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Quality Factor Based Design Guideline for Optimized Inductive Power Transfer

delete2020-11-15
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OA
AI
F
Francesca Grazian *
W
Wenli Shi
T
Thiago Batista Soeiro
J
Jianning Dong
P
Peter van Duijsen
P
Pavol Bauer
DOI:10.1109/wow47795.2020.9291261delete
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Abstract

Abstract

En 中文
In high-power wireless battery charging that uses inductive power transfer, a considerable amount of power losses are located in the transmitter and receiver coils because they carry high resonant currents and typically have a loose coupling between them which increases eddy current losses. Therefore, the nominal operation needs to be chosen such that the coils' losses are minimized. Additionally, the inverter's semiconductors soft switching improves both the power conversion efficiency and the electromagnetic compatibility of the system, thus it needs to be safeguarded for a wide operating range. However, depending on the chosen quality factor of the coils, it might happen that the minimum coils' losses and soft-switching are not satisfied at the same time. This paper defines a guideline on the parametric selection of the coils' quality factor such that the optimum operation of both the coils and the resonant converter can be achieved simultaneously. This parametric guideline is proposed for resonant converters implementing the four basic compensation networks: series-series, series-parallel, parallel-series, and parallel-parallel. Finally, circuit examples are provided for an 11 kW wireless battery charging system.
Keywords:
Compensation networks
EV battery charging
inductive power transfer
quality factor
wireless charging
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Journal

I
IEEE PELS Workshop on Emerging Technologies: Wireless Power Transfer
IF:
0
Papers:
14
Citations:
0

Organization

D
Delft University of Technology
Scholars:
2.6W
Papers: 2.5W
Citations: 3.8W