magazinelogo

Renewable Energy and Clean Technology

ISSN Online: - CODEN:
Frequency: Quarterly Email: RECT@hillpublish.com
Total View: 47173 Downloads: 2265 Citations: 0 (From Dimensions)
ArticleOpen Access http://dx.doi.org/10.26855/rect.2025.12.003

Research on Magnetic Coupling Resonant Wireless Charging Technology for New Energy Vehicles

Shengjie Liu

Zhoukou Vocational and Technical College, Zhoukou 466000, Henan, China.

*Corresponding author: Shengjie Liu

Published: November 19, 2025

Abstract

With the rapid development of the electric vehicle industry, wireless charging technology has attracted widespread attention due to its convenience and safety. This paper systematically reviews the research progress of magnetic resonant coupling wireless charging technology at home and abroad, clearly pointing out the current research focus and application status of the technology. The paper delves into the working principle of the technology and the key technical issues in practice, including the optimization of coupling structures, design of resonant compensation structures, improvement of transmission power and efficiency, as well as strategies to enhance system safety and reliability. Furthermore, this paper analyzes challenges facing the development of the technology and proposes potential solutions for future research directions and technological breakthroughs. The study demonstrates that magnetic resonant coupling wireless charging technology, as an effective solution to electric vehicle charging issues, possesses high research value and industrial prospects.

Keyword

Electric vehicles; Wireless charging technology Magnetic resonant coupling; Cou-pling structures; Resonant compensation; Transmission efficiency

References

Guo, J. (2023). Coil optimization of downhole resonant wireless power transfer system [Master’s thesis, Yangtze University].

Huang, X. L., Wang, W., & Tan, L. L. (2017). Research progress and application prospects of magnetically coupled resonant wireless power transfer technology. Automation of Electric Power Systems, 41(02), 2-14+141.

Li, J. N., Li, R. H., Ma, Y. L., et al. (2024). Design and implementation of a magnetically coupled wireless charging system for electric vehicles. Power Electronics Technology, 58(01), 53-56.

Li, K. Z. (2023). Electric field-coupled wireless power transfer system based on two-switch single-stage AC/DC pulse excitation source [Master’s thesis, South China University of Technology].

Liu, Y., Xiao, J. Y., Zhao, X. L., et al. (2023). A review of the development and application of wireless power transfer technology. New Technologies for Electrical Engineering and Power, 42(02), 48-67.

Lu, S. Y. (2022). Design of a magnetically coupled WPT tuned measurement and control system based on sawtooth power supply [Master’s thesis, Nanjing University of Information Science and Technology].

Tang, Z. Q. (2022). Research on MISO wireless charging technology based on rotating magnetic field [Master’s thesis, Southwest University of Science and Technology].

Wang, X. Y., Zhou, W. Q., Zhou, H., et al. (2024). Magnetic resonance wireless charging technology: Progress and prospect. Computer Research and Development. Advance online publication.

Wang, Y. J., Sun, X. L., Mai, J. W., et al. (2022). A review of research on compensation networks under varying parameters in electromagnetic induction wireless power transfer systems. Proceedings of the CSEE, 42(20), 7288-7306.

Wu, M. B. (2022). Research on constant current and constant voltage wireless charging topology and control technology for electric vehicles [Master’s thesis, Zhejiang University].

Xia, X. X. (2020). Research and design of wireless power transfer coil for electric vehicles based on finite element analysis [Master’s thesis, Southwest University of Science and Technology].

Xiong, M. (2022). Research on core optimization and system adjustment of wireless power transmission for vehicles [Master’s thesis, Tongji University].

Xu, B. Q., Li, J., Liu, W. X., et al. (2023). Study on string compensation topology of magnetically coupled resonant wireless charging system. Heavy Duty Vehicle, (06), 9-10+20.

Zhao, Y. (2023). Research on key theories and technologies of wireless power transfer systems [Master’s thesis, Zhejiang University].

Zheng, Z. C. (2023). Research on wireless charging technology for electric vehicles. Automotive Test Report, (14), 148-151.

Copyright

© 2025 by the author(s).
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivatives (CC BY-NC-ND) license, which permits non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited and is not modified or adapted.
https://creativecommons.org/licenses/by-nc-nd/4.0/

How to cite this paper

Research on Magnetic Coupling Resonant Wireless Charging Technology for New Energy Vehicles

How to cite this paper: Shengjie Liu. (2025). Research on Magnetic Coupling Resonant Wireless Charging Technology for New Energy Vehicles. Renewable Energy and Clean Technology1(1), 13-17.

DOI: http://dx.doi.org/10.26855/rect.2025.12.003