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Analytical model of open-circuit characteristics of two-layer spoke-type ferrite interior permanent magnet machines

机译:两层辐条式铁氧体内部永磁电机的开路特性分析模型

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Two Dimensional (2D) analytical methods are developed based on effective yet simple magnetic circuit models for the two-layer spoke type ferrite interior permanent magnet (IPM) configured machines. Due to the low residual flux density of ferrite magnets, conventional spoke type machines with flux-focusing structure are usually proposed to increase flux density. However, the spoke type machine contains considerable amount of harmonic contents. Thus multi-layer configurations are used to improve the flux distribution in the airgap and back EMF. The analytical model for a spoke type configuration is firstly developed, and the model for the two-layer configuration is established accordingly. To improve the accuracy of the models, higher order harmonics are also included. Then, the influence of the size and location of permanent magnet (PM) poles are investigated. Finally, the models are validated by both finite element analysis (FEA) simulations and experimentations.
机译:基于有效而简单的磁路模型,针对配置了两层辐条型铁氧体内部永磁体(IPM)的机器,开发了二维(2D)分析方法。由于铁氧体磁体的残留磁通密度低,通常建议使用具有磁通聚焦结构的传统辐条型机器来增加磁通密度。但是,辐条式机器包含相当数量的谐波含量。因此,多层结构用于改善气隙和反电动势中的通量分布。首先建立了辐条型构型的分析模型,并相应地建立了两层构型的模型。为了提高模型的准确性,还包括了高次谐波。然后,研究了永磁体(PM)磁极的尺寸和位置的影响。最后,通过有限元分析(FEA)模拟和实验对模型进行验证。

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