Sliding mode control of a three phase induction motor based on reference model

Nguyen Vinh Quan, Ng M Tam, N. Nhờ, Duong Hoai Nghia
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引用次数: 2

Abstract

Almost controllers of induction motor speed are designed to keep motor speed unchanged. It is hard for conventional controller such as PI controller because induction motor is a nonlinear system with parameter changes and noise. Sliding mode control based on reference model is worth trying to overcome that difficulty. This paper presents a new method using sliding mode controller based on reference model and stator field orientation for an induction motor. There are two separate sliding mode controllers are designed. The first one is for control of the flux field and the second for the torque of the motor. A reference model is properly chosen to estimate reference speed of the motor. A seven level cascade inverter is control to reduce common - mode voltage which will improve the stability for proposed controllers. The method used to reduce chattering around sliding surfaces is also presented. Simulation and experimental results on a 1-hp 150-rad/sec squirrel-rotor induction motor shows smooth operation of the control scheme with a 1.5 times increase of the stator resistor and rotor resistor values of the induction motor under condition of noises. The performances of the sliding mode controllers are compared with a PI (Proportional and Integral) controllers with various load conditions.
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基于参考模型的三相异步电动机滑模控制
感应电机速度控制器几乎都是为了保持电机速度不变而设计的。由于异步电动机是一个具有参数变化和噪声的非线性系统,对PI等传统控制器进行控制比较困难。基于参考模型的滑模控制是克服这一困难的一种值得尝试的方法。本文提出了一种基于参考模型和定子磁场定位的异步电动机滑模控制器的新方法。设计了两个独立的滑模控制器。第一个用于磁通场的控制,第二个用于电机转矩的控制。选择合适的参考模型来估计电机的参考转速。采用七电平串级逆变器控制,降低共模电压,提高控制器的稳定性。文中还提出了一种减少滑动表面周围颤振的方法。在1匹功率150 rad/秒的鼠转子异步电动机上的仿真和实验结果表明,在噪声条件下,该控制方案运行平稳,使异步电动机的定子电阻和转子电阻值提高1.5倍。在各种负载条件下,比较了滑模控制器与PI(比例与积分)控制器的性能。
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