An improved iterative design for powers-of-two coefficient FIR filters

A. Mahmood
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引用次数: 2

Abstract

An iterative design technique for sum of powers-of-two (SOPOT) coefficient filters which uses two complementary filters in cascade is developed. These filters are designed to equalize each other's errors in the frequency domain, and thus when cascaded yield near-optimum frequency response. The technique is universal in the sense that it can be used to design filters in the minimax or the least-square-error sense. The initial SOPOT coefficients for the complementary filters are obtained by simple rounding to SOPOT values from an optimum real coefficient design. A localized search scheme is used to adjust the response of each of the filters such that the overall error from the ideal design is minimized. This process is repeated until convergence is reached. The cascaded complement design not only provides error equalization, but it also brings the SOPOT coefficients closer to optimum real values due to the convolution taking place between coefficients in the cascaded model.<>
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二阶幂系数FIR滤波器的改进迭代设计
提出了一种利用两个互补滤波器级联的2次幂和系数滤波器的迭代设计方法。这些滤波器被设计成在频域内平衡彼此的误差,因此当级联时产生接近最佳的频率响应。该技术在某种意义上是通用的,因为它可以用于设计极大极小或最小二乘误差意义上的滤波器。互补滤波器的初始SOPOT系数是通过最优实系数设计简单舍入到SOPOT值得到的。使用局部搜索方案来调整每个滤波器的响应,从而使与理想设计的总体误差最小化。这个过程不断重复,直到达到收敛。级联补设计不仅提供误差均衡,而且由于级联模型中系数之间发生卷积,使SOPOT系数更接近最佳实值。
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