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Modelling and Simulation for Used Genetic Algorithm Method to Speed Control of Three-phase Induction Motor

机译:遗传算法在三相异步电动机调速中的建模与仿真

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Optimization techniques are very well-known to improve the performance of Three-phase induction motor (TIM). Inverter and SVPWM method can be used for setting voltage and frequency appropriating with loads requirements. This study deals with the tuning of PID controller parameters to be used TIM. Genetic algorithm is used to tune each parameters of PID speed controller to improve the speed response performance of the TIM. PID-GA aims to minimize the error signal speed of TIM, reduce overshoot, and tune parameters of PID controller. The error signal speed of TIM has objective function from integrated error signal (ISE). Parameters of PID controller from optimization are used to the model of the closed-loop speed control of three-phase induction motor using PID. PID-GA has the best speed response. On the model of the closed-loop speed control of three-phase induction motor using PID, various load torque can result in decreasing flux stator and rotor, increasing current stator and rotor, and decreasing speed of the induction motor.
机译:优化技术是众所周知的,可以提高三相感应电动机(TIM)的性能。变频器和SVPWM方法可用于根据负载要求设置电压和频率。本研究涉及要用于TIM的PID控制器参数的调整。遗传算法用于调整PID速度控制器的各个参数,以提高TIM的速度响应性能。 PID-GA旨在最大程度地降低TIM的误差信号速度,减少过冲并调整PID控制器的参数。 TIM的误差信号速度具有集成误差信号(ISE)的目标功能。将优化后的PID控制器参数用于使用PID的三相感应电动机的闭环速度控制模型。 PID-GA具有最佳速度响应。在使用PID的三相感应电动机的闭环速度控制模型中,各种负载转矩会导致定子和转子的磁通量减少,定子和转子的电流量增加以及感应电动机的速度降低。

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