Analysis of the Parameters Affecting the Efficiency of the Wireless Power Transmission System Designed for New Generation Electric Vehicles
Author:
Publisher
Springer Science and Business Media LLC
Subject
Automotive Engineering
Link
https://link.springer.com/content/pdf/10.1007/s12239-023-0135-1.pdf
Reference9 articles.
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2. Hui, S. Y. R., Zhong, W. and Lee, C. K. (2013). A critical review of recent progress in mid-range wireless power transfer. IEEE Trans. Power Electronics 29, 9, 4500–4511.
3. Inoue, R., Nagasaki, Y., Tsuda, M. and Miyagi, D. (2022). Basic coil structure for rapid charge in a low-frequency and high-efficiency wireless power transmission system using high-temperature superconducting coil for railway vehicle. IEEE Trans. Applied Superconductivity 33, 1, 1–9.
4. Jeong, S., Kim, T. W., Lee, S., Sim, B., Park, H., Son, K., Kim, S., Shin, T., Kim, Y. C., Kim, J. and Kim, B. J. (2022). Analysis of repetitive bending on flexible wireless power transfer (WPT) PCB coils for flexible wearable devices. IEEE Trans. Components, Packaging and Manufacturing Technology 12, 11, 1748–1756.
5. Kurs, A., Karalis, A., Moffatt, R., Joannopoulos, J. D., Fisher, P. and Soljacic, M. (2007). Wireless power transfer via strongly coupled magnetic resonances. Science 317, 5834, 83–86.
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