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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Accurate Measurement in Doppler Radar Vital Sign Detection Based on Parameterized Demodulation
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Accurate Measurement in Doppler Radar Vital Sign Detection Based on Parameterized Demodulation

机译:基于参数解调的多普勒雷达生命体征检测的准确测量

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摘要

Utilizing Doppler radar to conduct noncontact vital sign detection has attracted growing interest in recent years. Aiming to extract the vital sign information from the baseband signal effectively and accurately, a novel signal processing method based on parameterized demodulation (PD) is proposed. To effectively characterize the baseband signal whose phase consists of two oscillating components (i.e., the respiration and heartbeat components), the proposed algorithm defines a demodulation operator with sine kernel functions and formulates the phase demodulation as a parameter optimization problem. To increase the computational efficiency of the algorithm, the parameters corresponding to the respiration and heartbeat components are estimated sequentially. Specifically, the respiration component is first estimated and removed from the phase of the baseband signal, and then, the heartbeat component is extracted from the residual signal. Compared with the existing methods, the proposed algorithm is free of the resolution problem in fast Fourier transform-based methods with a limited data length and can obtain accurate rate tracking in a noisy environment. Both simulated and experimental results are provided to demonstrate the advantages and effectiveness of the proposed method for accurate noncontact vital sign detection.
机译:近年来,利用多普勒雷达进行非接触生命体征检测已引起越来越多的兴趣。为了有效,准确地从基带信号中提取生命体征信息,提出了一种基于参数化解调(PD)的信号处理方法。为了有效地表征相位由两个振荡分量(即呼吸和心跳分量)组成的基带信号,该算法定义了一个具有正弦核函数的解调算子,并将相位解调公式化为参数优化问题。为了提高算法的计算效率,依次估计与呼吸和心跳分量相对应的参数。具体地,首先估计呼吸分量并将其从基带信号的相位中去除,然后从残留信号中提取心跳分量。与现有方法相比,该算法在数据长度有限的情况下,不存在基于快速傅里叶变换的分辨率问题,在嘈杂的环境中可以获得准确的速率跟踪。提供了仿真结果和实验结果,以证明所提出的方法用于精确的非接触式生命体征检测的优势和有效性。

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