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Near field wireless power transfer using curved relay resonators for extended transfer distance

机译:使用弯曲中继谐振器的近场无线功率传输可延长传输距离

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摘要

This paper investigates the performance of a near field wireless power transfer system that uses curved relay resonator to extend transfer distance. Near field wireless power transfer operates based on the near-field electromagnetic coupling of coils. Such a system can transfer energy over a relatively short distance which is of the same order of dimensions of the coupled coils. The energy transfer distance can be increased using flat relay resonators. Recent developments in printing electronics and e-textiles have seen increasing demand of embedding electronics into fabrics. Near field wireless power transfer is one of the most promising methods to power electronics on fabrics. The concept can be applied to body-worn textiles by, for example, integrating a transmitter coil into upholstery, and a flexible receiver coil into garments. Flexible textile coils take on the shape of the supporting materials such as garments, and therefore curved resonator and receiver coils are investigated in this work. Experimental results showed that using curved relay resonator can effectively extend the wireless power transfer distance. However, as the curvature of the coil increases, the performance of the wireless power transfer, especially the maximum received power, deteriorates.
机译:本文研究了使用弯曲中继谐振器来扩展传输距离的近场无线电力传输系统的性能。近场无线电力传输基于线圈的近场电磁耦合进行操作。这样的系统可以在相对短的距离上传递能量,该距离的大小与耦合线圈的尺寸相同。使用扁平继电器谐振器可以增加能量传输距离。印刷电子和电子纺织的最新发展已经看到了将电子嵌入到织物中的需求不断增加。近场无线功率传输是在结构上为电子设备供电的最有前途的方法之一。例如,可以通过将发射器线圈集成到室内装潢中,将柔性接收器线圈集成到服装中,将该概念应用于人体穿戴的纺织品。柔性纺织线圈具有支撑材料(例如衣服)的形状,因此在这项工作中研究了弯曲的谐振器和接收器线圈。实验结果表明,采用弧形中继谐振器可以有效地延长无线电力的传输距离。但是,随着线圈曲率的增加,无线电力传输的性能(尤其是最大接收功率)会下降。

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