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Modeling of Different Winding Configurations for Fault-Tolerant Permanent Magnet Machines to Restrain Interturn Short-Circuit Current

机译:容错永磁电机不同绕组配置的建模,以抑制匝间短路电流

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摘要

This paper describes an analytical model to evaluate the short-circuit (SC) current resulting from an interturn fault by computing the self and mutual inductances under SC fault condition. Two different concentrated winding configurations, i.e., horizontally and vertically placed conductors in the slot of a fault-tolerant permanent magnet synchronous machine are considered. By computing the associated slot-leakage and air-gap fluxes, the self inductance of both healthy and faulty windings as well as the mutual inductance between them, the SC current can be determined for any position and number of shorted turns. The proposed model is verified with finite-element analysis and validated experimentally. It will be shown that the magnitude of an interturn SC current depends on both the number of shorted turns and their position in the slot. The measured SC inductance shows that a new proposed concentrated vertical winding configuration can inherently limit the SC current and reduce its dependence on the position within the slot.
机译:本文介绍了一种分析模型,用于通过计算SC故障条件下的自感和互感来评估由匝间故障引起的短路(SC)电流。考虑了两种不同的集中绕组结构,即在容错永磁同步电机的槽中水平和垂直放置的导体。通过计算相关的缝隙漏磁和气隙磁通,正常绕组和故障绕组的自感以及它们之间的互感,可以确定短路电流的任意位置和数量的SC电流。提出的模型经过有限元分析验证,并通过实验验证。将显示,匝间SC电流的大小取决于短路匝数及其在槽中的位置。测量到的SC电感表明,新提出的集中式垂直绕组配置可以固有地限制SC电流,并降低其对槽内位置的依赖性。

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