Optimization of RST Controller for Speed Control of Linear Induction Motor Using Genetic Algorithm

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Recent Advances in Electrical & Electronic Engineering Pub Date : 2023-05-19 DOI:10.2174/2352096516666230519114514
Khettache Laid, Djarah Djalal, Zidani Ghania, A. Rachid
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Abstract

In this study, a new model of linear induction motor, along with the impact of end-effect on motor performance, is proposed. Moreover, a new strategy of control approach based on the polynomial RST controller is suggested and investigated. The proposed approach can provide a robust control strategy and overcome the limitations imposed by the proportional-integral (PI) regulator in the FOC technique. RST controller has a two-degree of freedom structure and consists of three polynomials, namely R, S and T, which are determined by the pole placement method and resolving of a Diophantine equation. Despite this, the implementation of this method is usually difficult and becomes more complicated with the complexity of the controlled plants. This study proposes the genetic algorithm (GA) optimization strategy for tuning RST controller parameters (adjust the controller coefficients) in order to achieve an adequate response time by minimizing the different objective functions, such as steady-state error, settling time, and rise time. The accuracy and control performance of the proposed technique are checked and validated using Matlab /Simulink environment software tool. Simulation results reported that the proposed method (RST-GA) could provide robust solutions with perfect reference tracking and efficient disturbance rejection. These significant results make the proposed approach a promising technique for the design of a high-performance controller, which is highly suitable for industrial and electrical applications.
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基于遗传算法的直线感应电机速度控制RST控制器优化
本文提出了一种新的线性感应电机模型,并考虑了末端效应对电机性能的影响。此外,提出并研究了一种基于多项式RST控制器的控制策略。该方法提供了一种鲁棒控制策略,克服了比例积分(PI)调节器在FOC技术中的局限性。RST控制器为二自由度结构,由R、S、T三个多项式组成,由极点放置法和丢芬图方程解析确定。尽管如此,这种方法的实施通常是困难的,并且随着被控制工厂的复杂性而变得更加复杂。本文提出了一种遗传算法(GA)优化策略来调整RST控制器参数(调整控制器系数),通过最小化不同的目标函数,如稳态误差、稳定时间和上升时间来获得足够的响应时间。利用Matlab /Simulink环境软件对该技术的精度和控制性能进行了验证。仿真结果表明,该方法具有良好的参考跟踪和抗干扰能力,具有鲁棒性。这些显著的结果使所提出的方法为高性能控制器的设计提供了一种有前途的技术,它非常适合于工业和电气应用。
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来源期刊
Recent Advances in Electrical & Electronic Engineering
Recent Advances in Electrical & Electronic Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.70
自引率
16.70%
发文量
101
期刊介绍: Recent Advances in Electrical & Electronic Engineering publishes full-length/mini reviews and research articles, guest edited thematic issues on electrical and electronic engineering and applications. The journal also covers research in fast emerging applications of electrical power supply, electrical systems, power transmission, electromagnetism, motor control process and technologies involved and related to electrical and electronic engineering. The journal is essential reading for all researchers in electrical and electronic engineering science.
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