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Analytical Computation of End-Coil Leakage Inductance of Round-Rotor Synchronous Machines Field Winding

机译:圆转子同步电机励磁绕组末端线圈漏感的解析计算

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摘要

The computation of end-coil leakage inductances of electric machines is a challenging task due to the complicated leakage flux 3-D distribution in the winding overhang region. In this paper, the problem of computing the field-circuit leakage inductance of round-rotor synchronous machines is addressed. The proposed method is fully analytical and descends from the symbolical solution of Neumann integrals applied to the computation of self-inductance and mutual inductance combined with the method of mirror images to account for core effects. With respect to existing analytical approaches, the methodology requires neither numerical integral solutions nor discretizing the end-coil geometry into small straight elements. The accuracy of the proposed technique for computing the mutual inductance between two single-end turns is assessed against measurements on a dedicated experimental setup. The extension of the method to the computation of the entire field-circuit end-coil leakage inductance is assessed by comparing with the 3-D finite-element analysis.
机译:由于绕组悬垂区域中的复杂漏磁通量3-D分布,电机端线圈漏电感的计算是一项艰巨的任务。本文解决了圆转子同步电机励磁回路漏感的计算问题。所提出的方法是完全解析的,并且源于用于计算自感和互感的Neumann积分的符号解,并结合镜像方法来解决核心效应。关于现有的分析方法,该方法既不需要数值积分解,也不需要将末端线圈的几何形状离散成小的直单元。针对专用实验装置上的测量,评估了所提出的用于计算两个单端匝之间的互感的技术的准确性。通过与3-D有限元分析进行比较,评估了该方法在整个现场电路端线圈漏感计算中的扩展性。

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