Optimal Design of Electromagnetic Induction High-efficiency Wireless Power Transmission System

Wang Ke, Liu Chengxi, Sun Hui-zhong
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引用次数: 1

Abstract

Electromagnetic induction wireless power transmission technology has become a research hotspot in the field of wireless charging. This paper introduces the basic structure of electromagnetic induction wireless power transmission technology, analyzes the series compensation resonance system, derives the influence of mutual inductance and coupling coefficient on output power and efficiency, gives the design scheme of mutual inductance and coupling coefficient, and completes the loose Design of coupling transformer. Then set up an experimental platform, and use open-loop phase-shift control for experimental verification. Experimental results show that the wireless charging system designed in this paper can achieve a maximum efficiency of 90.8% at a distance of 200mm, and has a high energy transmission efficiency.
电磁感应高效无线输电系统的优化设计
电磁感应无线电力传输技术已成为无线充电领域的研究热点。介绍了电磁感应无线输电技术的基本结构,分析了串联补偿谐振系统,推导了互感和耦合系数对输出功率和效率的影响,给出了互感和耦合系数的设计方案,并完成了耦合变压器的松散设计。然后搭建实验平台,采用开环相移控制进行实验验证。实验结果表明,本文设计的无线充电系统在200mm距离上的效率最高可达90.8%,具有较高的能量传输效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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