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Design and Implementation of Shaped Magnetic-Resonance-Based Wireless Power Transfer System for Roadway-Powered Moving Electric Vehicles

IEEE Transactions on Industrial Electronics · 2013 · Vol. 61(3) · pp. 1179–1192
Jaegue ShinSeungyong ShinYang-Su KimSeungyoung AhnSeokhwan LeeGuho JungSeong‐Jeub JeonDong‐Ho Cho

Abstract

In this paper, the design and implementation of a wireless power transfer system for moving electric vehicles along with an example of an online electric vehicle system are presented. Electric vehicles are charged on roadway by wireless power transfer technology. Electrical and practical designs of the inverter, power lines, pickup, rectifier, and regulator as well as an optimized core structure design for a large air gap are described. Also, electromotive force shielding for the electric vehicle is suggested. The overall system was implemented and tested. The experimental results showed that 100-kW power with 80% power transfer efficiency under 26-cm air gap was acquired.

Wireless Power Transfer SystemsEnergy Harvesting in Wireless NetworksAdvanced Battery Technologies ResearchWireless power transferAir gap (plumbing)Rectifier (neural networks)Electrical engineeringElectromagnetic shieldingElectric vehiclePower (physics)EngineeringInverterWireless
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References
Power Transfer Capability and Bifurcation Phenomena of Loosely Coupled Inductive Power Transfer Systems
IEEE Transactions on Industrial Electronics · 2004 · 1,188 citations
Design Considerations for a Contactless Electric Vehicle Battery Charger
IEEE Transactions on Industrial Electronics · 2005 · 1,475 citations
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