Antenna evaluation of a non-contact vital signs sensor for continuous heart and respiration rate monitoring

Vighneshrudra Das, A. Boothby, Royce Hwang, T. Nguyen, Jerry Lopez
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引用次数: 22

Abstract

A portable non-contact vital signs sensor system that is capable of continuously monitoring heart and respiration rates is presented. The system operates based on the continuous wave (CW) Doppler radar principle and has been evaluated using several antenna types: patch, Yagi, log-periodic and helical. The sensor operates at 2.4 GHz, realized on a custom designed low-cost PCB that integrates both the RF receiver (Rx) and transmitter (Tx) sections with analog electronics. It uses a quadrature receiver architecture with separate Tx and Rx antennas. The sensor using our custom designed helical antenna performs best among all antennas tested here. The sensor system can achieve a ±1 beat/min error versus the reference heartbeat signal for 75% of the continuous monitoring time, while the accuracy for the respiration rate is within ±1 breath/min for 95% of the time.
用于连续心脏和呼吸速率监测的非接触式生命体征传感器的天线评估
提出了一种便携式非接触式生命体征传感器系统,该系统能够连续监测心脏和呼吸速率。该系统基于连续波(CW)多普勒雷达原理工作,并使用了几种天线类型进行了评估:贴片、八木、对数周期和螺旋。该传感器工作频率为2.4 GHz,在定制设计的低成本PCB上实现,该PCB将RF接收器(Rx)和发射器(Tx)部分与模拟电子器件集成在一起。它采用正交接收器架构,具有单独的Tx和Rx天线。使用我们定制设计的螺旋天线的传感器在这里测试的所有天线中表现最好。在75%的连续监测时间内,传感器系统相对于参考心跳信号的误差可以达到±1次/分钟,而在95%的时间内,呼吸频率的精度在±1次/分钟以内。
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