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Design and modeling of axial flux permanent magnet machine with yokeless and segment armature using magnetic equivalent circuit

机译:无磁轭分段电枢的轴向磁通永磁电机的设计与建模

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This paper presents a detailed magnetic equivalent circuit (MEC) method for predicting the torque performance of axial flux permanent magnet machines. The MEC model takes into account the magnetic saturation, armature reaction, leakage flux and the relative motion, provides a tradeoff between finite element method and analytical methods in terms of simulation times and accuracy. The investigated machine structure and feature are introduced, and then further analysis of the average torque and torque density are calculated with the proposed method and verified by 3D-FEM with a good agreement achieved. Sensitive parameters effects on the machine torque density are discussed, and finally an axial flux permanent magnet machine with yokeless and segment armature is optimally designed.
机译:本文提出了一种详细的磁等效电路(MEC)方法,用于预测轴向磁通量永磁电机的转矩性能。 MEC模型考虑了磁饱和,电枢反作用,漏磁通和相对运动,在仿真时间和精度方面提供了有限元方法和解析方法之间的权衡。介绍了所研究的机器结构和特征,然后使用所提出的方法对平均扭矩和扭矩密度进行了进一步分析,并通过3D-FEM进行了验证,并取得了良好的一致性。讨论了敏感参数对电机转矩密度的影响,最后对无磁轭和扇形电枢的轴向磁通永磁电机进行了优化设计。

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