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Air-Gap Flux Density Characteristics of Salient Pole Synchronous Permanent-Magnet Machines

机译:凸极同步永磁电机的气隙磁通密度特性

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摘要

The detailed knowledge of the field distribution in the air gap is of main importance for predicting and optimizing the performance of electric machines. In this paper, the air-gap flux density of a salient pole permanent-magnet (PM) synchronous machines is determined and investigated using a new analytical model. The stator slotting and rotor saliency effect, and also the air-gap MMF harmonics are considered. Different no-load and under load simulations are performed to show the permeance effect (rotor saliency and stator slotting) on the air-gap flux density characteristics of this type of machine. The simulations results show that as results of the permeance harmonics additional harmonics are induced on the air-gap flux density and these harmonics are very sensitive on the rotor pole shape parameters. Furthermore, the time domain analysis shows also that the permeance harmonics leads to the fluctuation of the resulting air-gap flux density harmonics with the time.
机译:气隙中场分布的详细知识对于预测和优化电机性能至关重要。本文确定了凸极永磁同步电机的气隙磁通密度,并使用新的解析模型对其进行了研究。考虑了定子开槽和转子的显着性效应以及气隙MMF谐波。进行了不同的空载和欠载模拟,以显示磁导率效应(转子凸度和定子开槽)对此类机器的气隙磁通密度特性的影响。仿真结果表明,作为磁导谐波的结果,在气隙磁通密度上会引起其他谐波,这些谐波对转子磁极形状参数非常敏感。此外,时域分析还表明,磁导谐波会导致所产生的气隙磁通密度谐波随时间波动。

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