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A Simple Muscle-sphere Model to Approximate the Radar Cross Section of the Man Heart for Vital-Signs Detection Range Problem At Different RF Frequencies

机译:一个简单的肌肉球模型,以近似男子心脏的雷达横截面在不同的射频频率下的生命签署检测范围问题

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The Doppler radar for noncontact human vital-signs sensing have been reported extensively. In order to investigate the frequency effect on the detection performance of the vital signs, the muscle sphere is used to emulate the human heart organ to compute the scattering field of the incident wave radiated from the Doppler radar. The radar cross section (RCS) can then be calculated from the receiving power by radar equation. In the validated experimental measurement, a pig heart (to simulate the human heart) is used to measure the receiving power. RCS and compare with the computed value at 60 GHz. The receiving power of the Doppler radar can then be calculated from the radar equation at different frequencies. From the theoretical upper bound value of the antenna gain (under the fixed antenna size), by observing the simulated receiving-power comparison, it is found that the Doppler radar can receive more reflected power (from the spherical muscle sphere) for the higher carrier frequency (up to 60 GHz) which may have a better vital-signs sensing performance.
机译:用于非接触的人类生命符号感测的多普勒雷达已被广泛地报告。为了研究对生命体征的检测性能的频率影响,肌球球体用于模拟人心脏器官,计算从多普勒雷达辐射的入射波的散射场。然后可以通过雷达方程从接收功率计算雷达横截面(RCS)。在验证的实验测量中,使用猪心(模拟人心)来测量接收功率。 RCS并与60 GHz的计算值进行比较。然后可以根据不同频率的雷达方程计算多普勒雷达的接收功率。通过观察模拟接收功率比较的天线增益(在固定天线尺寸下)的理论上限值,发现多普勒雷达可以接收更高载体的更加反射的功率(来自球形肌肉球)频率(最多60 GHz),可能具有更好的重要迹象传感性能。

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