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首页> 外文期刊>Magnetics, IEEE Transactions on >Improved Analytical Model for Predicting the Magnetic Field Distribution in High-Speed Slotless Permanent-Magnet Machines
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Improved Analytical Model for Predicting the Magnetic Field Distribution in High-Speed Slotless Permanent-Magnet Machines

机译:改进的分析模型,用于预测高速无槽永磁电机的磁场分布

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摘要

This paper presents a general analytical 2-D model for computing the magnetic field distribution in high-speed slotless surface-mounted permanent-magnet machines. This model is suitable for machines equipped with soft magnetic composite or laminated steel stators and with retaining sleeves that can be conductive or non-conductive and magnetic or non-magnetic. The analytical model considers the contribution of magnetic fields produced by the rotor magnets, stator windings currents, and eddy currents induced in the conductive regions in the stator and rotor. The computation accounts for the relative recoil permeabilities of the magnets, retaining sleeve, and stator core material. The analytical model is validated by 2-D finite element analysis and used to compute and analyze the electromagnetic torque components due to the different magnetic field sources interactions.
机译:本文提出了一种通用的二维分析模型,用于计算高速无槽表面安装式永磁电机的磁场分布。该型号适用于配备有软磁复合材料或叠层钢定子以及带有导电或不导电以及磁性或非磁性保持架的机器。分析模型考虑了由转子磁体产生的磁场,定子绕组电流以及在定子和转子的导电区域中感应出的涡流的贡献。该计算考虑了磁体,固定套和定子铁心材料的相对反冲磁导率。该分析模型通过二维有限元分析进行了验证,并用于计算和分析由于不同磁场源相互作用而产生的电磁转矩分量。

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