Title :
A practical distance measurement improvement technique for a SFCW-based health monitoring radar
Author :
Mercuri, Marco ; Soh, Ping Jack ; Schreurs, Dominique ; Leroux, Paul
Author_Institution :
KU Leuven, Div. ESAT-TELEMIC, Leuven, Belgium
Abstract :
A technique in improving the distance measurement of an indoor Stepped-Frequency Continuous Wave (SFCW) radar is proposed and presented in this work. The main objective of this SFCW radar is to enable a non-invasive way in measuring the location of patients in a home environment without the need for a worn geo-locating tag. The theoretical and practical operation principle of the radar setup is first explained. Due to its operation in an indoor environment using a twoantenna setup, reflections, multipath, backscattering and crosscoupling are expected to affect its localization estimation. Thus a compensation technique based on Inverse Fast Fourier Transform (IFFT) is used to overcome this limitation. Practical measurements conducted in a 5 x 5 m2 room have successfully proven that the approach is able to compensate for practical multipath from walls, furniture and metallic shelves, yielding a distinct improved measurement technique in localizing a person in a real indoor environment.
Keywords :
Antenna measurements; Backscatter; Crosstalk; Radar; Radar antennas; Calibration; SFCW radar; distance measurement; patient monitoring; radar measurements; remote monitoring; tag-less localization;
Conference_Titel :
Microwave Measurement Conference (ARFTG), 2013 81st ARFTG
Conference_Location :
Seattle, WA
Print_ISBN :
978-1-4673-4981-9
DOI :
10.1109/ARFTG.2013.6579043