A system identification approach for design of IIR digital filters

M. Nakamoto, N. Shimizu, Toru Yamamoto
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引用次数: 2

Abstract

In general, the problem of infinite impulse response (IIR) filters design has a non-linearity due to the presence of denominator polynomial; hence, an iterative optimization is usually needed to obtain the solution. In this paper, we independently generate several time series signals in stop-band, transition zone, and pass-band based on an algorithm which generates a Gaussian stochastic process with a prescribed frequency characteristic. After that, we synthesis the input signal and its ideal output signal, and can obtain the IIR filter by using system identification method from these signals. The advantage of the proposed method is that we can compute the IIR stable digital filters as a closed-form solution. We can approximate the given frequency response and the constant group delay without using iterative optimization. Finally, a design example is presented to illustrate the effectiveness of the proposed method by designing a high-pass IIR digital filter. As a result, we confirm the filter designed has a good magnitude response and an almost flat group delay.
一种设计IIR数字滤波器的系统辨识方法
一般来说,无限脉冲响应(IIR)滤波器设计问题由于存在分母多项式而具有非线性;因此,通常需要迭代优化来获得解。在本文中,我们基于一种生成具有规定频率特性的高斯随机过程的算法,在阻带、过渡带和通带独立生成多个时间序列信号。然后对输入信号和理想输出信号进行综合,利用系统辨识法从这些信号中得到IIR滤波器。该方法的优点是我们可以将IIR稳定数字滤波器作为一个封闭的解来计算。我们可以在不使用迭代优化的情况下近似给定的频率响应和恒定的群延迟。最后,通过设计一个高通IIR数字滤波器,验证了该方法的有效性。结果表明,所设计的滤波器具有良好的幅度响应和几乎平坦的群延迟。
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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