电磁线圈
定子
牵引电动机
磁铁
牵引(地质)
导线
电动机
功率密度
电气工程
计算机科学
工程类
汽车工程
功率(物理)
拓扑(电路)
机械工程
物理
材料科学
复合材料
量子力学
作者
Tianjie Zou,David Gerada,Antonino La Rocca,Mohsen Moslemin,Alasdair Cairns,Mengmeng Cui,Anuvav Bardalai,Fengyu Zhang,Chris Gerada
标识
DOI:10.1109/tte.2022.3149786
摘要
The rapidly increasing demand on power density levels of electric vehicle (EV) drive systems is pushing the boundaries of traction motor performance. Hairpin windings are becoming a popular option for EV motors due to their reduced DC losses and improved heat dissipation capability when compared to traditional random windings. In this paper, a comprehensive design approach of hairpin winding layouts is firstly presented. The flexibility and limitation of end-winding patterns is thoroughly investigated in terms of basic pin connections, special jumpers, transposition, parallel branches, terminal positions, phase shift, winding pitches as well as slot-pole combinations. To address the challenge of much reduced practical layout options with increased slot number per pole per phase, two novel hairpin winding designs are proposed. A 160kW, 18000rpm PM traction motor featuring the new winding layout with 54-slot, 6-pole is developed using a multidomain design platformwhich puts special focus on the conductor size optimization. The advantages of the designed motor are clearly revealed by comparison with the more traditional 48-slot, 8-pole counterpart. Finally, a corresponding stator prototype with the proposed hairpin winding is built to validate its manufacturability.
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