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Noncontact Measurement of Human Vital Signs during Sleep Using Low-power Millimeter-wave Ultrawideband MIMO Array Radar

机译:利用低功耗毫米波超空带MIMO阵列雷达睡眠期间人生命体征的非接触测量

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Radar-based noncontact measurements of human bodies have increasingly been attracting attention in healthcare applications because such measurements allow for the unobtrusive sensing of vital signs without sensors being attached to the body. In particular, measurement of the heart rate is considered to be important because it provides various types of information on the physical and mental health of the person under test. In such applications, it is preferable to use low-gain omni-directional antennas so that the person under test does not have to be located at a specific spot. In addition, the use of high-power microwaves is not allowed in many countries owing to public health regulations. Because of such factors, the signal-to-noise ratio is relatively low in these applications although the target person might be within a few meters of the antennas. To overcome this difficulty, we adopt the maximum ratio combining technique with a multiple-input multiple-output antenna array for improving the signal-to-noise ratio and accuracy in measuring the instantaneous heart rate.
机译:基于雷达的非接触测量人体越来越受到医疗保健应用中的注意,因为这种测量允许对生命体征的不引人注目的感测,而没有传感器被连接到身体。特别是,心率的测量被认为是重要的,因为它提供了关于被测人员身心健康的各种类型的信息。在这种应用中,优选使用低增益全向天线,使得被测人员不必位于特定点。此外,由于公共卫生法规,许多国家不允许使用大功率微波。由于这些因素,信噪比在这些应用中相对较低,尽管目标人员可能在几米的天线内。为了克服这种困难,我们采用了多输入多输出天线阵列的最大比率组合技术,用于提高测量瞬时心率的信噪比和精度。

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