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Integer-slot vs fractional-slot concentrated-winding axial-flux permanent magnet machines: Comparative design, FEA and experimental tests

机译:整数槽与分数槽集中绕组轴向磁通永磁电机:对比设计,有限元分析和实验测试

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In slotted axial-flux permanent magnet machines two possible concentrated-winding arrangements can be used: integer-slot and fractional-slot. The former type, i.e. windings with a number of slots/pole/phase equal to one, has long been a preferred choice with machine designers due to its simple layout. On the other hand, fractional-slot concentrated-winding machines have been the focus of a significant amount of international research in the past decade. This paper presents an original comparison between two 10 kW axial-flux permanent magnet machine prototypes with concentrated-windings: a 20 pole, 60 slot integer-slot concentrated-winding machine and a 20 pole, 24 slot fractional-slot concentrated-winding machine. The design of both machines is described, highlighting the constraints that have been set to allow a fair comparison between them. Static and time-stepped finite element analysis results are presented. Comparative no-load and load tests are performed on full scale prototypes and the results are reported. Finally, conclusions are made regarding the performances and required trade-offs for both machines.
机译:在开槽轴向磁通永磁机中,可以使用两种可能的浓缩绕组布置:整数槽和分数槽。前一种类型,即带有多个槽/杆/相位等于1的绕组,由于其简单的布局,具有机器设计者的首选。另一方面,分数槽浓缩机在过去十年中一直是大量国际研究的重点。本文介绍了两种10千瓦轴通磁通永磁机原型的原始比较,具有浓缩绕组:20极,60槽整数槽集中绕线机和20极,24个分数槽集中绕线机。描述了两台机器的设计,突出显示已设置的约束,以允许它们之间的公平比较。呈现了静态和时间阶梯式有限元分析结果。对比较的空载和负载测试是在全尺度原型上进行的,并报告结果。最后,结论是关于两种机器的表演和所需权衡的结论。

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