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Pulse signal de-noising based on wavelet transform and coherent averaging method

机译:基于小波变换和相干平均的脉冲信号降噪

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A new method of pulse signal de-noising based on wavelet transform and coherent averaging method is proposed. Pulse signal is complex and weak, generally submerged by the interference of baseline drift, motion artifact and high frequency noise. Consequently, it's difficult to measure the heart rate by processing only one single-channel pulse signal, especially when the noise frequency and the pulse signal frequency are in the same frequency range. In this paper, multichannel pulse signal processing based on wavelet transform and coherent averaging is proposed to solve the above problem. First, the detail coefficients and approximation coefficients of each channel signal are obtained by N layer wavelet decomposition, then reconstructing the signal with high layers coefficients as the high frequency noises always exist in low layers coefficients. In this way we can filter out the high frequency interference. Second, the centerline of the upper and lower envelope curve obtained by cubic spline estimation is subtracted from each reconstructed signal so as to eliminate the baseline drift completely. Finally, the heart rate is acquired with the coherent averaging method which results in the noise being offset each other and the pulse signal being enhanced in the frequency range of pulse wave. The pulse signal and three kinds of noise signals simulated with the superposition of different frequency sin signal were analyzed, besides the experiment of six channel pulse signals measured simultaneously based on PhotoPlethysmoGraphy (PPG) were conducted. The simulation and experiment results showed that this method was superior to the traditional single channel.
机译:提出了一种基于小波变换和相干平均的脉冲信号降噪新方法。脉冲信号复杂而微弱,通常会被基线漂移,运动伪影和高频噪声的干扰所淹没。因此,仅通过处理一个单通道脉搏信号就很难测量心率,尤其是当噪声频率和脉搏信号频率在相同的频率范围内时。为了解决上述问题,提出了一种基于小波变换和相干平均的多通道脉冲信号处理方法。首先,通过N层小波分解获得每个信道信号的细节系数和逼近系数,然后重建高频系数的信号,因为高频噪声始终存在于低频系数中。这样我们可以滤除高频干扰。其次,从每个重构信号中减去通过三次样条估计获得的上下包络曲线的中心线,以完全消除基线漂移。最后,通过相干平均法获取心率,这导致噪声彼此抵消,并且在脉搏波的频率范围内增强了脉搏信号。分析了脉冲信号和叠加有不同频率正弦信号的三种噪声信号,并进行了基于光电脉动图(PPG)同时测量的六通道脉冲信号的实验。仿真和实验结果表明,该方法优于传统的单通道。

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