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A Review of Transient Suppression Methods of IIR Notch Filters Used for Power-line Interference Rejection in ECG Measurement

机译:ECG测量中用于电源线干扰抑制的IIR Notch滤波器瞬态抑制方法的综述

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Bioelectric signals are often corrupted by noise. The most common form of noise is power-line interference and its harmonics. A convenient way for eliminating these unwanted components is to use a single or multiple notch filters. One of the problems about this approach is the effect of transient response of the filter at the beginning of its output in short time measurements. In this work, three initialization methods, which can be used to reduce/overcome this problem are reviewed and their performance and computational complexity are evaluated using ECG as an example signal. These methods are projection initialization, pole radius-varying filtering and vector projection. Additionally, some implementation variations and memory usage considerations are discussed. Our study shows that, pole radius-varying method is computationally cheap but introduces longer transient than the others. On the other hand, vector projection provides a more accurate reconstruction of the signal in the transient part of the output but with a more expensive computation. There are also two drawbacks about vector projection. One is its computational complexity dependency to the sampling frequency of the signal and the other is the fact that it cannot provide the results in real-time.
机译:生物电信号通常被噪声损坏。最常见的噪音形式是电力线干扰及其谐波。消除这些不需要的组件的便捷方式是使用单个或多个陷波滤波器。关于这种方法的问题之一是在短时间测量中的输出开始时滤波器的瞬态响应的影响。在这项工作中,综述了三种初始化方法,可用于减少/克服该问题,并使用ECG作为示例信号进行评估其性能和计算复杂性。这些方法是投影初始化,极半径变化滤波和矢量投影。另外,讨论了一些实现变化和存储器使用考虑因素。我们的研究表明,杆半径变化方法是计算值便宜,但介绍了比其他方式更长的瞬态。另一方面,向量投影提供输出瞬态部分中的信号的更准确地重建,但具有更昂贵的计算。矢量投影还有两个缺点。一个是其计算复杂性依赖于信号的采样频率,另一个是它不能实时提供结果。

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