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Comparison of resistance-based and inductance-based self-sensing control for surface permanent magnet machine using high frequency signal injection

机译:基于高频信号注入的表面永磁电机基于电阻和基于电感的自感控制比较

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摘要

This paper presents injection-based self-sensing (position sensorless) control methods for surface permanent magnet (SPM) machines with highly symmetric rotors. Two suitable position-dependent spatial saliency signals are compared. The two signals relate to inductance variation due to stator tooth saturation and resistance variation due to high frequency (HF) eddy current losses. Finite element analysis (FEA) is performed to investigate the properties of two saliency signals in different SPM machines. Implementation methods as well as advantages for closed-loop self-sensing control are discussed. This paper includes experimental comparative evaluation of resistance-based versus inductance-based closed-loop self-sensing control performance in a SPM machine using concentrated windings.
机译:本文介绍了具有高对称转子的表面永磁(SPM)机器的基于注射的自感应(无位置传感器)控制方法。比较了两个合适的位置相关的空间显着性信号。这两个信号与定子齿饱和引起的电感变化和高频(HF)涡流损耗引起的电阻变化有关。执行有限元分析(FEA)以研究不同SPM机器中两个显着信号的特性。讨论了闭环自感应控制的实现方法以及优点。本文包括在使用集中绕组的SPM机器中基于电阻与基于电感的闭环自感应控制性能的实验比较评估。

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