期刊
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY
卷 65, 期 6, 页码 4429-4439出版社
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TVT.2015.2479938
关键词
Compensation topology; electric vehicle (EV); inductive power transfer; mistuning; wireless charger
资金
- U.S. Department of Energy Graduate Automotive Technology Education Grant
- U.S.-China Clean Energy Research Center-Clean Vehicle Consortium
- University of Michigan
- Hefei University of Technology
- China Scholarship Council
This paper compares the characteristics of the series-series and double-sided Inductor-Capacitor-Capacitor ( LCC) compensation topologies for electric vehicle ( EV) wireless chargers. Both the well-tuned and mistuned topologies for the two compensation methods are analyzed in detail. The mistuning considered here is mainly caused by the variations of the relative position between the primary and secondary sides. The output power displacements caused by mistuning are compared for both compensation topologies, as well as the impacts of the load variations on the performances of the mistuned topologies. The voltage and current stresses on components are also studied. The comparative result shows that the double-sided LCC compensation topology is less sensitive to mistuning. A double-sided LCC-compensated EV wireless charger system with up to 7.7-kW output power is built to verify the analysis results. A peak efficiency of 96% from dc power source to battery load is achieved.
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