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Analytical electromagnetic torque estimation of an axial flux permanent magnet machine under saturation

机译:饱和状态下轴向磁通量永磁电机的解析电磁转矩估计

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This paper presents a reasonably accurate analytical method to size and to design a single rotor single stator Axial Flux Permanent Magnet machine under iron circuit saturation. This approach allows obtaining the electromagnetic torque for a given value of tangential stress and outer diameter for the optimal diameter ratio, but can be used for any other diameter ratio. Analytical approach, avoiding numerical solutions, allows one to achieve the main dimensions of the machine in a much faster manner. By the introduction of a stator leakage flux factor and a saturation torque factor into the model a more precise estimation of the torque capability is obtained. The results show that the leakage flux and the iron saturations significantly reduce the torque developed especially, if high levels of tangential stress are reached. Finite element analysis was carried out to validate the proposed method showing acceptable results on the analytical predictions.
机译:本文提出了一种合理准确的分析方法,可以在铁电路饱和的情况下确定尺寸并设计单转子单定子轴向磁通永磁电机。这种方法可以针对给定的切向应力和外径为最佳直径比获得电磁转矩,但也可以将其用于任何其他直径比。分析方法避免了数值解,因此可以更快地获得机器的主要尺寸。通过在模型中引入定子漏磁通因数和饱和扭矩因数,可以更精确地估算扭矩能力。结果表明,如果达到较高的切向应力水平,则漏磁通和铁饱和度会显着降低所产生的扭矩。进行了有限元分析,以验证所提出的方法在分析预测上显示出可接受的结果。

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