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首页> 外文期刊>Research journal of applied science, engineering and technology >DTC-SVM Based on PI Torque and PI Flux Controllers to Achieve High Performance of Induction Motor
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DTC-SVM Based on PI Torque and PI Flux Controllers to Achieve High Performance of Induction Motor

机译:基于PI转矩和PI磁通控制器的DTC-SVM实现感应电动机的高性能

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摘要

The fundamental idea of direct torque control of induction machines is investigated in order to emphasize the property produced by a given voltage vector on stator flux and torque variations. The proposed control system is based on Space Vector Modulation (SVM) of electrical machines, Improvement model reference adaptive system, real time of stator resistance and estimation of stator flux. The purpose of this control is to minimize electromagnetic torque and flux ripple and minimizing distortion of stator current. In this proposed method, PI torque and PI flux controller are designed to achieve estimated torque and flux with good tracking and fast response with reference torque and there is no steady state error. In addition, design of PI torque and PI flux controller are used to optimize voltages in d-q reference frame that applied to SVM. The simulation Results of proposed DTC-SVM have complete excellent performance in steady and transient states as compared with classical DTC-SVM.
机译:研究了感应电机直接转矩控制的基本思想,目的是强调给定电压矢量对定子磁通和转矩变化产生的特性。所提出的控制系统基于电机的空间矢量调制(SVM),改进模型参考自适应系统,定子电阻的实时性和定子磁通的估计。该控制的目的是使电磁转矩和磁通波动最小化,并使定子电流失真最小化。在此提出的方法中,PI转矩和PI磁通控制器设计为实现估计的转矩和磁通,并具有良好的跟踪能力和对参考转矩的快速响应,并且没有稳态误差。此外,PI转矩和PI磁通控制器的设计用于优化d-q参考系中应用于SVM的电压。与经典DTC-SVM相比,拟议DTC-SVM的仿真结果在稳态和瞬态下均具有出色的性能。

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