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首页> 外文期刊>International Journal of Renewable Energy Development >Design and Speed Control of SynRM using Cascade PID Controller with PSO Algorithm
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Design and Speed Control of SynRM using Cascade PID Controller with PSO Algorithm

机译:使用PSO算法使用级联PID控制器Synrm的设计与速度控制

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摘要

In recent years, the variable speed motor drive is supported over a fixed speed motor drive as per essentialness safeguarding, speed or position control and improvement of transient response characteristics. The aim of any speed controller is to take main signal that represent the reference speed and to drive the framework at that reference speed. This paper exhibits the design, simulation and control of synchronous reluctance motor (SynRM). In addition, the motor speed is controlled by utilizing a conventional PID controller that has been used from the cascaded structure. The Particle Swarm Optimization (PSO) was used to find the best parameters of the PID controller. Lead-Lag controller presents from the cascaded controller as the following period of control. The Space vector pulse width modulation (SVPWM) plot has been proposed to control the motor and make the motor work with no rotor confine contingent upon the info parameters that utilization in the simulation. An examination between both of PID tuned and PSO tuned controller affirms that the PSO gives dazzling control highlights to the motor speed and have an edge over the physically changing controller. Thus, this paper present investigation and simulation for the most precise procedures to control the speed reaction and torque reaction of synchronous reluctance motor (SynRM).
机译:近年来,根据本质上的保护,速度或位置控制以及瞬态响应特性的提高,通过固定速度电机驱动器支撑变速电机驱动。任何速度控制器的目的都采用代表参考速度的主信号,并以参考速度驱动框架。本文展现了同步磁阻电机(SYNRM)的设计,仿真和控制。另外,通过利用已经从级联结构使用的传统PID控制器来控制电动机速度。粒子群优化(PSO)用于找到PID控制器的最佳参数。引导控制器从级联控制器呈现为以下控制时期。已经提出了空间矢量脉冲宽度调制(SVPWM)图来控制电动机,并使电机工作没有转子限制在模拟中使用的信息参数。 PID调谐和PSO调谐控制器之间的检查确认PSO使令人眼花缭乱的控制亮起电机速度,并在物理上变化的控制器上具有边缘。因此,本文对控制同步磁阻电动机(SYNRM)的速度反应和扭矩反应的最精确程序存在研究和仿真。

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