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SVD-based design of fractional-delay 2-D digital filters exploiting specification symmetries

机译:利用规范对称性的基于SVD的分数延迟二维数字滤波器设计

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摘要

An attractive approach to the design of two-dimensional (2-D) digital filters is to decompose the original difficult 2-D design problem into a set of relatively easier subproblems that involve one-dimensional (1-D) filter designs. Lu et al. have shown that the design technique using the singular value decomposition (SVD) can be applied to the design of 2-D filters with arbitrary magnitude and phase responses. The most important point of this paper is to show that some magnitude and phase symmetries can be efficiently exploited in the SVD-based designs, which can reduce the computational complexity and save the computer storage required for 1-D filter (subfilter) coefficients by 50%. Moreover, an objective criterion is proposed for selecting the appropriate subfilter orders in order to reduce the hardware implementation cost. A fractional-delay 2-D filter is designed to illustrate the effectiveness of the SVD-based approach by exploiting the specification symmetries and new order-selecting criterion.
机译:二维(2-D)数字滤波器设计的一种有吸引力的方法是将原始的困难2-D设计问题分解为涉及一维(1-D)滤波器设计的一组相对容易的子问题。 Lu等。已经表明,使用奇异值分解(SVD)的设计技术可以应用于具有任意幅度和相位响应的二维滤波器的设计。本文最重要的一点是表明,在基于SVD的设计中可以有效利用某些幅度和相位对称性,从而可以降低计算复杂度并将一维滤波器(子滤波器)系数所需的计算机存储空间减少50%。 %。此外,提出了一种客观标准,用于选择合适的子滤波器阶数,以降低硬件实现成本。设计分数延迟二维滤波器,通过利用规范对称性和新的顺序选择标准来说明基于SVD的方法的有效性。

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