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首页> 外文期刊>Biomedical Engineering >AN ADAPTIVE ALGORITHM FOR CANCELING POWER-LINE INTERFERENCE IN BIOPOTENTIAL MEASUREMENT
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AN ADAPTIVE ALGORITHM FOR CANCELING POWER-LINE INTERFERENCE IN BIOPOTENTIAL MEASUREMENT

机译:一种在双电位测量中消除电力线干扰的自适应算法

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摘要

Biopotential measurements are very important in clinical diagnosis. However, the signal amplitude of biopotenials is very small and there usually exists stray capacitance between the electrode leads (or the human body) and the power lines, biopotential measurements are easily contaminated by 60-Hz (or 50-Hz) power-line interference. Analog or digital notch filter has been the most popular technique used for power-line interference removal. However, the notch filter performs well only when the power frequency is kept exactly at the stop band of the notch filter. The adaptive filtering technique provides another promising approach, yet there needs another reference channel for interference recording. The price of signal measurement is thus increased. The authors present a simple LMS-style algorithm for canceling the power-line interference in biopotential measurement. No reference channel is needed for adaptive filtration in this proposed algorithm. Compared with another technique serving for the same purpose, the proposed algorithm can remove practical power-line interference more effectively, and can be a post-acquisition processing remedy for biosignals having corrupted by power-line interference.
机译:生物电势测量在临床诊断中非常重要。但是,生物电位的信号幅度很小,并且通常在电极引线(或人体)与电源线之间存在杂散电容,生物电位测量很容易受到60 Hz(或50 Hz)电源线干扰的污染。模拟或数字陷波滤波器已成为用于消除电力线干扰的最流行技术。但是,陷波滤波器只有在电源频率精确地保持在陷波滤波器的阻带时才能发挥良好的性能。自适应滤波技术提供了另一种有前途的方法,但仍需要另一个参考信道来进行干扰记录。信号测量的价格因此增加。作者提出了一种简单的LMS样式算法,用于消除生物电势测量中的电源线干扰。在该算法中,自适应滤波不需要参考信道。与用于相同目的的另一种技术相比,所提出的算法可以更有效地消除实际的电力线干扰,并且可以作为被电力线干扰破坏的生物信号的采集后处理方法。

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