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Starting Characteristics of Axial and Radial Type Ultra-Lightweight Motors Based on Magnetic Resonance Coupling

机译:基于磁共振耦合的轴向和径向型超轻型电动机的启动特性

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In this paper, we propose a novel machine that transfers electrical energy between the stator and the rotor via magnetic resonance coupling (MRC). As the energy conversion in an MRC does not require any magnetic core, its mechanism realizes an ultra-lightweight motor for potential use in an energy-efficient electric aircraft. The MRC-based motor, its design, operating principles, starting characteristics, and resonance conditions are discussed in detail herein. Through magnetic analysis, we clarify the essential characteristics of the proposed MRC motor and verify the resonance conditions calculated from the equivalent circuit. Our results confirm that the proposed MRC motor transfers electrical energy between the stator and the rotor, thereby generating torque. We further verify that the resonance conditions derived from the equivalent circuit achieve a resonant state.
机译:在本文中,我们提出了一种新颖的机器,该机器通过磁共振耦合(MRC)在定子和转子之间传递电能。由于MRC中的能量转换不需要任何磁芯,因此其机制实现了超轻型电动机,可用于节能型电动飞机。本文将详细讨论基于MRC的电动机,其设计,工作原理,启动特性和共振条件。通过磁性分析,我们弄清了所提出的MRC电动机的基本特性,并验证了根据等效电路计算出的谐振条件。我们的结果证实,提出的MRC电动机在定子和转子之间传递电能,从而产生转矩。我们进一步验证了从等效电路得出的谐振条件达到了谐振状态。

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