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Design Optimization of Coreless Axial-flux PM Machines with Litz Wire and PCB Stator Windings

机译:利兹线和印刷电路板定子绕组的无芯轴流永磁电机的设计优化

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Coreless axial-flux permanent-magnet (AFPM) machines may be attractive options for high-speed and high-power-density applications due to the elimination of core losses. In order to make full use of the advantages offered by these machines and avoid excessive eddy current losses in windings, advanced technologies for winding conductors need to be employed to suppress the eddy effect, such as the Litz wire and printed circuit board (PCB). In this paper, the best practices for designing Litz wire/PCB windings are discussed and a brief survey of state of the art PCB winding technology is provided. Three coreless AFPM machines are mainly considered. A design optimization procedure based on the multi-objective differential evolution algorithm and 3-dimensional (3D) finite element analysis (FEA) is proposed to take into account the ac winding losses of Litz wires and PCB traces in the machine design stage. Selected designs are being prototyped and will be tested with a customized test fixture.
机译:由于消除了铁芯损耗,无铁芯轴向磁通永磁体(AFPM)机器对于高速和高功率密度应用可能是有吸引力的选择。为了充分利用这些机器提供的优势并避免绕组中的涡流损失过多,需要采用先进的绕组导体技术来抑制涡流效应,例如利兹线和印刷电路板(PCB)。在本文中,讨论了设计Litz导线/ PCB绕组的最佳实践,并简要概述了最新的PCB绕组技术。主要考虑了三台无芯AFPM机器。提出了一种基于多目标差分演化算法和3维(3D)有限元分析(FEA)的设计优化程序,以在机器设计阶段考虑到Litz线和PCB走线的交流绕组损耗。选定的设计正在制作原型,并将使用定制的测试夹具进行测试。

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