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Analytical Armature Reaction Field Prediction in Field-Excited Flux-Switching Machines Using an Exact Relative Permeance Function

机译:使用精确相对磁导函数的励磁磁通转换机中的分析电枢反应场预测

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摘要

In this paper, an analytical approach for the prediction of the armature reaction field of field-excited flux-switching (FE-FS) machines is presented. The analytical method is based on the magnetomotive force (MMF)-permeance theory. The doubly-salient air-gap permeance, developed here, is derived from an exact solution of the slot permeance. Indeed, the relative slot permeance is obtained by solving Maxwell's equations in a subdomain model and applying boundary and continuity conditions. In addition, during a no-load study, we found that, regarding the stator-rotor teeth combination, phase distributions were modified. Hence, in this paper, phase MMF distributions, for $q$ phases, several stator-rotor combinations and also phase winding distribution (single- or double-layers) are proposed. We compare extensively magnetic field distributions calculated by the analytical model with those obtained from finite-element analyses. Futhermore, the model is used to predict the machine inductances. Once again, FE results validate the analytical prediction, showing that the developed model can be advantageously used as a design tool of FE-FS machine.
机译:本文提出了一种分析方法,用于预测励磁磁通开关(FE-FS)电机的电枢反应场。该分析方法基于磁通势(MMF)-磁导率理论。在此开发的双凸型气隙磁导率是由缝隙磁导率的精确解得出的。实际上,通过在子域模型中求解麦克斯韦方程组并应用边界条件和连续性条件,可以获得相对的缝隙导磁率。此外,在空载研究中,我们发现,对于定子-转子齿组合,相位分布得到了修改。因此,在本文中,对于 $ q $ 相,几种定子-转子组合以及相绕组分布,其相MMF分布(单层或双层)的建议。我们将分析模型计算出的磁场分布与有限元分析得到的磁场分布进行了比较。此外,该模型用于预测电机电感。有限元结果再次验证了分析预测,表明所开发的模型可以有利地用作有限元分析仪的设计工具。

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