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Leakage magnetic field reduction from Wireless Power Transfer system embedding new eddy current-based shielding method

机译:嵌入新的基于涡流的屏蔽方法的无线电力传输系统的漏磁场减小

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The latest Electric Vehicles (EV)-related power electronics have attracted special interest as one of effective solutions to energy and environmental issues. In order to implement a promising EV battery charging equipment and its EMS infrastructures for carports in private houses and public buildings, Wireless Power Transfer (WPT)-based on-board chargers (OBC) are more suitable and acceptable from a practical point of view. The authors have developed cost-effective WPT-OBC embedding the voltage-fed quasi-resonant ZVS high-frequency inverter with a single IGBT switch, which operates under the condition of PWM-dependent PFM control scheme. In actual, leakage magnetic field exposure emitted from WPT assembly should follow the feasible guideline of ICNIRP. This paper presents a new conceptual magnetic shielding method which is able to reduce the leakage magnetic field exposure from the wireless Inductive Power Transfer (IPT) assembly. It is noted that this method is based on the combined magnetic shielding implementation which makes use of both magnetic flux path concept by magnetic material and magnetic field cancellation principle eddy current induced into the conductive plates. Furthermore, the effectiveness of the leakage magnetic shielding technique in WPT is proven by the analytical considerations and experimentally-observed data.
机译:作为解决能源和环境问题的有效解决方案之一,最新的与电动汽车(EV)相关的电力电子器件引起了人们的特殊兴趣。为了在私人住宅和公共建筑的车棚中实现有前途的EV电池充电设备及其EMS基础设施,从实用角度出发,基于无线功率传输(WPT)的车载充电器(OBC)更加合适并且可以接受。作者已经开发出了具有成本效益的WPT-OBC,其将电压馈送的准谐振ZVS高频逆变器与单个IGBT开关一起嵌入,该开关在依赖PWM的PFM控制方案的条件下工作。实际上,从WPT组件发出的泄漏磁场暴露应遵循ICNIRP的可行指南。本文提出了一种新的概念性磁屏蔽方法,该方法能够减少来自无线感应功率传输(IPT)组件的泄漏磁场暴露。注意,该方法基于组合的磁屏蔽实现方式,该实现方式既利用了磁性材料的磁通路径概念,又利用了感应到导电板上的磁场抵消原理的涡流。此外,WPT中漏磁屏蔽技术的有效性已通过分析考虑和实验观察到的数据得到了证明。

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