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An approach for FIR filter coefficient optimization using differential evolution algorithm

机译:一种使用差分进化算法的FIR滤波器系数优化方法

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In this paper, we present a hardware efficient finite impulse response (FIR) filter design using differential evolution (DE) and common sub expression (CSE) elimination algorithm. With the DE algorithm, we first found a set of filter coefficients with reduced number of signed-power-of-two (SPT) terms without compromising on quality of the filter response. After obtaining coefficients, we applied CSE elimination algorithm, and determined the hardware cost in terms of adders. The filters were designed using DE for various word lengths, and the same were implemented in transposed direct form (TDF) structure. The implemented filters were synthesized in Cadence RTL compiler using UMC 90 nm technology. We compared the performances of our filters with recently best published works in terms of area, delay, power and power-delay-product (PDP). One of the proposed filters found to improve a PDP gain of 29% compared to Remez algorithm. The proposed approach showed improvements in filter design for the given specifications. (C) 2014 Elsevier GmbH. All rights reserved.
机译:在本文中,我们提出了一种使用差分演化(DE)和公共子表达式(CSE)消除算法的硬件有效有限脉冲响应(FIR)滤波器设计。利用DE算法,我们首先找到了一组滤波器系数,它们减少了有符号二乘幂(SPT)项的数量,同时又不影响滤波器响应的质量。在获得系数之后,我们应用了CSE消除算法,并根据加法器确定了硬件成本。滤波器是使用DE设计的,用于各种字长,并以转置直接形式(TDF)结构实现。使用UMC 90 nm技术在Cadence RTL编译器中合成实现的滤镜。我们在面积,延迟,功率和功率延迟乘积(PDP)方面将滤波器的性能与最近发表的最佳作品进行了比较。与Remez算法相比,其中一种建议的滤波器可将PDP增益提高29%。对于给定的规格,建议的方法显示出滤波器设计方面的改进。 (C)2014 Elsevier GmbH。版权所有。

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