Design of Matrix Filter Using Discrete Cosine Transform and Path Graph

C. Tseng, Su-Ling Lee
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Abstract

In this paper, the design of matrix filter using discrete cosine transform (DCT) and path graph is presented. First, the DCT is used to design matrix filter without considering the prior information of transform basis of DCT. Then, the graph spectral theory is employed to show that the DCT is the graph Fourier transform (GFT) of path graph such that graph filter method can be used to design and implement the matrix filter. Next, the weighted least squares (WLS) method is applied to design the graph filters which can be used to implement the matrix filter with low computational complexity because graph shift matrix is very sparse. Finally, the design examples of matrix Butterworth filter and matrix Riesz fractional order differentiator (FOD) are illustrated to demonstrate the effectiveness of the proposed matrix filter design method.
基于离散余弦变换和路径图的矩阵滤波器设计
本文提出了一种基于离散余弦变换和路径图的矩阵滤波器设计方法。首先,在不考虑DCT变换基先验信息的情况下,利用DCT设计矩阵滤波器;然后,利用图谱理论证明了DCT是路径图的图傅里叶变换(GFT),从而可以用图滤波方法设计和实现矩阵滤波器。其次,利用加权最小二乘(WLS)方法设计图滤波器,利用图移位矩阵的稀疏性实现低计算复杂度的矩阵滤波器。最后,通过矩阵Butterworth滤波器和矩阵Riesz分数阶微分器(FOD)的设计实例验证了所提出的矩阵滤波器设计方法的有效性。
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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