控制数字巴特沃斯低通滤波器中截止频率变化引起的信号超调

H. S. Mogheer, I. Turulin
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引用次数: 1

摘要

数字滤波器在现代通信系统、信号处理和电子系统应用中得到了广泛的应用,在现实生活中信号会受到不同的干扰和噪声,使用滤波器可以消除这些噪声,保证信号清晰。有时数字滤波器可能会经历一个瞬态事件,其表现为信号的超调。例如,这种暂态可能是在滤波器工作期间通过改变截止频率的系数来改变截止频率的结果。在本文中,我们提出了一种利用n阶数字巴特沃斯LPF滤波器来消除这种超调的补偿技术。所提出的方法表明,我们可以通过对输入信号使用多个滤波处理来消除超调,以获得最小或无干扰的清晰真实信号。利用MATLAB程序研究了由滤波器重构引起的暂态过程,并对该暂态过程的补偿公式进行了校核。研究发现,这种补偿的应用减少了过渡过程的负面影响。这种减少取决于滤波器的阶数、调整系数(调整前后切割频率的比率)和调整力矩(对于周期信号)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reduction of Signal Overshooting Caused by Cutoff Frequency Changing in the Controlled Digital Butterworth Low Pass Filter
Digital filters have been widely utilized in modern telecommunications systems, signal processing, and electronic systems applications Signals suffer from different disruption and noises in real life, using filter can eliminate these noises and ensure a clear signal. Sometimes a digital filter might experience a transient event which represented by an overshoot of the signal. This transient may, for example, be the result of changing the cutoff frequency during filter operation by changing its coefficients. In this paper we proposed a compensation technique to remove this overshoot using nth order digital Butterworth LPF filter. The proposed method demonstrates that we can eliminate an overshoot by using multiple filtering processes to the input signal to obtain a clear real signal with minimum to no disruption. By using the MATLAB program, the transient process resulting from the restructuring of the filter was investigated and the formulas were checked compensation of this transient process. It was found that the application of such compensation reduced the negative effects of the transition process. This decrease depends on the order of the filter, the adjustment coefficient (the ratio of cut frequencies before and after adjustment) and the moment of adjustment (for the periodic signal).
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