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Simulation and Optimization of Asynchronous AC Motor Control by Particle Swarm Optimization (PSO) and Emperor Algorithm

机译:基于粒子群算法和皇帝算法的异步交流电动机控制仿真与优化

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In the present paper, the simulation and optimization of asynchronous AC motor through its controlling and modeling by convert d-q with Simulink of Mat lab Software has been studied. By utilization of classic PI controller and also with phase controller has been optimized which membership function center of it has been optimized by new intelligent algorithms such as Emperor and PSO. The obtained results show that obtaining phase points by new intelligent controllers such as Emperor and PSO ones have better results than classic PID and fuzzy controllers. In fact the results of experiments show that the error of Emperor Algorithm is lower than PSO. Thus the emperor algorithm optimizes membership function centers of phase controllers better than PSO one. Simulation is implemented in Mat lab Simulink.
机译:本文通过Matlab软件Simulink对d-q进行控制和建模,对异步交流电动机进行了仿真和优化研究。通过使用经典的PI控制器以及相位控制器,对它们的隶属函数中心进行了优化,并通过诸如Emperor和PSO之类的新智能算法对其进行了优化。所得结果表明,通过新型智能控制器(如Emperor和PSO控制器)获得相点的效果要优于经典PID和模糊控制器。实际上,实验结果表明,Emperor算法的误差要小于PSO。因此,皇帝算法比PSO更好地优化了相位控制器的隶属函数中心。仿真在Mat lab Simulink中实现。

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