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Comparative analysis of wave winding topologies and performance characteristics in ultra-thin printed circuit board axial-flux permanent magnet machine

机译:超薄印刷电路板轴向通量永磁机中波浪绕组拓扑和性能特性的比较分析

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摘要

Axial-flux permanent magnet synchronous machines (AF-PMSM) using printed circuit board (PCB) windings are attracting interest because of an increased demand for machines with thinner geometries. A critical element in designing these machines is the choice of its PCB winding which should ensure high-performance characteristics with an efficient use of the PCB surface. However, there is a gap in the knowledge regarding the performance of different PCB topologies. The research reported here is motivated by the need to compare common wave-type PCB windings stator topologies. Accordingly, overlapping parallel wave, non-overlapping radial wave and overlapping radial wave PCB winding topologies are assessed, using finite-element analysis, and compared based on their key performance characteristics such as the generated back-electromotive forces, inductances and electromagnetic torque. The PCB winding that provides the best torque production is then chosen and manufactured. Experimental tests on the prototyped PCB AF-PMSM provide validation.
机译:轴向磁通永磁同步机(AF-PMSM)使用印刷电路板(PCB)绕组吸引兴趣,因为对具有更薄的几何形状的机器需求增加。设计这些机器的临界元件是选择其PCB绕组,这应确保高性能特性,有效地使用PCB表面。然而,关于不同PCB拓扑性能的知识存在差距。这里报告的研究是通过比较公共波型PCB绕组定子拓扑的需要。因此,使用有限元分析评估重叠平行波,非重叠径向波和重叠的径向波PCB绕组拓扑,并基于它们的关键性能特征,例如产生的背部电动势,电感和电磁扭矩。然后选择和制造提供最佳扭矩产生的PCB绕组。原型PCB AF-PMSM的实验测试提供验证。

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