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Numerical Analysis on Transmission Efficiency of Evanescent Resonant Coupling Wireless Power Transfer System

机译:E逝波共振耦合无线电力传输系统传输效率的数值分析

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摘要

A practical wireless power transmission system consisting of a large rectangular wire loop and a small square wire loop with a parasitic square helical coil is proposed for use as an efficient evanescent resonant coupling wireless power transmission system in an indoor environment. In addition, a full wave-based numerical analysis on the resonant frequency of and the power transmission efficiency of wireless power transmission system are performed in this paper. The effects of the following on power transmission efficiency and the resonant frequency are numerically investigated: The load of the receiving element and the presence of non-resonant objects such as a conducting box or human body. The numerical results show that a power transmission efficiency of nearly 50% can be achieved when the proposed system is used to charge only one user with the optimized load. The results also show that power transmission efficiency is reduced significantly when a human body is in very close proximity to the receiving element. This reduction in efficiency can be alleviated significantly, however, if the relative distance between the receiving element and the human body is greater than 0.5 m or $0.03lambda$ at a resonant frequency of 19.22 MHz.
机译:提出了一种实用的无线电力传输系统,该系统由大的矩形线环和带有寄生方形螺旋线圈的小正方形线环组成,用作室内环境中的高效e逝共振耦合无线电力传输系统。此外,本文对无线电力传输系统的谐振频率和功率传输效率进行了基于全波的数值分析。数值研究了以下对功率传输效率和谐振频率的影响:接收元件的负载和非谐振物体(例如导电盒或人体)的存在。数值结果表明,当所建议的系统仅用一个优化的负载向一个用户充电时,可以实现近50%的电力传输效率。结果还表明,当人体非常靠近接收元件时,功率传输效率会大大降低。但是,如果在19.22 MHz的谐振频率下接收元件与人体之间的相对距离大于0.5 m或0.03λ,则可以大大缓解效率下降。

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