DocumentCode :
1444002
Title :
Maximizing Air Gap and Efficiency of Magnetic Resonant Coupling for Wireless Power Transfer Using Equivalent Circuit and Neumann Formula
Author :
Imura, Takehiro ; Hori, Yoichi
Author_Institution :
Dept. of Adv. Energy, Univ. of Tokyo, Kashiwa, Japan
Volume :
58
Issue :
10
fYear :
2011
Firstpage :
4746
Lastpage :
4752
Abstract :
The progress in the field of wireless power transfer in the last few years is remarkable. With recent research, transferring power across large air gaps has been achieved. Both small and large electric equipment have been proposed, e.g., wireless power transfer for small equipment (mobile phones and laptops) and for large equipment (electric vehicles). Furthermore, replacing every cord with wireless power transfer is proposed. The coupled mode theory was proposed in 2006 and proven in 2007. Magnetic and electric resonant couplings allow power to traverse large air gaps with high efficiency. This technology is closely related to electromagnetic induction and has been applied to antennas and resonators used for filters in communication technology. We have studied these phenomena and technologies using equivalent circuits, which is a more familiar format for electrical engineers than the coupled mode theory. In this paper, we analyzed the relationship between maximum efficiency air gap using equivalent circuits and the Neumann formula and proposed equations for the conditions required to achieve maximum efficiency for a given air gap. The results of these equations match well with the results of electromagnetic field analysis and experiments.
Keywords :
air gaps; electromagnetic coupling; electromagnetic induction; equivalent circuits; inductive power transmission; magnetic resonance; Neumann formula; air gap; antennas; communication technology; coupled mode theory; electric resonant couplings; electromagnetic field analysis; electromagnetic induction; equivalent circuit; filters; magnetic resonant coupling; resonators; wireless power transfer; Antennas; Couplings; Electromagnetic fields; Equations; Equivalent circuits; Impedance; Resonant frequency; Maximum efficiency; resonance frequency; wireless power transfer;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2112317
Filename :
5709980
Link To Document :
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