Design a Speed Control for DC Motor Using an Optimal PID Controller Implementation of ABC Algorithm

A. I. Tajudin, Muhammad Affi Daneal Izani, A. Samat, S. Omar, M. A. Idin
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Abstract

The project purpose to implement Artificial Bee Colony (ABC) algorithm optimization technique for controlling the speed of the DC motor. The separately excited DC motor had been used to analyze the performance of the proposed technique. The boost converter has been selected to supply the required voltage to the terminal voltage of the DC motor. The PID controller was selected to control the desired performance of the converter. The determination of the best parameter is the main issue for this controller. The ABC algorithm was implemented to enhance the system performance by optimizing the PID gains. The objective function of error which is Integral-weight Time Absolute Error (ITAE) was used to minimize the index speed error of the motor. The proposed technique shows its capability to improve the speed response of the DC motor. Simulation model was developed using MATLAB/Simulink.
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基于ABC算法的最优PID控制器设计直流电机转速控制
本课题旨在实现人工蜂群(Artificial Bee Colony, ABC)算法优化技术来控制直流电动机的速度。用分励直流电动机对该方法进行了性能分析。升压变换器已被选择为直流电机的终端电压提供所需的电压。选择PID控制器来控制变换器的预期性能。最佳参数的确定是该控制器的主要问题。采用ABC算法通过优化PID增益来提高系统性能。采用积分权时间绝对误差(ITAE)作为误差目标函数,使电机的指标转速误差最小。结果表明,该方法能有效地改善直流电机的速度响应。利用MATLAB/Simulink建立仿真模型。
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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