Coil design for 100 KHz and 6.78 MHz WPT system :Litz and solid wires and winding methods

Jonghyun Cho, Jingdong Sun, Heegon Kim, J. Fan, Y. Lu, Siming Pan
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引用次数: 12

Abstract

Coil design is one of the critical part to get high power transfer efficiency for wireless power transfer (WPT) system. There exists coil figure of merit (FOM), which is used to evaluate coil design in the aspect of WPT system efficiency. WPT coil FOM is function of coil quality factor (Q-factor) and coupling coefficient, k and higher Q and k guarantees higher coil-to-coil efficiency. Coil DC loss, skin effect, proximity effect, and displacement current between turns are key factors to determine Q-factor and its effects changes depending on wire-type, winding method, and target frequency. In this paper, we focus on transmitter coil design to maximize Q-factor in both 100 MHz and 6.78 MHz. Coil Q-factor equations are provided to explain and analyze the physics and measurement was done for the validation of the equation. Finally optimal coil winding methods are proposed to maximize coil Q-factor
100khz和6.78 MHz WPT系统的线圈设计:Litz和实心线和绕组方法
在无线电力传输系统中,线圈的设计是保证高传输效率的关键环节之一。在WPT系统效率方面,存在线圈优值(FOM)来评价线圈设计。WPT线圈FOM是线圈质量因子(Q因子)和耦合系数k的函数,Q和k越高,线圈间效率越高。线圈直流损耗、趋肤效应、接近效应和匝间位移电流是决定q因子的关键因素,其影响随导线类型、绕线方式和目标频率的不同而变化。在本文中,我们的重点是发射器线圈的设计,以最大限度地提高100 MHz和6.78 MHz的q因子。给出了线圈q因子方程来解释和分析其物理特性,并对方程进行了验证。最后提出了使线圈q因子最大化的最优绕组方法
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