Performance analysis of dual stator six-phase embedded-pole permanent magnet synchronous motor for electric vehicle application

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IET Electrical Systems in Transportation Pub Date : 2022-12-01 DOI:10.1049/els2.12063
Raja Ram Kumar, Priyanka Devi, Chandan Chetri, Ankita Kumari, Papu Moni Saikia, Ram Khelawan Saket, Kundan Kumar, Baseem Khan
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引用次数: 4

Abstract

The motive of this study is to analyse the characteristics of a novel dual-stator embedded-pole six-phase permanent magnet synchronous motor for the application of electric vehicles. A comparative analysis of two separate motor topologies, namely, dual stator embedded-pole six-phase permanent magnet synchronous motor and single stator single rotor surface-mounted permanent magnet synchronous motor, is accomplished to illustrate the performance superiority of the proposed motor. Furthermore, for optimal designing of the proposed motor, a design methodology has also been presented. For the above application, the motor should retain high torque density (HTD) and high reliability. In this regard, a novel H-Shaped flux barrier is introduced in the rotor portion, which fulfils the requirement of HTD. Moreover, the availability of two sets of the stator winding enhances the performance efficiency and ensures the proposed motor's more significant fault-tolerating ability of the motor. For performance evaluation, the Finite Element Method analysis is chosen, as it gives appropriate and precise results. From the above analysis, it is concluded that the HTD and the proposed motor's dynamic performance are better than the above-mentioned conventional motor.

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电动汽车用双定子六相嵌极永磁同步电动机的性能分析
本研究的目的是分析一种新型电动汽车用双定子埋极六相永磁同步电机的特性。通过对双定子嵌极式六相永磁同步电机和单定子单转子表面贴装式永磁同步电机两种不同电机拓扑结构的对比分析,说明了所提电机的性能优势。此外,为了优化设计所提出的电机,还提出了一种设计方法。对于上述应用,电机应保持高扭矩密度(HTD)和高可靠性。为此,在转子部分引入了一种新型的h型磁通屏障,满足了高温放电的要求。此外,两组定子绕组的可用性提高了电机的性能效率,保证了电机具有更显著的容错能力。对于性能评价,选择有限元法分析,因为它给出了适当和精确的结果。从上述分析可以看出,HTD和所提出的电机的动态性能优于上述常规电机。
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来源期刊
CiteScore
5.80
自引率
4.30%
发文量
18
审稿时长
29 weeks
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