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一种用于远程毫米波 I-Q 传感器的实时心率分析。

A real-time heart rate analysis for a remote millimeter wave I-Q sensor.

机构信息

System Technologies and Diagnostics Department, Nuclear Engineering Division, Argonne National Laboratory, Argonne, IL 60439, USA.

出版信息

IEEE Trans Biomed Eng. 2011 Jun;58(6):1839-45. doi: 10.1109/TBME.2011.2122335. Epub 2011 Mar 3.

Abstract

This paper analyzes heart rate (HR) information from physiological tracings collected with a remote millimeter wave (mmW) I-Q sensor for biometric monitoring applications. A parameter optimization method based on the nonlinear Levenberg-Marquardt algorithm is used. The mmW sensor works at 94 GHz and can detect the vital signs of a human subject from a few to tens of meters away. The reflected mmW signal is typically affected by respiration, body movement, background noise, and electronic system noise. Processing of the mmW radar signal is, thus, necessary to obtain the true HR. The down-converted received signal in this case consists of both the real part (I-branch) and the imaginary part (Q-branch), which can be considered as the cosine and sine of the received phase of the HR signal. Instead of fitting the converted phase angle signal, the method directly fits the real and imaginary parts of the HR signal, which circumvents the need for phase unwrapping. This is particularly useful when the SNR is low. Also, the method identifies both beat-to-beat HR and individual heartbeat magnitude, which is valuable for some medical diagnosis applications. The mean HR here is compared to that obtained using the discrete Fourier transform.

摘要

本文分析了远程毫米波(mmW)I-Q 传感器采集的生理轨迹中的心率(HR)信息,用于生物特征监测应用。使用基于非线性 Levenberg-Marquardt 算法的参数优化方法。mmW 传感器工作在 94GHz 频率下,能够从数米到数十米的距离检测人体的生命体征。反射的 mmW 信号通常会受到呼吸、身体运动、背景噪声和电子系统噪声的影响。因此,需要对 mmW 雷达信号进行处理以获取真实的 HR。在这种情况下,下变频接收信号由实部(I 支路)和虚部(Q 支路)组成,可视为接收 HR 信号相位的余弦和正弦。该方法直接拟合 HR 信号的实部和虚部,而不是拟合转换后的相位角信号,从而避免了相位解缠的需要。在 SNR 较低时,这尤其有用。此外,该方法还可以识别心率的逐拍变化和单个心跳幅度,这对某些医疗诊断应用很有价值。这里比较了平均心率与使用离散傅里叶变换获得的心率。

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