Analysis and design of wireless power transfer system with an intermediate coil for high efficiency

SangCheol Moon, Bong-chul Kim, Shin-Young Cho, G. Moon
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引用次数: 144

Abstract

This paper presents a theoretical analysis, an optimal design method and experimental results for a wireless power transfer (WPT) system with an intermediate coil. The analytical expression of the DC voltage transfer function is presented and discussed. In a two coil WPT system, which has low coupling coefficient, the intermediate coil boosts the self-inductance and magnetizing inductance of the primary side at around the resonance frequency of the intermediate coil, so that the coupling coefficient is compensated. The coupling coefficient makes the system efficiency increase and induces bi-furcation phenomenon. From the analysis, this paper proposes an optimal design method using the second resonance frequency operation with the bi-furcation phenomenon and presents design procedure for high efficiency. A prototype of the WPT system with the intermediate coil is implemented and experimented to verify the validity of the analysis and the proposed design method. The prototype operates at 100 kHz switching frequency and has an air gap between primary and secondary side of 200mm. An overall system efficiency of 95.57% has been achieved at 6.6kW of output power.
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高效中间线圈无线电力传输系统的分析与设计
本文介绍了一种带中间线圈的无线电力传输系统的理论分析、优化设计方法和实验结果。给出并讨论了直流电压传递函数的解析表达式。在耦合系数较低的双线圈WPT系统中,中间线圈在中间线圈谐振频率附近增大一次侧的自感和磁化感,使耦合系数得到补偿。耦合系数使系统效率提高,并引起双分岔现象。在此基础上,提出了一种利用二次共振频率运行的双分岔优化设计方法,并给出了高效率的设计步骤。设计了一个带中间线圈的WPT系统样机,并进行了实验,验证了分析和设计方法的有效性。原型机在100 kHz开关频率下工作,主侧和副侧之间的气隙为200毫米。在6.6kW输出功率下,系统整体效率达到95.57%。
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