带纹波约束的线性相位数字FIR滤波器的差分进化优化设计

Shekhar Sharma, L. Arya, S. Katiyal
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引用次数: 8

摘要

对于频率选择数字滤波器的优化设计,采用了进化优化算法。在这些设计方法中,期望滤波器的频率特性是根据其频率响应来指定的。优化过程的目标是找到最优滤波器系数,使其接近期望的频率响应。本文介绍了一种基于差分进化算法的带纹波约束的数字FIR滤波器设计方法。该算法采用基于罚函数的约束处理方法,使波纹最小化。将带纹波约束的DE算法与不带纹波约束的相同算法的结果进行了比较。纹波约束确保了期望频率响应与设计频率响应之间的最大误差幅度等于或低于指定频带的约束。结果表明,采用带纹波约束处理方法的DE算法可以减小阻带纹波的大小。当运行次数增加时,该方法的性能可与最小二乘设计方法相媲美。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of linear-phase digital FIR filter using Differential Evolution optimization with ripple constraint
For the optimal design of frequency-selective digital filters, evolutionary optimization algorithms have been applied. In these design methods the desired filter's frequency characteristics are specified in terms of its frequency response. The goal of the optimization process is to find the optimal filter coefficients which closely approximate the desired frequency response. In this paper, Differential Evolution (DE) algorithm is described for the design of digital FIR filter with ripple constraint. The proposed algorithm minimizes ripples, using a constraint handling method based on penalty function. The results for the case of DE algorithm with ripple constraint are compared with those obtained for the same algorithm without ripple constraint. A ripple constraint has ensured that the maximum error magnitude between desired frequency response and the designed frequency response is equal to or below the constraint in the specified frequency band. The results show the reduction in the size of stopband ripple when DE algorithm with ripple constraint handling approach is applied. The performance obtained using this approach is comparable with that of Least-square design method for FIR filters when number of runs is applied.
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