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Design and Optimization of Hybrid Excitation Synchronous Machines With Magnetic Shunting Rotor for Electric Vehicle Traction Applications

机译:电动汽车牵引用混合励磁转子励磁同步电机的设计与优化

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摘要

In this paper, a hybrid excitation synchronous machine (HESM) with magnetic shunting rotor is designed for electric vehicle traction applications with consideration of electromagnetic performance and mechanical strength. The HESM with magnetic shunting rotor is a topology of brushless HESM with extended magnetic bridge to embed field windings. The rotor core extends along the axial direction and the increase of rotor length is inevitable, which reduces torque density. In order to improve torque density, the excitation structure is optimized by built-in field windings and the HESM with one-end built-in field windings is presented. To improve the flux regulation capability and decrease the magnet consumption further, the HESM with dual-end built-in field windings is proposed and investigated. The comparative study of the performances of the original HESM and the HESMs with one/dual-end built-in field windings is carried out by three-dimensional finite element method (FEM). An original HESM prototype and a permanent magnet synchronous machine prototype have been developed and the experimental results, which agree well with the FE-predicted results, confirm the advantages of HESM and the validity of FEM used in predictions in this paper.
机译:在本文中,考虑到电磁性能和机械强度,设计了带有磁分流转子的混合励磁同步电机(HESM),用于电动汽车牵引应用。带磁并联转子的HESM是无刷HESM的拓扑结构,具有扩展的电磁桥以嵌入励磁绕组。转子铁心沿轴向延伸,不可避免地增加了转子长度,从而降低了转矩密度。为了提高转矩密度,通过内置励磁绕组优化了励磁结构,并提出了带有一端内置励磁绕组的HESM。为了提高磁通量调节能力并进一步减少磁体消耗,提出并研究了带有双端内置场绕组的HESM。通过三维有限元方法(FEM)进行了原始HESM和带有双端内置场绕组的HESM的性能比较研究。已经开发出了原始的HESM原型和永磁同步电机原型,并且实验结果与有限元预测的结果非常吻合,证实了HESM的优势以及有限元方法在预测中的有效性。

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