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首页> 外文期刊>The Journal of Engineering >Frequency and operational characteristics of an ultra-lightweight machine converting energy by magnetic resonance coupling
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Frequency and operational characteristics of an ultra-lightweight machine converting energy by magnetic resonance coupling

机译:超轻型机器通过磁共振耦合转换能量的频率和操作特性

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Electric aircrafts capable of moving in three dimensions cause creation of new industries and applications in society. Also, electric aircrafts operate on minimal energy with low emissions. However, an electric aircraft must be ultra-lightweight. To produce an ultra-lightweight machine for electric aircrafts, the authors proposed a machine in which electrical energy is converted between the stator and rotor through magnetic resonance coupling (MRC). This action causes electromagnetic resonance between the multiphase windings of the stator and rotor. Electromagnetic resonance coupling technology allows electrical machines to convert energy without a magnetic core, thereby allowing the production of ultra-lightweight machines. In this study, authors describe a machine with three-phase windings based on MRC and discuss its operating principles and the basic characteristics induced by MRC. A model of this MRC machine was subjected to magnetic analyses to assess its rotational energy conversion in a rotating machine and to understand its basic characteristics. Authors’ results confirmed that MRC machines without a magnetic core could convert magnetic energy between the stator and rotor and produce sufficient starting torque and power at a power factor of 1.0. Furthermore, the machine was highly efficient, and its torque increased with resonant frequency.
机译:能够在三个维度上移动的电动飞机在社会中创造了新的产业和应用。而且,电动飞机以最小的能量运行并具有低排放。但是,电动飞机必须超轻。为了生产用于电动飞机的超轻型机器,作者提出了一种通过磁共振耦合(MRC)在定子和转子之间转换电能的机器。该动作在定子和转子的多相绕组之间引起电磁谐振。电磁共振耦合技术使电机无需磁心即可转换能量,从而可以生产超轻型电机。在这项研究中,作者描述了一种基于MRC的三相绕组电机,并讨论了其工作原理和MRC感应的基本特性。对该MRC机器的模型进行了磁分析,以评估其在旋转机器中的旋转能量转换并了解其基本特性。作者的结果证实,没有磁芯的MRC机器可以在定子和转子之间转换磁能,并以1.0的功率因数产生足够的启动扭矩和功率。此外,该机器非常高效,并且其扭矩随共振频率增加。

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