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Optimal design of IIR wideband digital differentiators and integrators using salp swarm algorithm

机译:使用Salp群算法的IIR宽带数字微分器和积分器的优化设计

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This paper proposes an approach based on a weighted L-1-norm optimization criterion and employs it in conjunction with salp swarm algorithm (SSA) to design 2nd- to 4th-order wideband infinite impulse response (IIR) digital differentiators (DDs). Integration of the proposed fitness function and SSA allows both the magnitude and phase responses to be improved. An extensive simulation is carried out to explore the performance of the proposed approach. First, a comparative study with widely used methods, namely, real-coded genetic algorithm (RCGA) and particle swarm optimization (PSO), is performed to examine accuracy, robustness, consistency and efficiency. Afterwards, the magnitude and phase responses of the proposed digital differentiators are compared with those of the existing designs in the literature. New wideband IIR digital integrators (Dls) are derived by inverting transfer functions of their respective digital differentiators and then compared with the existing designs in the literature in terms of the magnitude and phase responses. Simulation and statistical results reveal that the superiority of the proposed approach is statistically significant and demonstrate that the proposed digital differentiators and integrators significantly outperform all state-of-the-art designs in terms of the magnitude response as measured by the absolute relative error (ARE) with almost linear phase responses in wideband frequency regions. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于加权L-1-范数优化准则的方法,并将其与Salp群算法(SSA)结合使用,以设计2至4阶宽带无限冲激响应(IIR)数字微分器(DDs)。拟议的适应度函数和SSA的集成可以改善幅度和相位响应。进行了广泛的仿真以探索所提出方法的性能。首先,进行了使用广泛使用的方法(即实码遗传算法(RCGA)和粒子群优化(PSO))的比较研究,以检验准确性,鲁棒性,一致性和效率。然后,将所提出的数字微分器的幅度和相位响应与文献中现有设计的幅度和相位响应进行比较。新的宽带IIR数字积分器(Dls)是通过将其各自的数字微分器的传递函数求逆得到的,然后在幅度和相位响应方面与文献中的现有设计进行比较。仿真和统计结果表明,该方法的优越性具有统计学意义,并表明,就通过绝对相对误差(ARE)测得的幅度响应而言,所提出的数字微分器和积分器明显优于所有最新设计。 )在宽带频率区域具有几乎线性的相位响应。 (C)2019 Elsevier B.V.保留所有权利。

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