Surface-Mounted V-shapes PM assisted-Synchronous Reluctance Motor for Light Electric Vehicles

M. Muteba
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Abstract

This paper focuses on the analysis of a surface-mounted V-shape permanent magnet assisted-synchronous reluctance motor (SVSPMa-SynRM) for light electric vehicles (LEVs) traction applications. For federal urban driving schedule (FUDS), most ELVs require traction motors that operates with smooth torque that has less ripple contents to contain noise and vibration. The proposed permanent magnet assisted-synchronous reluctance motor (PMa-SynRM) has a rotor with V-shape lamination cut-offs on the q-axis in the axial direction. The V-shape lamination cut-offs accommodate pieces of NdFeB-37 rare permanent magnet (PM) to obtain better electromotive force and less ripple torque. The proposed SVSPMa-SynRM is designed and modelled using 3-D finite-element method (FEM). The 3-D finite element analysis (FEA) results are compared to the results of other five different models. The combination of good torque performance and reduction of NdFeB-37 rare permanent magnet is tremendously achieved by the proposed motor as compared to other PM assisted-synchronous reluctance motors analysed in this paper.
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轻型电动车表面贴装v形永磁辅助同步磁阻电机
本文重点分析了一种用于轻型电动汽车牵引的表面贴装v型永磁辅助同步磁阻电机(SVSPMa-SynRM)。对于联邦城市驾驶计划(FUDS),大多数elv需要牵引电机以平滑扭矩运行,波纹内容较少,以抑制噪音和振动。所提出的永磁辅助同步磁阻电机(PMa-SynRM)转子在轴向q轴上具有v形层压截止。v形层压切断器可容纳NdFeB-37稀有永磁体(PM)片,以获得更好的电动势和更小的纹波转矩。采用三维有限元法对所提出的SVSPMa-SynRM进行了设计和建模。将三维有限元分析结果与其他五种不同模型的结果进行了比较。与本文分析的其他永磁辅助同步磁阻电机相比,所提出的电机具有良好的转矩性能和减少NdFeB-37稀有永磁体的效果。
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