1. Covic, G. A. and J. T. Boys, "Inductive power transfer," Proceedings of the IEEE, Vol. 101, No. 6, 1276-1289, Jun. 2013.
doi:10.1109/JPROC.2013.2244536 Google Scholar
2. Badawe, M. El. and O. M. Ramahi, "Efficient meta surface rectenna for electromagnetic wireless power transfer and energy harvesting," Progress In Electromagnetics Research, Vol. 161, 35-40, 2018.
doi:10.2528/PIER18011003 Google Scholar
3. Jang, B. J., S. Lee, and H. Yoon, "HF-band wireless power transfer system: Concept, issues, and design," Progress In Electromagnetics Research, Vol. 124, 211-231, 2012.
doi:10.2528/PIER11120511 Google Scholar
4. Johns, B. B., "An introduction to the wireless power consortium standard and TI’s compliant solutions," Analog Applications Journal, 10-12, 2011. Google Scholar
5. Alliance, A., "A4WP wireless power transfer system baseline system specification (BSS) v 1.2.1,", 2014. Google Scholar
6. Chen, J.-F., Z. Ding, Z. Hu, S. Wang, Y. Cheng, M. Liu, B. Wei, and S. Wang, "Metamaterial-based high-efficiency wireless power transfer system at 13.56 MHz for low power applications," Progress In Electromagnetics Research B, Vol. 72, 17-30, 2017.
doi:10.2528/PIERB16071509 Google Scholar
7. Li, X., C. Y. Tsui, and W. H. Ki, "A 13.56 MHz wireless power transfer system with reconfigurable resonant regulating rectifier and wireless power control for implantable medical devices," 2014 Symposium on VLSI Circuits Digest of Technical Papers, 1-2, 2014. Google Scholar
8. Kim, J., W. S. Choi, and J. Jeong, "Loop switching technique for wireless power transfer using magnetic resonance coupling," Progress In Electromagnetics Research, Vol. 138, 197-209, 2013.
doi:10.2528/PIER13012118 Google Scholar
9. Kung, M. L. and K. H. Lin, "Investigation of dual-band coil module for near-field wireless power transfer systems," Wireless Power Transfer Conference, 265-268, 2014. Google Scholar
10. Ahn, D. and P. P. Mercier, "Wireless power transfer with concurrent 200-kHz and 6.78-MHz operation in a single-transmitter device," IEEE Transactions on Power Electronics, Vol. 31, No. 7, 5018-5029, 2016. Google Scholar
11. Jiang, C., K. T. Chau, W. Han, and W. Liu, "Development of multilayer rectangular coils for multiple-receiver multiple-frequency wireless power transfer," Progress In Electromagnetics Research, Vol. 163, 15-24, 2018.
doi:10.2528/PIER18060206 Google Scholar
12. Kung, M. L. and K. H. Lin, "Dual-band coil module with repeaters for diverse wireless power transfer applications," IEEE Transactions on Microwave Theory & Techniques, Vol. 66, No. 1, 332-345, 2018.
doi:10.1109/TMTT.2017.2711010 Google Scholar
13. Kung, M. L. and K. H. Lin, "Enhanced analysis and design method of dual-band coil module for near-field wireless power transfer systems," IEEE Transactions on Microwave Theory and Techniques, Vol. 63, No. 3, 821-832, 2015.
doi:10.1109/TMTT.2015.2398415 Google Scholar
14. Kurs, A., A. Karalis, R. Moffatt, J. D. Joannopoulos, P. Fisher, and M. Soljacic, "Wireless power transfer via strongly coupled magnetic resonances," Sci. Exp., Vol. 317, No. 5834, 83-86, Jun. 2007. Google Scholar
15. Peng, L., O. Breinbjerg, and N. A. Mortensen, "Wireless energy transfer through non-resonant magnetic coupling," Journal of Electromagnetic Waves and Applications, Vol. 24, 1587-1598, 2010.
doi:10.1163/156939310792149795 Google Scholar
16. Kim, J. G., G. Wei, C. Zhu, and C. H. Rim, "Quality factor and topology analysis of the series-parallel combined resonant circuit-based wireless power transfer system," IEEE Transportation Electrification Conference and Expo., 2017. Google Scholar
17. Peng, L., J. Y. Wang, L. X. Ran, O. Breinbjerg, and N. A. Mortensen, "Performance analysis and experimental verification of mid-range wireless energy transfer through non-resonant magnetic coupling," Journal of Electromagnetic Waves and Applications, Vol. 25, 845-855, 2011.
doi:10.1163/156939311794827186 Google Scholar