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A matrix-based constrained minimax design of 2-D FIR filters with reduced group delay error

机译:具有减少组延迟误差的二维FIR滤波器的基于矩阵的限制性设计

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Conventional algorithms for phase-error constrained minimax (PCMM) designs of two-dimensional (2-D) FIR filters vectorize the filter's impulse response coefficient. Recently, an efficient algorithm exploiting the matrix nature of the impulse response is proposed for the constrained least-squares (CLS) design of 2-D nonlinear-phase FIR filters. This paper devotes to transform the PCMM design into the same form as the CLS design. A 2-D sigmoid function is introduced to constrain the phase error, resulting in 2-D FIR filters with much smaller maximum group delay error than that obtained under corresponding constant phase-error constraints. Design example and comparisons demonstrate the effectiveness and high efficiency of the proposed method.
机译:用于相位误差约束的常规算法(二维)FIR滤波器的误差限制MIMIMAX(PCMM)设计向滤波器的脉冲响应系数的矢量化。最近,提出了一种利用脉冲响应的矩阵性质的有效算法,用于2-D非线性相位FIR滤波器的约束最小二乘(CLS)设计。本文致力于将PCMM设计转换为与CLS设计相同的形式。引入了2-D Sigmoid函数来限制相位误差,从而产生比在相应的恒定相位误差约束下获得的更小的最大组延迟误差的2-D FIR滤波器。设计示例和比较展示了所提出的方法的有效性和高效率。

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