Design considerations and parameter optimization of stator wound field synchronous machines based on magnetic the gear effect

S. Jia, R. Qu, Jian Li
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引用次数: 14

Abstract

Stator wound field synchronous machines (SWFSMs) are gaining more and more research and application interest recently due to the absence of expensive rare earth magnet materials. These machines are characterized by a doubly salient structure, and both the DC field winding and the three phase armature windings are located in the stator. In this paper, taking the basic structure of stator DC excited vernier reluctance machine, which is one type of SWFSM, the design of SWFSMs are studied in detail semi-analytically, by finite element analysis (FEA), and also validated by experiment. First, the effects of stator/rotor slot combinations on performances, including cogging torque, torque and torque ripple, voltage fluctuation of the DC winding are analyzed and compared. Then, the back-EMF, torque and power factor expressions in terms of the geometrical variables are proposed. Also, a 12-stator-slot, 11-rotor-slot machine as an example, the design parameters, including the split ratio, the air gap length, the proportion of the armature and field coil turns in one stator slot, and the stator/rotor tooth arc combination are optimized. The optimization results show that these design parameters have a various influence on electromagnetic performance, and the designers should select the design parameters comprehensively.
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基于磁齿轮效应的定子绕线磁场同步电机的设计考虑及参数优化
由于缺乏昂贵的稀土磁体材料,定子绕线磁场同步电机(SWFSMs)近年来得到越来越多的研究和应用兴趣。这些电机的特点是双凸极结构,直流磁场绕组和三相电枢绕组都位于定子内。本文以一种定子直流电励磁游标磁阻电机的基本结构为基础,采用有限元分析方法对定子直流励磁游标磁阻电机的设计进行了详细的半解析研究,并进行了实验验证。首先,分析比较了定子/转子槽组合对直流绕组齿槽转矩、转矩和转矩脉动、电压波动等性能的影响。然后,提出了基于几何变量的反电动势、转矩和功率因数表达式。并以12定子槽、11转子槽电机为例,优化了定子槽的劈裂比、气隙长度、一个定子槽内电枢匝数与场线圈匝数比例、定子/转子齿弧组合等设计参数。优化结果表明,这些设计参数对电磁性能的影响是多方面的,设计人员应综合选择设计参数。
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