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Automatic design of frequency sampling filters by hybrid genetic algorithm techniques

机译:混合遗传算法技术自动设计频率采样滤波器

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A new method of designing recursive and nonrecursive frequency sampling filters is presented. We investigate the use of a hybrid real-coded genetic algorithm (GA) for optimising transition sample values to give the maximum stopband attenuation. A modification allows the coefficient wordlength to be optimized concurrently, thereby reducing the overall number of design steps and simplifying the design process. The technique is able to consistently optimize filters with up to six transition samples. Designing digital filters is a complex process involving optimization at several discrete design steps. The techniques presented could form the basis for integrating several of the optimizations. Investigations into increasing this integration by using a binary-coded GA to optimize nonlinear phase, quantized coefficient FIR filters are introduced, with an analysis of the difficulty of the problem from a GA perspective.
机译:提出了一种设计递归和非递归频率采样滤波器的新方法。我们研究了使用混合实数编码遗传算法(GA)来优化过渡样本值以提供最大的阻带衰减。修改允许同时优化系数字长,从而减少了设计步骤的总数并简化了设计过程。该技术能够用多达六个转换样本来一致地优化滤波器。设计数字滤波器是一个复杂的过程,需要在几个离散的设计步骤中进行优化。所提出的技术可以构成整合多个优化的基础。通过使用二进制编码的GA优化非线性相位,量化系数FIR滤波器来增加这种集成的研究,从GA的角度分析了问题的难度。

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