Vital sign detection using 60-GHz Doppler radar system

T. Kao, Jenshan Lin
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引用次数: 24

Abstract

Non-contact vital sign detection using 60-GHz radar offers various advantages such as higher sensitivity and smaller antennas compared to lower-frequency systems, however, the respiration amplitude comparable to wavelength causes strong non-linear phase modulation, and relatively small heartbeat amplitude results in detection difficulty. In this paper, theoretical analysis and simulation of 60-GHz detection are provided to address these issues. Both shallow and deep breathings are tested in the experiments, and the detection technique monitoring both the fundamental and second harmonic of respiration is proposed. The phenomena explained in the work can be applied to many millimeter-wave Doppler radar applications where target displacement is comparable to or larger than the wavelength to ensure robust detection.
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使用60 ghz多普勒雷达系统进行生命体征检测
与低频系统相比,使用60 ghz雷达进行非接触式生命体征检测具有灵敏度更高、天线更小等优点,但与波长相当的呼吸幅度会导致强烈的非线性相位调制,相对较小的心跳幅度会导致检测困难。针对这些问题,本文进行了60ghz检测的理论分析和仿真。实验中对浅呼吸和深呼吸进行了测试,提出了同时监测呼吸基次谐波和次谐波的检测技术。工作中解释的现象可以应用于许多毫米波多普勒雷达应用,其中目标位移与波长相当或大于波长,以确保鲁棒性检测。
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