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Design of smallest size two-dimensional linear-phase FIR filters with magnitude error constraint

机译:具有幅度误差约束的最小尺寸二维线性相位FIR滤波器的设计

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摘要

This paper presents an online procedure that produces the smallest feasible size of two-dimensional FIR filters with prescribed magnitude error constraint. The procedure uses the mean square normalized error of constrained and unconstrained least-square filters to produce the initial and the subsequent sizes that converge to the smallest feasible one in a few iterations, where the constrained least-square filters are defined as the least-square filters satisfying the magnitude error constraint. The procedure finally returns a smallest size filter that satisfies the magnitude error constraint and has least total squared magnitude error. Design examples of diamond-shaped, rectangular, and elliptic filters are provided, and comparisons with an exhaustive search are given.
机译:本文提出了一种在线程序,该程序产生具有规定幅度误差约束的二维FIR滤波器的最小可行尺寸。该过程使用受约束和不受约束的最小二乘滤波器的均方根归一化误差来生成初始大小和后续大小,这些大小在几次迭代中收敛到最小可行值,其中将受约束的最小二乘滤波器定义为最小二乘满足幅度误差约束的滤波器。该过程最后返回一个最小的滤波器,该滤波器满足幅度误差约束并且具有最小的平方幅度误差。提供了菱形,矩形和椭圆形滤波器的设计示例,并给出了与详尽搜索的比较。

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