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Electromagnetic finite element design of axial flux permanent magnet machines for low speed applications

机译:低速应用中轴向磁通永磁电机的电磁有限元设计

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The higher torque to volume ratio of Axial Flux Permanent Magnet (AFPM) machines, when compared with their radial flux counterparts, is enhanced in multi pole design, making them suitable for low speed applications. This paper presents a comprehensive approach to the finite element-aided electromagnetic design of a double-sided AFPM machine with internal rotor. The Finite Element (FE) model is included in a coupled electromagnetic-thermal design procedure. Special attention is given to leakage fluxes, synchronous and armature reaction inductances and no-load electromotive force computation. The evaluation of the FE model routine of the design procedure is performed through experimental validation of a prototype machine.
机译:与径向磁通相比,轴向磁通永磁(AFPM)电机具有更高的转矩/体积比,在多极设计中得到了增强,使其适用于低速应用。本文提出了一种具有内转子的双面AFPM机的有限元辅助电磁设计的综合方法。有限元(FE)模型包含在电磁热耦合设计过程中。特别注意漏磁通,同步和电枢反应电感以及空载电动势的计算。设计过程的有限元模型例程的评估是通过对原型机的实验验证来进行的。

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