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Design of 2-D Doubly Complementary Filters Based on Nonsymmetric Half-Plane Allpass Filters

机译:基于非对称半平面全通滤波器的二维双互补滤波器设计

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A parallel-connected structure based on recursive nonsymmetric half-plane (NSHP) digital allpass filters is presented for designing two-dimensional (2-D) recursive doubly complementary (DC) filters. First, the theory of 2-D recursive digital allpass filters (DAFs) with NSHP support region for filter coefficients is developed. Then, the design problem is appropriately formulated to result in a simple optimization problem that minimizes the phase error in the least-squares (L2) sense with a closed-form solution. The novelty of the presented 2-D NSHP DAFs structure is that it possesses the advantage of better performance in designing DC filters over existing 2-D structures based on quarter plane (QP) DAFs and tremendously saves the computational complexity for designing sampling rate converters. Finally, a design example is provided for conducting illustration and comparison.
机译:提出了一种基于递归非对称半平面(NSHP)数字全通滤波器的并行连接结构,用于设计二维(2-D)递归双互补(DC)滤波器。首先,建立了具有NSHP支持区域的2-D递归数字全通滤波器(DAF)的滤波器系数理论。然后,对设计问题进行适当地公式化,以得出一个简单的优化问题,该问题可以通过闭合形式的解决方案将最小二乘(L 2 )意义上的相位误差降至最低。所提出的2-D NSHP DAF结构的新颖之处在于,与基于四分之一平面(QP)DAF的现有2-D结构相比,它在设计DC滤波器方面具有更好的性能,并且极大地节省了设计采样率转换器的计算复杂性。最后,提供了一个设计示例以进行说明和比较。

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