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Characteristic analysis of permanent magnet synchronous generators with slotless stator structure considering magnetic/mechanical air-gap using semi-3D analytical method

机译:基于磁/机械气隙的无槽定子结构永磁同步发电机特性的半三维分析

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In this paper, we analyze a permanent magnet synchronous generator (PMSG) with a slotless stator considering the magnetic and mechanical air-gap using the semi-3D analytical method. Characteristic analyses of the PMSG are various methods, such as numerical method and analytical method. The three-dimensional (3D) analysis method is among the various methods, but it requires a long analysis time complex mathematics. On the other hand, the semi-3D analytical method with the numerical method has advantages can be simple analyzed. The slotless stator structure radial flux PMSG has a consistent magnetic energy in its air-gap. Its cogging torque does not generate, unlike the slotted stator structure. However, the slotless structure-type has a relatively larger magnetic air-gap than the slotted structure. Therefore, during the analysis of the open circuit field (OCF) and the armature reaction field (ARF), we consider the magnetic and mechanical air-gap to ensure accurate analysis. In addition, owing to the large air-gap, the analysis should include the variation of the flux density in the z-direction. The correction function can be defined such that it factors the flux density in the z-direction. In addition, the unknown parameter in the correction function can be obtained using the 3D finite element method (3D FEM) according to the magnetic air-gap. The resulting flux density in the air-gap can be obtained using the semi-3D analytical method. Therefore, the back-EMF can be obtained by performing an accurate analysis, and we confirmed that the experimental results are in good agreement with the 3D analysis results. In the full manuscript, we will present the mathematical model and physical phenomenon used to aid the related research and industrial applications.
机译:在本文中,我们使用半3D分析方法分析了考虑了磁气隙和机械气隙的无槽定子永磁同步发电机(PMSG)。 PMSG的特性分析有多种方法,例如数值方法和分析方法。三维(3D)分析方法属于多种方法,但是它需要较长的分析时间才能完成复杂的数学运算。另一方面,半三维分析方法与数值方法相比具有优势,可以简单地进行分析。无槽定子结构的径向磁通PMSG在其气隙中具有恒定的磁能。与开槽定子结构不同,不会产生齿槽转矩。然而,无缝隙结构类型具有比缝隙结构更大的磁性气隙。因此,在分析开路场(OCF)和电枢​​反应场(ARF)时,我们考虑了磁气隙和机械气隙以确保准确的分析。此外,由于较大的气隙,分析应包括z方向磁通量密度的变化。可以定义校正函数,以使其在z方向上影响通量密度。另外,可以根据磁性气隙使用3D有限元方法(3D FEM)获得校正函数中的未知参数。可以使用半3D分析方法获得气隙中的最终通量密度。因此,可以通过执行精确的分析来获得反电动势,并且我们确认实验结果与3D分析结果非常吻合。在全文中,我们将介绍用于辅助相关研究和工业应用的数学模型和物理现象。

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