DocumentCode
999011
Title
Random Body Movement Cancellation in Doppler Radar Vital Sign Detection
Author
Li, Changzhi ; Lin, Jenshan
Author_Institution
Dept. of Electr. & Comput. Eng., Florida Univ., Gainesville, FL
Volume
56
Issue
12
fYear
2008
Firstpage
3143
Lastpage
3152
Abstract
The complex signal demodulation and the arctangent demodulation are studied for random body movement cancellation in quadrature Doppler radar noncontact vital sign detection. This technique can be used in sleep apnea monitor, lie detector, and baby monitor to eliminate the false alarm caused by random body movement. It is shown that if the dc offset of the baseband signal is accurately calibrated, both demodulation techniques can be used for random body movement cancellation. While the complex signal demodulation is less likely to be affected by a dc offset, the arctangent demodulation has the advantage of eliminating harmonic and intermodulation interference at high carrier frequencies. When the dc offset cannot be accurately calibrated, the complex signal demodulation is more favorable. Ray-tracing model is used to show the effects of constellation deformation and optimum/null detection ambiguity caused by the phase offset due to finite antenna directivity. Experiments have been performed using 4-7 GHz radar to verify the theory.
Keywords
Doppler radar; demodulation; intermodulation; radar signal processing; ray tracing; arctangent demodulation; baby monitor; complex signal demodulation; constellation deformation; finite antenna directivity; frequency 4 GHz to 7 GHz; harmonic interference; intermodulation interference; lie detector; quadrature Doppler radar noncontact vital sign detection; random body movement cancellation; ray-tracing model; sleep apnea monitor; Arctangent demodulation; complex signal demodulation; dc offset; noncontact; phase offset; random body movement cancellation; ray tracing; vital sign; wireless;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2008.2007139
Filename
4682605
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