基于遗传算法的PID三相无刷直流电机建模与控制

U. Ansari, S. Alam, S. R. U. N. Jafri
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引用次数: 64

摘要

无刷直流电动机(BLDC)由于其高效率、高转矩和小体积而广泛应用于许多工业应用。本研究的目的是建立无刷直流电机的完整模型,并设计其位置控制的最优控制器。由于PID控制器结构简单,易于实现,被广泛应用于许多控制问题。然而,在实际应用中,我们经常不能用常规的PID控制器获得最佳的性能。为此,提出了遗传算法作为全局优化器,寻找无刷直流电机位置控制的最优PID增益。与传统方法的效率进行了比较。仿真结果表明,经遗传算法整定的PID控制为无刷直流电机的位置控制提供了更有效的闭环响应。利用MATLAB/SIMULINK软件对无刷直流电机进行了建模、控制和仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Control of Three Phase BLDC Motor Using PID with Genetic Algorithm
Brushless DC (BLDC) motors are widely used for many industrial applications because of their high efficiency, high torque and low volume. The aim of this research is to develop a complete model of the BLDC motor and to design an optimal controller for its position control. Generally PID controller is used for many control problems because of its simple structure and easy implementation. However in practice, we often do not get the optimum performance with the conventionally tuned PID controllers. For this purpose, Genetic Algorithm is proposed as a global optimizer to find the optimized PID gains for position control of BLDC motor. The efficiency of this method is compared with that of traditional method. Simulation results showed that PID control tuned by GA provides more efficient closed loop response for position control of BLDC motor. The modeling, control and simulation of the BLDC motor have been done using the software package MATLAB/SIMULINK.
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