A pulse oximetry system with motion artifact reduction based on Fourier analysis

Yi-Hsiang Yang, K. Tang
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引用次数: 6

Abstract

In this paper, a system that records photoplethysmography and performs motion artifact reduction is proposed. In order to calculate SpO2, accurate amplitude of PPG is essential. As a matter of fact that the PPG signal is acquired through an optical sensor, it is prone to be affected by motion artifact. As a result, noise cancellation is a major issue in the calculation of SpO2. In the calculation of SpO2, the exact waveform is not the key point, whereas the amplitude plays the important role. Therefore, Fourier analysis is adopted to perform the noise cancellation. In the proposed system, data acquisition and analog filtering are done on a printed circuit board which is controlled by an FPGA. The acquired data are sent to a computer, where Fourier analysis is done to cancel motion artifact. Experiments have been done to demonstrate the performance of the proposed algorithm. The proposed system performs PPG signal acquisition, motion artifact reduction and SpO2 calculation.
基于傅立叶分析的运动伪影抑制脉搏血氧测量系统
本文提出了一种记录光体积脉搏波并进行运动伪影还原的系统。为了计算SpO2,精确的PPG振幅是必不可少的。事实上,PPG信号是通过光学传感器获取的,它很容易受到运动伪影的影响。因此,噪声消除是SpO2计算中的一个主要问题。在SpO2的计算中,精确的波形不是关键,振幅起着重要的作用。因此,采用傅里叶分析进行噪声消除。在该系统中,数据采集和模拟滤波是在由FPGA控制的印刷电路板上完成的。采集到的数据被发送到计算机,在那里进行傅里叶分析以消除运动伪影。实验证明了该算法的有效性。该系统实现了PPG信号采集、运动伪影减少和SpO2计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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