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Analytical modeling of eddy current losses in Axial Flux PMSM using resistance network

机译:使用电阻网络的轴向磁通PMSM涡流损耗分析模型

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This paper presents an analytical modeling of eddy current losses of an Axial Flux Permanent Magnet Synchronous Machine (AFPMSM) using coupled solution of Maxwell's equations and resistance network. The idea is based on calculating the flux density in an accurate way in the air gap area and on the magnet surface taking into account the effect of armature field and slotting effect. The resistance network for the magnet is then reconstructed by dividing it into a number of nodes and branches. The sources in the resistance network are based on the time derivative of the flux density on the permanent magnet (PM) surface. The field solution is analyzed in the frequency domain and the magnetic resistance network is solved for each frequency. Compared to the Finite Element Method (FEM), the analytical model has the advantage of flexibility in geometrical machine parameters, less CPU time, and accurate results.
机译:本文利用麦克斯韦方程组和电阻网络的耦合解给出了轴向磁通永磁同步电机(AFPMSM)涡流损耗的解析模型。这个想法是基于考虑到电枢磁场和开槽效应的情况下,在气隙区域和磁体表面上以精确的方式计算磁通密度的基础。然后,通过将磁体分为多个节点和分支来重建磁体的电阻网络。电阻网络中的源基于永磁体(PM)表面上磁通密度的时间导数。在频域中分析现场解决方案,并为每个频率求解磁阻网络。与有限元方法(FEM)相比,该分析模型的优势在于几何机器参数的灵活性,更少的CPU时间和准确的结果。

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