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首页> 外文期刊>Electric Power Applications, IET >Computationally efficient 3D analytical magnet loss prediction in surface mounted permanent magnet machines
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Computationally efficient 3D analytical magnet loss prediction in surface mounted permanent magnet machines

机译:表面安装式永磁电机中的计算有效3D分析磁体损耗预测

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摘要

This study proposes a computationally efficient analytical method, for accurate prediction of three-dimensional (3D) eddy current loss in the rotor magnets of surface mounted permanent magnet (SPM) machines considering slotting effect. Subdomain model incorporating stator tooth tips is employed to generate the information on radial and tangential time-derivatives of 2D magnetic field (eddy current sources) within the magnet. The distribution of the eddy current sources in 3D is established for the magnets by applying the eddy current boundary conditions and the Coulomb gauge imposed on the current vector potential. The 3D eddy current distributions in magnets are derived analytically by employing the method of variable separation and the total eddy current loss in the magnets are subsequently established. The method is validated by 3D time-stepped finite element analysis for 18-slot, 8-pole and 12-slot, 8-pole permanent magnet machines. The eddy current loss variations in the rotor magnets with axial and circumferential number of segmentations are studied. The reduction of magnet eddy current loss is investigated with respect to harmonic wavelength of the source components to suggest a suitable segmentation for the rotor magnets in SPM machines.
机译:这项研究提出了一种计算有效的分析方法,用于精确预测考虑开槽效应的表面安装式永磁(SPM)电机的转子磁体中的三维(3D)涡流损耗。采用包含定子齿顶的子域模型来生成有关磁体内二维磁场(涡流源)的径向和切向时间导数的信息。通过应用涡流边界条件和施加在电流矢量电势上的库仑规,可以为磁体确定3D涡流源的分布。磁铁中的3D涡流分布通过采用可变分离的方法进行分析得出,随后确定了磁铁中的总涡流损耗。该方法通过1​​8槽,8极和12槽,8极永磁电机的3D时步有限元分析进行了验证。研究了转子磁体中涡流损耗随轴向和周向分段数的变化。针对源组件的谐波波长,研究了磁涡流损耗的减少,以提出适用于SPM机器中转子磁体的分段方法。

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