Initial start-up and magnet polarity estimation method for HF test current injection based sensorless control of PMSM

M. Seilmeier, B. Piepenbreier
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引用次数: 6

Abstract

This paper presents an initial start-up and magnet polarity estimation method for PMSM using the alternating HF test current injection based sensorless control scheme for low speed range and evaluation of the saturation dependent HF d-axis inductance. The proposed magnet polarity estimation method consists of two steps: The first step is to activate the HF injection based sensorless current control scheme providing either the orientation of the d or -d-axis. To eliminate the ambiguity of the result from the first step, the magnet polarity information is obtained in the second step by exciting the estimated d-axis with a DC current. The magnet polarity can be detected by evaluation of whether the d-axis inductance increases or decreases due to saturation. Initial position estimation errors which can occur due to secondary saliencies can be compensated for easily by use of the flatness based test signal pre-control which is used for the test current injection based sensorless control anyway. Experimental results show proper functioning of the proposed method.
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基于高频测试电流注入的永磁同步电机无传感器控制的初始启动和磁极估计方法
本文提出了一种基于交流高频测试电流注入的永磁同步电动机低速范围无传感器控制方案和饱和相关高频d轴电感评估的初始启动和磁极估计方法。提出的磁极估计方法包括两个步骤:第一步是激活基于高频注入的无传感器电流控制方案,提供d轴或-d轴的方向。为了消除第一步结果的模糊性,在第二步中通过直流电流激励估计的d轴来获得磁体极性信息。通过评估d轴电感是否因饱和而增加或减少,可以检测磁体极性。由于二次显著性而产生的初始位置估计误差可以很容易地通过使用基于平坦度的测试信号预控制来补偿,这种预控制用于基于测试电流注入的无传感器控制。实验结果表明,该方法运行良好。
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