Improved constant parameter VBR model of permanent magnet synchronous machine using resonant auxiliary rotor winding

Navid Amiri, S. Ebrahimi, Yingwei Huang, J. Jatskevich, H. Dommel
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Abstract

Wind power generation with permanent magnet synchronous machines (PMs) has been made possible using power electronic converters. With the increasing use of such systems, the numerically efficient modeling and simulation are of critical importance. As an alternative to traditional qd models, the coupled-circuit phase-domain (CCPD) and voltage-behind-reactance (VBR) models have been recently proposed to achieve advantageous numerical properties. Constant parameter VBR (CPVBR) models has also been presented to avoid having the variable inductance matrix that is present in CCPD and VBR models in case of salient rotor machines. This paper improves the CPVBR model using the auxiliary rotor winding to achieve better accuracy when the machine in connected to power electronic converters. The new model is shown to possess very good accuracy and advantages over alternative existing models.
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采用谐振辅助转子绕组的永磁同步电机恒参数VBR模型的改进
风力发电与永磁同步机(pm)已经成为可能,使用电力电子转换器。随着此类系统的使用越来越多,高效的数值建模和仿真变得至关重要。作为传统量子点模型的替代方案,耦合电路相域(CCPD)和电抗后电压(VBR)模型最近被提出,以获得有利的数值特性。恒定参数VBR (CPVBR)模型也被提出,以避免在凸转子电机中CCPD和VBR模型中存在的可变电感矩阵。本文利用辅助转子绕组对CPVBR模型进行了改进,使其在与电力电子变流器连接时具有更好的精度。结果表明,新模型具有较好的精度和优于现有模型的优点。
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