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Scaling Effect on Electromagnetic Performance of Surface-Mounted Permanent-Magnet Vernier Machine

机译:表面上安装永磁游标电磁性能的缩放效果

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This article investigates the impact of scaling on the electromagnetic performance of surface-mounted permanent-magnet Vernier (SPM-V) machines with a main focus on open-circuit induced Electro Motive Force (EMF). Three different power ratings, i.e., 3 kW, 500 kW, and 3 MW, have been chosen for this article. For each power rating, the SPM-V machines are analyzed for different slot/pole number combinations to compare their optimal performance with a conventional SPM machine. Step-by-step development of an analytical equation is presented for the prediction of induced EMF taking into account the interpole leakage of rotor permanent-magnets. 2-D finite-element analysis (FEA) has been used to validate the analytical equation across different power ratings. The analytical equation is thereafter utilized to study the influence of different geometric parameters on the performance of the SPM-V machines. It reveals that the back EMF and torque of SPM-V machines, for a given normalized pole pitch (rotor pole pitch to magnetic airgap length), are unaffected by the increase in airgap length due to scaling. However, the power factor of SPM-V, unlike the conventional SPM, reduces significantly with the increase in electrical loading due to the scaling effect. The analytical model for induced EMF and the 2-D FEA predicted results are validated by experiments using conventional SPM and SPM-V machine prototypes.
机译:本文调查了缩放对表面安装的永磁游标(SPM-V)机器电磁性能的影响,主要关注开路诱导的电极电力动力(EMF)。本文选择了三种不同的电力额定值,即3 kW,500 kW和3兆瓦。对于每个额定功率,分析SPM-V机器以进行不同的槽/极数组合,以将其与传统SPM机器的最佳性能进行比较。考虑到转子永磁体的跨杆泄漏,提出了用于预测诱导的EMF的分析方程的逐步开发。 2-D有限元分析(FEA)已被用于验证不同功率额定值的分析方程。此后,利用分析方程来研究不同几何参数对SPM-V机器性能的影响。它揭示了对给定归一化杆间距(转子极间距到磁性气隙长度)的SPM-V机器的后部EMF和扭矩,不受缩放引起的气隙长度的增加的影响。然而,与传统SPM不同,SPM-V的功率因数随着缩放效应而导致的电荷增加,显着减少了显着。使用传统SPM和SPM-V机原型的实验验证了诱导EMF和2-D FEA预测结果的分析模型。

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