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Arctangent Demodulation With DC Offset Compensation in Quadrature Doppler Radar Receiver Systems

机译:正交多普勒雷达接收器系统中具有直流偏移补偿的反正切解调

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Direct-conversion microwave Doppler radar can be used to detect cardiopulmonary activity at a distance. One challenge for such detection in single channel receivers is demodulation sensitivity to target position, which can be overcome by using a quadrature receiver. This paper presents a mathematical analysis and experimental results demonstrating the effectiveness of arctangent demodulation in quadrature receivers. A particular challenge in this technique is the presence of dc offset resulting from receiver imperfections and clutter reflections, in addition to dc information related to target position and associated phase. These dc components can be large compared to the ac motion-related signal, and thus, cannot simply be included in digitization without adversely affecting resolution. Presented here is a method for calibrating the dc offset while preserving the dc information and capturing the motion-related signal with maximum resolution. Experimental results demonstrate that arctangent demodulation with dc offset compensation results in a significant improvement in heart rate measurement accuracy over quadrature channel selection, with a standard deviation of less than 1 beat/min
机译:直接转换微波多普勒雷达可用于远距离检测心肺活动。在单通道接收机中进行这种检测的一个挑战是对目标位置的解调灵敏度,这可以通过使用正交接收机来克服。本文提供了数学分析和实验结果,证明了正交接收器中反正切解调的有效性。该技术的一个特殊挑战是,除了与目标位置和相关相位有关的直流信息外,还存在由于接收器缺陷和杂波反射导致的直流偏移。与与ac运动相关的信号相比,这些dc分量可能很大,因此,不能简单地将其包含在数字化中而不会对分辨率产生不利影响。此处介绍的是一种在保留直流信息并以最大分辨率捕获与运动有关的信号的同时校准直流偏移的方法。实验结果表明,与直流通道选择相比,具有直流偏移补偿的反正切解调可显着提高心率测量精度,标准偏差小于1次/分钟

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