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A High Efficiency 5 kW Inductive Charger for EVs Using Dual Side Control

IEEE Transactions on Industrial Informatics · 2012 · Vol. 8(3) · pp. 585–595
Hunter WuAaron GilchristKylee D. SealyDaniel Bronson

Abstract

This paper presents the design of a 5 kW inductive charging system for electric vehicles (EVs). Over 90% efficiency is maintained from grid to battery across a wide range of coupling conditions at full load. Experimental measurements show that the magnetic field strength meets the stringent International Commission on Non-Ionizing Radiation Protection (ICNIRP) guidelines for human safety. In addition, a new dual side control scheme is proposed to optimize system level efficiency. Experimental validation showed that a 7% efficiency increase and 25% loss reduction under light load conditions is achievable. The authors believe this paper is the first to show such high measured efficiencies for a level 2 inductive charging system. Performance of this order would indicate that inductive charging systems are reasonably energy efficient when compared to the efficiency of plug-in charging systems.

Advanced Battery Technologies ResearchWireless Power Transfer SystemsElectric Vehicles and InfrastructureAutomotive engineeringElectrical engineeringInductive chargingBattery (electricity)Efficient energy useEngineeringDual (grammatical number)Control systemInductive couplingComputer science
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References
The State of the Art of Electric, Hybrid, and Fuel Cell Vehicles
Proceedings of the IEEE · 2007 · 1,919 citations
Design Considerations for a Contactless Electric Vehicle Battery Charger
IEEE Transactions on Industrial Electronics · 2005 · 1,475 citations
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