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Non-Invasive Magnet Temperature Estimation of IPMSM Based on High-Frequency Inductance With a Pulsating High-Frequency Voltage Signal Injection

机译:基于高频电感的IPMSM非侵入式磁体温度估计,具有脉动高频电压信号注入

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摘要

In this paper, a method to estimate the temperature of a permanent magnet of a traction motor for automotive applications is derived by analyzing the high-frequency inductance of an interior permanent-magnet synchronous motor. The derived method exploits the high-frequency inductance as an indicator of the magnet temperature, and it does not require a temperature sensor not only on the rotor side but also on the stator side. Hence, the method is truly noninvasive. The proposed method has been verified in a small-scale experimental setup. The performance of the method has been evaluated at various torques, speeds, and magnet temperatures ranging from -24 to 82 degrees C. Through testing at various operating conditions, it has been confirmed that the maximum error is less than 2.9 degrees C even when the speed and torque vary.
机译:本文通过分析内部永磁同步电动机的高频电感来得出估计汽车应用牵引电动机的永磁体的温度的方法。衍生方法利用高频电感作为磁体温度的指示灯,并且它不需要温度传感器不仅在转子侧上而且在定子侧上。因此,该方法真正无侵入。在小规模的实验设置中已经验证了所提出的方法。已经在各种扭矩,速度和磁体温度下评估了该方法的性能,从-24到82摄氏度范围内。通过在各种操作条件下进行测试,已经证实了即使当其中的最大误差也小于2.9摄氏度速度和扭矩变化。

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