先进的直流电机最优GWO-PID控制器

G. Aziz, S. W. Shneen, Fatin Nabeel Abdullah, D. H. Shaker
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引用次数: 1

摘要

目前的工作旨在使用传统的控制算法和先进的优化算法,选择其易于控制和在许多工业应用中使用它的可能性。通过为仿真模型设置适当的规格,并进行计划的测试,模拟电机在电气系统中的不同应用,结果证明,除了速度外,电机的工作性能良好,响应更好,精度高。目标是利用灰狼优化(GWO)设计和调整直流(DC)电机的比例-积分-导数(PID)控制器。为了利用最优算法对传统控制器的参数进行调整,从先进的优化技术中选择合适的机制和技术,选择灰狼技术算法作为优化技术,采用积分时间绝对误差(ITAE)对传统PID控制器进行参数调整。
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Advanced optimal GWO-PID controller for DC motor
The current work aims to use traditional control algorithms and advanced optimization algorithms that was chosen for its ease of control and the possibility of using it in many industrial applications. By setting the appropriate specifications for the simulation model and after conducting the planned tests that simulate different applications of the motor’s work within electrical systems, the results proved to obtain good performance of the motor’s work, better response, high accuracy, in addition to the speed. The goal is to design and tune a proportional–integral–derivative (PID) controller by grey wolf optimization (GWO) using T.F for a direct current (DC) motor. To adjust the parameters of the traditional controllers using the optimum advanced, an appropriate mechanism and technology from the advanced optimization techniques were chosen, as the gray wolf technology algorithm was chosen as an optimization technique and integral time absolute error (ITAE) to adjust the parameters of the traditional PID controller.
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期刊介绍: International Journal of Advances in Engineering Sciences and Applied Mathematics will be a thematic journal, where each issue will be dedicated to a specific area of engineering and applied mathematics. The journal will accept original articles and will also publish review article that summarize the state of the art and provide a perspective on areas of current research interest.Articles that contain purely theoretical results are discouraged.
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