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Sensorless control of surface permanent magnet synchronous machines using the high frequency resistance

机译:使用高频电阻的表面永磁同步机无传感器控制

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This paper proposes the use of the high frequency rotor resistance for sensorless control of surface permanent magnet synchronous machines (SPMSM) using high frequency signal injection. High frequency signal injection sensorless control techniques normally assume a purely inductive behavior of the machine, the rotor position-dependent differential inductance being the term tracked. A major concern for these methods is the impact that the operating point of the machine and, more specifically, saturation induced saliencies, have on the high frequency inductances and, eventually, on the accuracy of estimated rotor position. Complicated and time consuming signal processing techniques and tedious commissioning procedures are needed in practice to mitigate these problems and to obtain a good performance of the sensorless control. This paper explores the use of the high frequency rotor resistance for sensorless control purposes. A differential rotor resistance is present in SPMSM due to the difference between the electrical conductivity of the permanent magnet material and the rotor lamination. The differential rotor resistance has been found to be significantly more stable with respect to the operating condition of the machine than the differential inductance, allowing simpler implementation and better performance of the sensorless control.
机译:本文采用高频信号注入,采用高频转子电阻的使用,用于表面永磁同步机(SPMSM)的无传感器控制。高频信号注入无传感器控制技术通常假设机器的纯电感行为,转子位置依赖性差动电感是术语跟踪。这些方法的主要问题是机器的操作点以及更具体地说,饱和诱导的炼铁的影响,并且最终是估计转子位置的精度。在实践中需要复杂和耗时的信号处理技术和繁琐的调试程序,以减轻这些问题并获得无传感器控制的良好性能。本文探讨了使用高频转子电阻以进行无传感器控制目的。由于永磁材料的导电性和转子层压之间的差异,SPMSM存在差动转子电阻。已经发现差动转子电阻相对于机器的操作条件比差分电感明显更稳定,允许更简单地实现和更好的无传感器控制性能。

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