论文标题

基于Butterworth,Chebyshev和椭圆功能的通用图形滤波器设计

Universal Graph Filter Design based on Butterworth, Chebyshev and Elliptic Functions

论文作者

Ge, Zirui, Guo, Haiyan, Wang, Tingting, Yang, Zhen

论文摘要

图形过滤器是处理图信号频谱的关键工具。在本文中,我们建议通过使用三种功能分别使用Butterworth,Chebyshev和椭圆函数来设计具有低计算复杂性的通用IIR图滤波器。具体而言,受到经典模拟滤波器设计方法的启发,我们首先得出图形频率响应的零和极线。使用这些零和极点,我们构建了共轭图滤波器,以设计Butterworth高通滤波器,Chebyshev高通图滤波器和椭圆形高通图滤波器。在此基础上,我们进一步建议通过将所需图形滤波器的参数映射到等效的高通图滤波器的参数来构造所需的低通,频段和频段停止的所需图形过滤器。此外,我们建议在最大的通过带衰减和最小停止带衰减时设置图形滤波器顺序。我们的发音结果表明,所提出的图形滤波器设计方法比自回归的移动平均线(ARMA)图形滤波器设计方法,线性最小二乘拟合(LLS)基于基于的图形滤波器设计方法和Chebyshev fir fir poly polynomial poloynomial图形滤镜设计方法更准确地意识到所需的频率响应。

Graph filters are crucial tools in processing the spectrum of graph signals. In this paper, we propose to design universal IIR graph filters with low computational complexity by using three kinds of functions, which are Butterworth, Chebyshev, and Elliptic functions, respectively. Specifically, inspired by the classical analog filter design method, we first derive the zeros and poles of graph frequency responses. With these zeros and poles, we construct the conjugate graph filters to design the Butterworth high pass graph filter, Chebyshev high pass graph filter, and Elliptic high pass graph filter, respectively. On this basis, we further propose to construct a desired graph filter of low pass, band pass, and band stop by mapping the parameters of the desired graph filter to those of the equivalent high pass graph filter. Furthermore, we propose to set the graph filter order given the maximum passband attenuation and the minimum stopband attenuation. Our numerical results show that the proposed graph filter design methods realize the desired frequency response more accurately than the autoregressive moving average (ARMA) graph filter design method, the linear least-squares fitting (LLS) based graph filter design method, and the Chebyshev FIR polynomial graph filter design method.

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