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Optimal fractional delay-IIR filter design using cuckoo search algorithm

机译:使用布谷鸟搜索算法的最优分数延迟-IIR滤波器设计

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This paper applied a novel global meta-heuristic optimization algorithm, cuckoo search algorithm (CSA) to determine optimal coefficients of a fractional delay-infinite impulse response (FD-IIR) filter and trying to meet the ideal frequency response characteristics. Since fractional delay-IIR filter design is a multi-modal optimization problem, it cannot be computed efficiently using conventional gradient based optimization techniques. A weighted least square (WLS) based fitness function is used to improve the performance to a great extent. FD-IIR filters of different orders have been designed using the CSA. The simulation results of the proposed CSA based approach have been compared to those of well accepted evolutionary algorithms like Genetic Algorithm (GA) and Particle Swarm Optimization (PSO). The performance of the CSA based FD-IIR filter is superior to those obtained by GA and PSO. The simulation and statistical results affirm that the proposed approach using CSA outperforms GA and PSO, not only in the convergence rate but also in optimal performance of the designed FD-IIR filter (i.e., smaller magnitude error, smaller phase error, higher percentage improvement in magnitude and phase error, fast convergence rate). The absolute magnitude and phase error obtained for the designed 5th order FD-IIR filter are as low as 0.0037 and 0.0046, respectively. The percentage improvement in magnitude error for CSA based 5th order FD-IIR design with respect to GA and PSO are 80.93% and 74.83% respectively, and phase error are 76.04% and 71.25%, respectively. (C) 2015 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文应用一种新颖的全局元启发式优化算法,布谷鸟搜索算法(CSA)来确定分数延迟-无限冲激响应(FD-IIR)滤波器的最佳系数,并尝试满足理想的频率响应特性。由于分数延迟IIR滤波器设计是一个多模式优化问题,因此无法使用常规的基于梯度的优化技术来有效地进行计算。基于加权最小二乘(WLS)的适应度函数可在很大程度上改善性能。已使用CSA设计了不同阶数的FD-IIR滤波器。所提出的基于CSA的方法的仿真结果已与遗传算法(GA)和粒子群优化(PSO)等公认的进化算法进行了比较。基于CSA的FD-IIR滤波器的性能优于通过GA和PSO获得的性能。仿真和统计结果证实,使用CSA提出的方法不仅在收敛速度方面而且在设计的FD-IIR滤波器的最佳性能方面都优于GA和PSO(即,幅度误差较小,相位误差较小,改善的百分比提高)。幅度和相位误差,收敛速度快)。设计的五阶FD-IIR滤波器获得的绝对幅度和相位误差分别低至0.0037和0.0046。基于CSA的五阶FD-IIR设计相对于GA和PSO的幅度误差提高的百分比分别为80.93%和74.83%,相位误差分别为76.04%和71.25%。 (C)2015 ISA。由Elsevier Ltd.出版。保留所有权利。

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