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Coil Design and Shielding Methods for a Magnetic Resonant Wireless Power Transfer System

机译:磁共振无线电力传输系统的线圈设计和屏蔽方法

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摘要

In this paper, we introduce the basic principles of wireless power transfer using magnetic field resonance and describe techniques for the design of a resonant magnetic coil, the formation of a magnetic field distribution, and electromagnetic field (EMF) noise suppression methods. The experimental results of wireless power transfer systems in consumer electronics applications are discussed in terms of issues related to their efficiency and EMF noise. Furthermore, we present a passive shielding method and a magnetic field cancellation method using a reactive resonant current loop and the utilization of these methods in an online electric vehicle (OLEV) system, in which an OLEV green transportation bus system absorbs wireless power from power cables underneath the road surface with only a minimal battery capacity.
机译:在本文中,我们介绍了使用磁场共振的无线电力传输的基本原理,并描述了用于共振电磁线圈的设计,磁场分布的形成和电磁场(EMF)噪声抑制方法的技术。就与消费电子应用中的无线功率传输系统的效率和EMF噪声相关的问题进行了讨论。此外,我们提出了一种使用无功谐振电流环路的无源屏蔽方法和磁场消除方法,以及在在线电动汽车(OLEV)系统中这些方法的利用,其中OLEV绿色运输总线系统吸收了电缆中的无线电力在路面下方的情况下,只有很少的电池电量。

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