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Structure of handheld resonant magnetic coupling charger (HH-RMCC) for electric vehicle considering electromagnetic field

机译:考虑电磁场的电动车辆手持谐振磁耦合充电器(HH-RMCC)的结构

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Inductive charging is a convenient method to transfer electrical power from a source to the batteries without any electrical contact. The problem is that inductive charging technologies may have electromagnetic compatibility (EMC) issues caused by leakage magnetic field. In this paper, an inductive charger design for electric vehicles (EVs) named as Handheld Resonant Magnetic Coupling Charger (HH-RMCC) is proposed. The air gap and thickness of the ferrite core are determined considering the core saturation and leakage magnetic field. The maximum value of the simulated magnetic flux density at the distance of 200 mm away from the charger is 2.28 mG and the simulation result of the power transfer efficiency is approximately 99.5%. The simulation results using 3D Finite Element Analysis (FEA) tool show that HH-RMCC satisfies EMF regulation published by the International Commission on Non-Ionizing Radiation and Protection (ICNIRP) at the frequency of 20 kHz with high performance.
机译:电感充电是一种方便的方法,可以从源转移到电池而没有任何电触点的电气。 问题是,电感充电技术可能具有由漏磁场引起的电磁兼容性(EMC)问题。 本文提出了一种名为手持式谐振磁耦合充电器(HH-RMCC)的电动车辆(EVS)的电感充电器设计。 考虑到核心饱和和泄漏磁场,确定铁氧体磁芯的气隙和厚度。 模拟磁通密度在距充电器距离200mm的距离的最大值为2.28mg,电力传输效率的仿真结果约为99.5%。 使用3D有限元分析(FEA)工具的仿真结果表明,HH-RMCC满足了国际非电离辐射和保护(ICNIRP)委员会发布的EMF监管,以20 kHz的频率为高性能。

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