永磁同步电机无传感器转子温度估计

M. Ganchev, C. Kral, H. Oberguggenberger, T. Wolbank
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引用次数: 55

摘要

本文提出了一种利用d型电流和转子磁通励磁在钢定子铁芯中产生的d轴饱和效应来估计永磁同步电机磁体温度的方法。该方法意味着在电机的d轴上间歇注入电压脉冲。产生的d电流响应是d电流本身的初始值和磁体的磁化水平的函数。因此,永磁体磁化水平的温度依赖性变化反映在电压脉冲上d电流斜率的变化中。以表面永磁电机为例,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensorless rotor temperature estimation of permanent magnet synchronous motor
The work proposes a method for estimation of the magnet temperature in permanent-magnet synchronous machines by exploiting the d-axis saturation effects in the steel stator core produced by the d-current and rotor flux excitation. The method implies an intermittent injection of a voltage pulse in the d-axis of the motor. The resulting d-current response is a function of both the initial value of the d-current itself and the magnetization level of the magnets. Thus, a temperature dependent variation in the magnetization level of the permanent magnets is reflected in a variation of the d-current slope upon the voltage pulse. Experimental validation of the method is demonstrated with surface permanent-magnet motor.
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