A review of wireless power transfer for electric vehicles: Prospects to enhance sustainable mobility

Author:

Bi Zicheng,Kan Tianze,Mi Chunting Chris,Zhang Yiming,Zhao Zhengming,Keoleian Gregory A.

Funder

United States Department of Energy

Department of Electrical and Computer Engineering, University of Michigan-Dearborn

Electrical Engineering and Computer Science Department, University of Michigan-Ann Arbor

Center for Sustainable Systems at the University of Michigan-Ann Arbor

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction

Reference86 articles.

1. Tesla N. Art of transmitting electrical energy through the natural mediums. U.S. Patent 787412; April 18, 1905.

2. Tesla N. Apparatus for transmitting electrical energy. U.S. Patent 1119732; December 1, 1914.

3. Frequency-splitting analysis of four-coil resonant wireless power transfer;Zhang;IEEE Trans Ind Appl,2014

4. Loosely coupled transformer structure and interoperability study for EV wireless charging systems;Zhang;IEEE Trans Power Electron,2015

5. Nguyen TD, Li S, Li W, Mi CC. Feasibility study on bipolar pads for efficient wireless power chargers. In: 2014 Twenty-ninth annual IEEE applied power electronics conference and exposition (APEC), IEEE; 16–20 March 2014. p. 1676–82.

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