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A novel approach to sensorless control of induction motors

机译:感应电动机的无传感器控制的新方法

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In this paper, sensorless control of induction motor is studied by reducing the adverse effect caused by the variation of the rotor time constant, which is the most effective parameter. For this purpose, a new robust observer for the parameter variation, is designed with the combination of sliding mode approach and Luenberger observer. Then, the observer is used in the rotor flux oriented vector control of induction motor. The control hardware is realized by using a motion control card on a computer. The current and the voltage values of the motor are transferred to the control algorithm software by means of the analog-to-digital converter on the motion control card. The actual speed of the motor is measured through the encoder and it is compared with it's estimated value. Experimental results have shown that the estimated speed successfully converged to measured one. Simulation studies are performed in MATLAB, before implementing the proposed observer with rotor flux oriented control for the induction machine. The observer constants and the control parameters are tuned based on this simulation results. The comparative results and related overall conclusions are presented accordingly.
机译:在本文中,通过减少由于转子时间常数变化而引起的不利影响来研究感应电动机的无传感器控制,这是最有效的参数。为此,结合滑模方法和Luenberger观测器,设计了一个新的鲁棒的参数变化观测器。然后,将观察器用于感应电动机的转子磁通矢量控制。通过使用计算机上的运动控制卡来实现控制硬件。电机的电流和电压值通过运动控制卡上的模数转换器传输到控制算法软件。电机的实际速度通过编码器测量,并与估算值进行比较。实验结果表明,估计速度已成功收敛到实测速度。在用感应电机的转子磁通定向控制实现建议的观测器之前,在MATLAB中进行了仿真研究。观察者常数和控制参数基于此模拟结果进行调整。相应地给出了比较结果和相关的总体结论。

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