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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >Reduction of Electromagnetic Field from Wireless Power Transfer Using a Series-Parallel Resonance Circuit Topology
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Reduction of Electromagnetic Field from Wireless Power Transfer Using a Series-Parallel Resonance Circuit Topology

机译:使用串联-并联谐振电路拓扑结构从无线电力传输中减少电磁场

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摘要

In this paper, we implemented and analyzed a wireless power transfer (WPT) system with a CSPR topology. CSPR refers to constant current source, series resonance circuit topology of a transmitting coil, parallel resonance circuit topology of a receiving coil, and pure resistive loading. The transmitting coil is coupled by a magnetic field to the receiving coil without wire. Although the electromotive force (emf) is small (about 4.5V), the voltage on load resistor is 148V, because a parallel resonance scheme was adopted for the receiving coil. The implemented WPT system is designed to be able to transfer up to 1 kW power and can operate a LED TV. Before the implementation, the EMF reduction mechanism based on the use of ferrite and a metal shield box was confirmed by an EM simulation and we found that the EMF can be suppressed dramatically by using this shield. The operating frequency of the implemented WPT system is 30.7kHz and the air gap between two coils is 150mm. The power transferred to the load resistor is 147W and the real power transfer efficiency is 66.4 %.
机译:在本文中,我们实现并分析了具有CSPR拓扑的无线电力传输(WPT)系统。 CSPR是指恒流源,发射线圈的串联谐振电路拓扑,接收线圈的并联谐振电路拓扑以及纯电阻负载。发射线圈通过磁场耦合到接收线圈,而没有导线。尽管电动势(emf)小(约4.5V),但负载电阻上的电压为148V,因为接收线圈采用了并联谐振方案。已实施的WPT系统设计为能够传输高达1 kW的功率并可以操作LED电视。在实施之前,通过电磁仿真确定了基于铁氧体和​​金属屏蔽盒的EMF降低机制,我们发现通过使用该屏蔽可以极大地抑制EMF。实施的WPT系统的工作频率为30.7kHz,两个线圈之间的气隙为150mm。传输到负载电阻的功率为147W,实际功率传输效率为66.4%。

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