Scaling-Free Transformations for Stability-Guaranteed Variable Notch-Frequency Filters

T. Deng
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Abstract

Digital notch filters can be employed in removing a single or multiple unwanted frequency components in digital signals. For example, the signal components to be removed include the interference signals from power lines. Such unwanted frequencies are called notch frequencies, and notch filters play the central role in removing the unwanted signal components. Ideally, the magnitude response of a notch filter at notch-frequency (NF) should be zero. To implement a notch filter with a recursive structure, it is mandatory to guarantee its stability. Otherwise, the notch filter becomes useless. A useful technique is presented in this paper for guaranteeing the stability of a recursive variable NF filter. By employing this stability-guarantee technique, a notch filter can be designed with a recursive structure, and its stability is absolutely ensured. This stability-guarantee technique is derived from the well-known stability-triangle condition, and it utilizes parameter transformations. After showing the stability-guarantee technique, we apply it to the design of a digital notch filter whose NF is variable. This illustrative example not only verifies the guaranteed stability, but also demonstrates the high design accuracy.
稳定保证变陷波滤波器的无标度变换
数字陷波滤波器可用于去除数字信号中单个或多个不需要的频率分量。例如,要去除的信号分量包括来自电力线的干扰信号。这种不需要的频率被称为陷波频率,陷波滤波器在去除不需要的信号成分方面起着核心作用。理想情况下,陷波滤波器在陷波频率(NF)处的幅值响应应为零。为了实现递归结构的陷波滤波器,必须保证其稳定性。否则,陷波滤波器将变得无用。本文提出了一种保证递归变量NF滤波器稳定性的有效方法。利用这种稳定性保证技术,可以设计出递归结构的陷波滤波器,绝对保证了陷波滤波器的稳定性。这种稳定性保证技术是由众所周知的稳定三角条件衍生而来的,并利用了参数变换。在介绍了稳定保证技术的基础上,将其应用于可变滤除系数的数字陷波滤波器的设计中。通过算例验证了该方法的稳定性,同时也证明了该方法具有较高的设计精度。
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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