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2d analytical solution of magnetic field in axial flux permanent magnet machines for the inter-turn short-circuit stator fault case

机译:匝间短路定子故障情况下轴向磁通永磁电机磁场的二维解析解

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摘要

This paper presents an analytical solution for prediction of the magnetic field in slotted permanent magnet axial flux synchronous machines in the case of inter-turn short-circuit stator fault. The technique is based on 2-D solution of the Maxwell's equations using the separation of variables method. The magnetic field expressions are developed in slots regions, magnetic airgap region, slot opening region and permanent magnet region leading to an exact calculation of the slot effects on the airgap magnetic quantities. Inter-turn short-circuit fault is then taken into account in the stator phases electrical equations. Simulation results illustrating the impact of the stator winding faults are presented and their comparison with those issued from coupled magnetic circuit based model proof the pertinence of the proposed approach.
机译:本文提出了一种在匝间短路定子故障的情况下预测开槽永磁轴向磁通同步电机中磁场的解析解决方案。该技术基于使用变量分离法的麦克斯韦方程组的二维解。在缝隙区域,磁性气隙区域,缝隙开口区域和永磁体区域中产生了磁场表达式,从而可以精确计算缝隙对气隙磁通量的影响。然后在定子相电气方程中考虑匝间短路故障。给出了说明定子绕组故障影响的仿真结果,并将其与基于耦合磁路的模型所发出的仿真结果进行了比较,证明了该方法的针对性。

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