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Correction of Rotor Position Estimation Error for High-Speed Permanent Magnet Synchronous Motor Sensorless Drive System Based on Minimum-Current-Tracking Method

机译:基于最小电流跟踪方法的高速永磁同步电动机无传感器驱动系统校正转子位置估计误差

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摘要

This article focuses on the issue of the rotor position estimation error correction for high-speed permanent magnet synchronous motor sensorless drive system. First, a rotor position estimator is designed. Then the estimation error caused by different kinds of nonideal factors is analyzed in detail. Estimation error results in larger amplitude of the stator current, the larger loss, and the degradation of the output torque. To eliminate the estimation error, a novel correction method based on the "minimu-current-tracking (MCT)" method is proposed in this article. The main idea of the proposed method is to obtain the minimum amplitude of the stator current adaptively through the MCT algorithm. The estimation error can be reduced to zero by correcting the compensation factor of the designed position estimator and observing the amplitude of stator current until the amplitude converges to the minimum value. The proposed method has two advantages: 1) the estimation error caused by no matter which kind of nonideal factor can be completely corrected; 2) no sensitive parameters are required in the proposed method. Finally, sufficient simulated results and experimental results verify the effectiveness of the proposed MCT-based method.
机译:本文侧重于高速永磁同步电动机无传感器驱动系统转子位置估计误差校正。首先,设计转子位置估计器。然后详细分析由不同种类的非膜因子引起的估计误差。估计误差导致定子电流的较大幅度,较大的损耗和输出扭矩的劣化。为了消除估计误差,本文提出了一种基于“最小电流跟踪(MCT)”方法的新型校正方法。所提出的方法的主要思想是通过MCT算法自适应地获得定子电流的最小幅度。通过校正所设计的位置估计器的补偿因子并观察定子电流的幅度直到幅度会聚到最小值,可以将估计误差减小为零。所提出的方法具有两个优点:1)无论哪种非侵害因子都可以完全纠正估计误差; 2)所提出的方法不需要敏感参数。最后,充分的模拟结果和实验结果验证了所提出的基于MCT的方法的有效性。

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