitoring; phantoms; receivers; textiles; transmitters; DoA beamforming; SWTAS; antenna arrays; biomedical telemetry applications; body-emulating liquid; conformal system; cylindrically shaped body phantom; digital baseband beamforming network; direction of arrival estimation; forward plane; health sensors; patient monitoring; receiver front-end; smart wearable textile array system; spatial DoA estimation; subject health condition; telemetry signals; transmitters; user clothing; Antenna measurements; Antenna radiation patterns; Arrays; Biomedical measurement; Direction-of-arrival estimation; Textiles; Antenna arrays; biomedical communication; biomedical monitoring; biomedical telemetry; conformal antennas; direction of arrival (DoA) estimation; smart antennas;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2013.2247051