Sensorless speed control of permanent magnet synchronous motor by using sliding mode observer

M. Ezzat, J. De Léon, Nicolas Gonzalez, A. Glumineau
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引用次数: 25

Abstract

This paper presents a sensorless speed control for a permanent magnet synchronous motor (PMSM) combining a robust backstepping controller and a sliding mode observer based on the super twisting algorithm. Firstly, the structural property of the observability of this machine is analyzed. Then, an observer is designed in order to estimate the speed and the position of the machine from the only measurement of the currents and the voltages. A robust backstepping controller is then designed in order to track a desired speed reference under uncertainties and unmodeled dynamics. The result is obtained in spite of uncertainties in the stator resistance and stator inductance, which usually are bad known and time-varying. Simulation results are shown in the framework of an industrial benchmark to illustrate the performance of the proposed scheme with the critical case of standstill and low speed.
滑模观测器在永磁同步电机无传感器速度控制中的应用
提出了一种结合鲁棒反步控制器和滑模观测器的基于超扭转算法的永磁同步电机无传感器速度控制方法。首先,分析了该机器可观测性的结构特性。然后,设计了一个观测器,以便仅通过测量电流和电压来估计机器的速度和位置。然后设计了鲁棒反步控制器,以便在不确定和未建模的动态情况下跟踪所需的速度参考。该结果是在定子电阻和定子电感不确定的情况下得到的,而定子电阻和定子电感通常是不确定的和时变的。在工业基准的框架下给出了仿真结果,以说明该方案在静止和低速临界情况下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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