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A Comparative Study Between Novel Witricity and Traditional Inductive Magnetic Coupling in Wireless Charging

机译:无线充电中新式与传统感应式磁耦合的比较研究

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摘要

A non-radiative energy transformer, commonly referred as Witricity and based on ‘strong coupling’ between two coils which are separated physically by medium-range distances, is proposed to realize efficient wireless energy transfer. The distance between the resonators can be larger than the characteristic sizes of each resonator. Non-radiative energy transfer between the first resonator and the second resonator is facilitated through the coupling of their resonant-field evanescent tails. The proposed system operates as traditional inductive magnetic coupling devices when the operating frequencies are not the resonant frequency. Corresponding finite element analysis (FEA) and experiments have been carried out to facilitate quantitative comparison. Compared with typical magnetic inductive coupling energy transmission devices, the efficiency of the proposed system is much higher. This investigation indicates that it is feasible to use wireless energy transfer technology to recharge batteries, particularly in implant devices.
机译:为了实现有效的无线能量传输,提出了一种非辐射式能量转换器,通常被称为Witricity,它基于两个线圈之间的“强耦合”,这些线圈在物理上被中等距离隔开。谐振器之间的距离可以大于每个谐振器的特征尺寸。第一谐振器和第二谐振器之间的无辐射能量转移通过其谐振场渐逝尾部的耦合得以促进。当工作频率不是谐振频率时,建议的系统作为传统的感应磁耦合设备工作。进行了相应的有限元分析(FEA)和实验以促进定量比较。与典型的磁感应耦合能量传输装置相比,该系统的效率要高得多。这项研究表明,使用无线能量传输技术为电池充电是可行的,尤其是在植入设备中。

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