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Investigation of High-Efficiency Wireless Power Transfer Criteria of Resonantly-Coupled Loops and Dipoles through Analysis of the Figure of Merit

机译:通过品质因数分析研究谐振环和偶极子的高效无线电力传输准则

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The efficiency of a Wireless Power Transfer (WPT) system is greatly dependent on both the geometry and operating frequency of the transmitting and receiving structures. By using Coupled Mode Theory (CMT), the figure of merit is calculated for resonantly-coupled loop and dipole systems. An in-depth analysis of the figure of merit is performed with respect to the key geometric parameters of the loops and dipoles, along with the resonant frequency, in order to identify the key relationships leading to high-efficiency WPT. For systems consisting of two identical single-turn loops, it is shown that the choice of both the loop radius and resonant frequency are essential in achieving high-efficiency WPT. For the dipole geometries studied, it is shown that the choice of length is largely irrelevant and that as a result of their capacitive nature, low-MHz frequency dipoles are able to produce significantly higher figures of merit than those of the loops considered. The results of the figure of merit analysis are used to propose and subsequently compare two mid-range loop and dipole WPT systems of equal size and operating frequency, where it is shown that the dipole system is able to achieve higher efficiencies than the loop system of the distance range examined.
机译:无线电力传输(WPT)系统的效率在很大程度上取决于发射和接收结构的几何形状和工作频率。通过使用耦合模式理论(CMT),可以计算出谐振耦合环路和偶极系统的品质因数。针对环路和偶极子的关键几何参数以及谐振频率对品质因数进行了深入分析,以便确定导致高效WPT的关键关系。对于由两个相同的单匝环路组成的系统来说,环路半径和谐振频率的选择对于实现高效WPT至关重要。对于所研究的偶极子几何形状,表明长度的选择在很大程度上无关紧要,并且由于其电容性,低MHz频率偶极子能够产生比所考虑的环路更高的品质因数。品质因数分析的结果用于提出并随后比较两个具有相同大小和工作频率的中距离环路和偶极WPT系统,其中表明,偶极系统能够实现比环系统的更高的效率。检查的距离范围。

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