不同电机集中绕组及定子铁心磁通障碍分析

G. Dajaku, D. Gerling
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引用次数: 21

摘要

在定子轭或齿区设置磁通屏障的定子结构是一种有效的降低分槽、齿集中绕组电机次谐波的方法。本文在对不同类型的永磁机械进行分析时,考虑了这两种磁阻技术。研究了10极和14极永磁转子组合的12齿单层和双层集中绕组。对于所有的机器拓扑结构,采用新的定子设计来提高它们的性能和特性。详细研究了磁通障对电机主要参数的影响,如气隙磁通密度谐波、dq-电机参数、特性电流、电磁转矩等。与传统定子的对比表明,新型定子设计具有明显的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of different PM machines with concentrated windings and flux barriers in stator core
The new stator structure with magnetic flux-barriers in the stator yoke or tooth region represents an efficient method for reducing the sub-harmonics of electric machines with fractional slots, tooth-concentrated windings. In this paper the both flux-barriers techniques are considered during the analysis of different PM machines. The 12-teeth single-layer and double-layer concentrated winding in combination with a 10-poles and 14-poles PM rotor are investigated. For the all machine topologies the new stator design is used to improve their performances and characteristics. The flux-barrier effects on the main machine parameters, such as in the air-gap flux density harmonics, dq-machine parameters, characteristic currents, electromagnetic torque, and so on, are studied carefully. Comparisons performed with the analogous conventional machines (with conventional stator) show that, the new stator design offers significant advantages.
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