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Removing the power line interference from ECG signal using Kalman least mean square filter

机译:使用卡尔曼最小均方滤波器消除ECG信号中的电源线干扰

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Electrocardiogram (ECG) is the graph obtained from the electrical activity of the heart and is used to examine function of heart and for diagnosis cardiac problems. The voltage level of ECG signal ranges from as low as 0.5 to 5mV and frequency components fall into the range of 0.05 to 100Hz. Various noises like Power Line Interference (PLI), baseline wander and noise due to muscles contraction and relaxation get added into the recorded ECG signal. Out of them, PLI is considered to be the major source of noise. PLI may be stationary or non stationary. Non adaptive filters are employed to remove stationary power line interference and adaptive cancellers are used to handle non-stationary power line interference. In this paper adaptive LMS algorithm along with Kalman filtering became KLMS has been investigated to eliminate PLI from contaminated ECG signal. The results of KLMS filter has been compared with the LMS filter before and after filtering the ECG signal. Results shows MSE equal to 0.6314 and 0.0409 before filtering for LMS and KLMS filter respectively. MSE equal to 0.1983 and 0.0245 after filtering for LMS and KLMS filter respectively. Also, PSNR before filtering is 50.1279 and 62.0168 for LMS and KLMS filter respectively. PSNR after filtering is 55.1586 and 64.2352 for LMS and KLMS respectively. The filters algorithm has designed using MATLAB software and tested on ECG signal contaminated with power line frequencies.
机译:心电图(ECG)是从心脏的电活动获得的图表,用于检查心脏的功能并诊断心脏问题。 ECG信号的电压范围低至0.5至5mV,频率分量落在0.05至100Hz的范围内。诸如电力线干扰(PLI),基线漂移和由于肌肉收缩和松弛引起的噪声之类的各种噪声被添加到记录的ECG信号中。其中,PLI被认为是主要的噪声源。 PLI可以是固定的,也可以是非固定的。非自适应滤波器用于消除固定的电力线干扰,自适应消除器用于处理非固定的电力线干扰。在本文中,自适应LMS算法与卡尔曼滤波一起成为研究KLMS的方法,以消除污染的ECG信号中的PLI。在对ECG信号进行滤波之前和之后,已将KLMS滤波器的结果与LMS滤波器进行了比较。结果显示,分别对LMS和KLMS过滤器进行过滤之前,MSE分别等于0.6314和0.0409。经过LMS和KLMS过滤后,MSE分别等于0.1983和0.0245。同样,对于LMS和KLMS滤波器,滤波前的PSNR分别为50.1279和62.0168。对于LMS和KLMS,滤波后的PSNR分别为55.1586和64.2352。滤波器算法已使用MATLAB软件进行设计,并在受电力线频率污染的ECG信号上进行了测试。

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