Reduced-Order Model Based Design of PID Control for Zeta Converter Using GWO Algorithm

V. Meena, U. Yadav, Ankur Gupta, Vinay Singh
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引用次数: 6

Abstract

In this research work, proportional-integral-derivative (PID) controller design is presented by utilizing reduced order modelling for interval modelled Zeta converter. The optimal values for PID controller are determined using grey wolf optimization (GWO) algorithm with specified gain cross-over frequency ($\omega_{gc}$) and phase margin ($\phi_{pm}$). The reduction of interval modelled higher order (HO) Zeta converter into first order model is done with the help of Routh-Padé approximation and direct truncation method. The denominator of desired reduced order model (ROM) is determined by exploiting Routh-Padé approximation. The direct truncation method is used to obtain the numerator of desired ROM. The step response and Bode diagram are provided in the support of proposed methodology. The time domain specifications and error indices are also presented to prove the effectiveness of proposed method.
基于降阶模型的Zeta变换器的GWO算法PID控制设计
在本研究中,利用降阶模型对区间Zeta变换器进行了比例-积分-导数(PID)控制器的设计。采用给定增益、交叉频率($\omega_{gc}$)和相位裕度($\phi_{pm}$)的灰狼优化(GWO)算法确定PID控制器的最优值。利用routh - pad近似法和直接截断法将区间建模的高阶Zeta转换器简化为一阶模型。利用routh - pad近似法确定了期望降阶模型(ROM)的分母。采用直接截断法求出所需ROM的分子,并给出了阶跃响应图和波德图。给出了时域指标和误差指标,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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