A matrix-based algorithm for constrained least-squares design of two-dimensional FIR filters with low group delay

Xiaoying Hong, Ruijie Zhao, Xiaoping Lai
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Abstract

Conventional algorithms for constrained least-squares (CLS) designs of two-dimensional (2-D) FIR filters vectorize the filters' impulse response coefficients. Recently, an efficient algorithm exploiting the matrix nature of the impulse response is proposed for the CLS design of quadrantally symmetric 2-D linear-phase FIR filters. This paper extends the matrix-based algorithm to the CLS design of 2-D nonlinear-phase FIR filters with low group delay. A design example is presented to illustrate the effectiveness and efficiency of the proposed algorithm.
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基于矩阵的低群延迟二维FIR滤波器约束最小二乘设计算法
传统的二维(2-D) FIR滤波器约束最小二乘(CLS)设计算法将滤波器的脉冲响应系数矢量化。最近,提出了一种利用脉冲响应矩阵性质的有效算法,用于二次对称二维线性相位FIR滤波器的CLS设计。本文将基于矩阵的算法推广到二维低群延迟非线性相位FIR滤波器的CLS设计中。最后通过一个设计实例说明了该算法的有效性和高效性。
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