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Winding Inductances of an Interior Permanent Magnet (IPM) Machine With Fractional Slot Concentrated Winding

机译:带有分数槽集中绕组的内部永磁体(IPM)电机的绕组电感

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摘要

This paper investigates inductance characteristics of a novel 14 pole/18 slot, fractional-slot concentrated-winding (FSCW) IPM machine. The variations of the self and mutual inductances were calculated analytically and also obtained from the finite element model. These results were compared with experimentally measured values of the self and mutual inductances of the prototype machine. Study of the inductance characteristics reveals that both self and mutual inductances vary with rotor positions nonsinusoidally. Presence of harmonics in the magnetomotive force (MMF) is responsible for this nonsinusoidal variation of inductances. The conventional distributed winding machine does not have these harmonics. This paper analyses the contribution of these harmonics in the $L_{d}$ and $L_{q}$ parameters in a $dq$-model of the prototype FSCW machine constructed. The self and mutual inductances were represented by a Fourier series in the inductance matrix of the machine for $dq$-transformation. It was seen that the difference between $d$- and $q$-axis inductance is mainly contributed by the harmonic terms of the mutual inductance.
机译:本文研究了新型14极/ 18槽,分数槽集中绕组(FSCW)IPM机的电感特性。通过分析计算自感和互感的变化,也可以从有限元模型中获得。将这些结果与原型机的自感和互感的实验测量值进行了比较。对电感特性的研究表明,自感和互感都随转子位置呈非正弦变化。磁通势(MMF)中存在谐波是电感的这种非正弦变化的原因。常规的分布式绕线机不具有这些谐波。本文分析了原型FSCW机器的$ dq $模型中$ L_ {d} $和$ L_ {q} $参数中这些谐波的贡献。自感和互感由机器的电感矩阵中的傅立叶级数表示,用于进行$ dq $变换。可以看出,$ d $和$ q $轴电感之间的差异主要是由互感的谐波项引起的。

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