Speed, EMF and Rotor Position Estimation of PMSM using Phase Locked Loop and Simple Sliding Mode Observer

M. Comanescu
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引用次数: 3

Abstract

The paper presents a simple method to estimate the quantities needed for implementation of sensorless control for the Permanent Magnet Synchronous Motor (PMSM). In sensorless control, the speed, EMFs and rotor position of the motor need to be estimated using the terminal quantities (measured voltages and currents). The paper proposes a sequential estimation approach: the speed is estimated first; then, it is used in the estimation of the EMFs and rotor position. The speed is obtained using a Phase Locked Loop (PLL) synchronized with the motor voltages. The PLL does not depend on the motor parameters and yields a speed estimate with guaranteed zero steady-state error. The availability of the motor speed allows to improve the estimation of the EMFs and rotor position using speed dependent gains and angle correction. The paper presents a simple sliding mode observer whose estimation accuracy is improved using the speed estimate. The results are validated with simulations. The method presented is simple and easy to implement. The estimators presented are reliable, accurate, depend on a minimal set of parameters and yield zero steady-state error.
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基于锁相环和简单滑模观测器的永磁同步电机速度、电动势和转子位置估计
本文提出了一种估算实现永磁同步电机无传感器控制所需量的简单方法。在无传感器控制中,需要使用终端数量(测量电压和电流)来估计电机的速度,emf和转子位置。本文提出了一种序贯估计方法:首先估计速度;然后,将其应用于电磁场和转子位置的估计。速度是通过与电机电压同步的锁相环(PLL)获得的。锁相环不依赖于电机参数,产生一个保证零稳态误差的速度估计。电机速度的可用性允许使用速度相关增益和角度校正来改善emf和转子位置的估计。本文提出了一种简单的滑模观测器,利用速度估计提高了其估计精度。仿真结果验证了结果的正确性。该方法简单,易于实现。所提出的估计器可靠、准确,依赖于最小的参数集,稳态误差为零。
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