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Doppler Radar Vital Signs Detection Method Based on Higher Order Cyclostationary

机译:基于高阶循环平稳的多普勒雷达生命体征检测方法

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摘要

Due to the non-contact nature, using Doppler radar sensors to detect vital signs such as heart and respiration rates of a human subject is getting more and more attention. However, the related detection-method research meets lots of challenges due to electromagnetic interferences, clutter and random motion interferences. In this paper, a novel third-order cyclic cummulant (TOCC) detection method, which is insensitive to Gaussian interference and non-cyclic signals, is proposed to investigate the heart and respiration rate based on continuous wave Doppler radars. The k-th order cyclostationary properties of the radar signal with hidden periodicities and random motions are analyzed. The third-order cyclostationary detection theory of the heart and respiration rate is studied. Experimental results show that the third-order cyclostationary approach has better estimation accuracy for detecting the vital signs from the received radar signal under low SNR, strong clutter noise and random motion interferences.
机译:由于非接触性质,使用多普勒雷达传感器检测生命体征,例如人类受试者的心脏和呼吸频率,正受到越来越多的关注。然而,由于电磁干扰,杂波和随机运动干扰,相关的检测方法研究面临许多挑战。本文提出了一种对高斯干扰和非周期性信号不敏感的新型三阶循环累积量(TOCC)检测方法,以连续波多普勒雷达为基础研究心脏和呼吸频率。分析了具有隐藏周期和随机运动的雷达信号的k阶循环平稳特性。研究了心脏和呼吸频率的三阶循环平稳检测理论。实验结果表明,在低信噪比,强杂波噪声和随机运动干扰的情况下,三阶循环平稳方法具有更好的估计精度,可从接收到的雷达信号中检测生命体征。

著录项

  • 作者

    Yu Z; Zhao D; Zhang Z;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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