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Sensorless operation of PMSM based on hybrid rotor position self-sensing scheme

机译:基于混合转子位置自感应方案的PMSM无传感器操作

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A hybrid rotor position self-sensing scheme was investigated by combining the rotating high-frequency voltage signal injection method and Model Reference Adaptive System (MRAS) method in this paper. Based on the detailed discussion of the basic principles and the merits for the two methods, the configuration of the hybrid scheme and the transition principle from high-frequency signal injection method to MRAS were studied and the estimation algorithm of the rotor position/speed and weight coefficients in the transition region was deduced in detail. Moreover, the experimental verification for the smooth transition of the two position estimation schemes in an inset-type Permanent Magnet Synchronous Motor (PMSM) using the hybrid approach and the sensorless vector control operation were carried out with success as well. The experimental study indicates that the hybrid rotor position self-sensing approach merges the advantages of both methods and is capable of precisely estimating the rotor position and speed at the low speed and possessing fast dynamic response at the high-speed. Therefore, the proposed scheme is suitable for sensorless vector control of a PMSM in a wide speed region, including zero-speed.
机译:通过结合本文所述旋转高频电压信号注入法和模型参考自适应系统(MRAS)方法的混合转子位置的自感测方案进行了研究。基于基本原理的详细讨论和用于这两种方法的优点,所述混合方案,并从高频信号注入的方法来MRAS过渡原理的结构进行了研究和转子位置/速度和重量的估计算法在过渡区域的系数进行了详细推导。此外,对于两个位置估计方案中使用的混合方法和传感器矢量控制操作的插入式永磁同步电动机(PMSM)的平滑过渡实验验证用成功进行为好。实验研究表明,混合型转子位置自检测方法合并的两种方法的优点是能够精确地估计在低速转子位置和速度,并具有在高速快动态响应。因此,所提出的方案是适合于在宽的速度区域中的永磁同步电动机的无传感器矢量控制,包括零速。

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