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On the WLS design of 2-D quadrantally symmetric FIR filters with arbitrary weighting functions

机译:具有任意加权函数的二维象限对称FIR滤波器的WLS设计

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The weighted least square (WLS) design of two-dimensional (2-D) finite impulse response (FIR) filters with quadrantally symmetric magnitude responses is studied in this paper. Firstly, the necessary and sufficient condition for minimizing the WLS error is obtained in the form of matrix equation. Based on the matrix equation, a matrix iterative algorithm is derived for the WLS design of 2-D filters with arbitrary nonnegative weighting functions. Further, convergence of the algorithm is established. The new algorithm deals with the filter parameters in their natural 2-D form and the frequency grid having no samples in transition band can be used, leading to significant computational savings. Finally, several design examples and comparisons to existing algorithms are presented, which demonstrate the performance of our algorithm.
机译:本文研究了具有象限对称幅度响应的二维(2-D)有限脉冲响应(FIR)滤波器的加权最小二乘(WLS)设计。首先,以矩阵方程的形式获得了最小化WLS误差的充要条件。基于矩阵方程,推导了矩阵迭代算法,用于具有任意非负加权函数的二维滤波器的WLS设计。此外,建立了算法的收敛性。新算法以其自然的2D形式处理滤波器参数,并且可以使用在过渡带中没有样本的频率网格,从而显着节省了计算量。最后,给出了几个设计实例并与现有算法进行了比较,证明了我们算法的性能。

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