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Investigation of saturation impact on an IPMSM saliency-based sensorless control for automotive applications

机译:对汽车应用的IPMSM显着的无传感器控制的饱和度影响研究

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The paper deals with the sensorless control of salient-pole Interior-Permanent-Magnet-Synchronous-Machines (IPMSMs) adressed to electric vehicle applications, using a high frequency voltage injection technique. This technique is effective at zero and low motor speed, and takes advantage of the peculiarity of the rotor geometry. Indeed, the expected estimation performances heavily depend on the rotor saliency, so, on the geometry of the IPMSM rotor. The main focus of this work is first to experiment the magnetic saturation effect on the machine saliency for different operating conditions and consequently identify the feasible sensorless control region when taking into account the chosen current control strategy. Then, it is intended to evaluate the impact of saturation induced cross-coupling terms on the position estimation accuracy. This analysis is supported by experimental evidence obtained using a salient-pole interior PM synchronous machine, however, the findings may also be applicable to other AC salient machines.
机译:本文采用高频电压注入技术涉及凸极内部永磁 - 同步机(IPMSMS)的无传感器控制。该技术在零和低电动机速度下有效,并且利用转子几何形状的特殊性。实际上,预期估计性能大量取决于转子显着性,因此,在IPMSM转子的几何形状上。这项工作的主要重点首先,首先在考虑所选择的电流控制策略时识别可行的无传感器控制区域的磁饱和度效应。然后,旨在评估饱和感应的交叉耦合术语对位置估计精度的影响。该分析由使用凸极内部PM同步机获得的实验证据支持,然而,发现也可以适用于其他交流凸起机器。

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