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Gregg E. Maryniak, et al. 1996. Status of International Experimentation in Wireless Power Transmission. Solar Energy 56, No.1, pp. 87–91.MaryniakGregg E.1996Status of International Experimentation in Wireless Power TransmissionSolar Energy5618791Search in Google Scholar
W. Fu, B. Zhang, 2009. Study on Frequency-tracking Wireless Power Transfer System by Resonant Coupling. IEEE Power Electronics and Motion Control Conference. IPEMC 2009, 17–20, Wuhan, pp. 2658–2663.FuW.ZhangB.2009Study on Frequency-tracking Wireless Power Transfer System by Resonant CouplingIEEE Power Electronics and Motion Control Conference. IPEMC 200917–20Wuhan26582663Search in Google Scholar
L. Angrisani, G. D’Alessandro, and M. D’Arco, et al. 2015. An experimental energy set-up for wireless battery recharging. IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings, 2015, pp. 1699–1704.AngrisaniL.D’AlessandroG.D’ArcoM.2015An experimental energy set-up for wireless battery rechargingIEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings201516991704Search in Google Scholar
G. Bouattour, B. Kallel, K. Sasmal, O. Kanoun, and N. Derbel, et al. 2015. Comparative study of resonant circuit for power transmission via inductive link. 12th International Multi-Conference on Systems, Signals & Devices, 2015, pp. 0–5.BouattourG.KallelB.SasmalK.KanounO.DerbelN.2015Comparative study of resonant circuit for power transmission via inductive link12th International Multi-Conference on Systems, Signals & Devices201505Search in Google Scholar
Chiuk Song, Hongseok Kim, D. H. Jung, Kibum Yoon, Yeonje Cho, Sunkyu Kong, Younghwan Kwack, and Joungho Kim, et al. 2015. Three-phase magnetic field design for low EMI and EMF automated resonant wireless power transfer charger for UAV. IEEE Wireless Power Transfer Conference (WPTC), 2015, pp. 1–4.SongChiukKimHongseokJungD. H.YoonKibumChoYeonjeKongSunkyuKwackYounghwanKimJoungho2015Three-phase magnetic field design for low EMI and EMF automated resonant wireless power transfer charger for UAVIEEE Wireless Power Transfer Conference (WPTC)201514Search in Google Scholar
S. Wielandt, B. Thoen, J. Goemaere, L. De Strycker, and N. Stevens, et al. 2015. Inductive charging of an EDLC powered wristband device for medical measurements,” European Conference on Circuit Theory and Design (ECCTD), 2015.WielandtS.ThoenB.GoemaereJ.De StryckerL.StevensN.2015Inductive charging of an EDLC powered wristband device for medical measurementsEuropean Conference on Circuit Theory and Design (ECCTD)2015Search in Google Scholar
C. Nataraj, S. Khan, M. H. Habaebi, and A. G. A. Muthalif, et al. 2016. Resonant Coils Analysis for Inductively Coupled Wireless Power Transfer Applications. IEEE Int. Instrum. Meas. Technol. Conf., 2016, no. 1, pp. 109–114.NatarajC.KhanS.HabaebiM. H.MuthalifA. G. A.2016Resonant Coils Analysis for Inductively Coupled Wireless Power Transfer ApplicationsIEEE Int. Instrum. Meas. Technol. Conf.20161109114Search in Google Scholar
P. Wambsganss and D. Huwig, et al. 2010. Inductive power transmission system with stabilized output voltage. 14th International Power Electronics and Motion Control Conference, 2010.WambsganssP.HuwigD.2010Inductive power transmission system with stabilized output voltage14th International Power Electronics and Motion Control Conference2010Search in Google Scholar
A. Trigui, S. Hached, F. Mounaim, A. C. Ammari, and M. Sawan, et al, 2015. Inductive power transfer system with self-calibrated primary resonant frequency. IEEE Transactions on Power Electronics., vol. 30, no. 11, pp. 6078–6087.TriguiA.HachedS.MounaimF.AmmariA. C.SawanM.2015Inductive power transfer system with self-calibrated primary resonant frequencyIEEE Transactions on Power Electronics301160786087Search in Google Scholar
V. Subburaj, D. Jena, R. Kumar, A. V. Deshmukh, B. Nayak et al, 2016. Design of Series, Fi==Fi-l+Fi-3 for the Denominators (1, 2,.. 6) of Switched Capacitor Converter “ 1st IEEE International Conference on Power Electronics. Intelligent Control and Energy Systems (ICPEICES-2016).SubburajV.JenaD.KumarR.DeshmukhA. V.NayakB.2016Design of Series, Fi==Fi-l+Fi-3 for the Denominators (1, 2,.. 6) of Switched Capacitor Converter1st IEEE International Conference on Power Electronics. Intelligent Control and Energy Systems (ICPEICES-2016)Search in Google Scholar
C. Nataraj, S. Khan, F. F. Eniola and S. K. Selvaperumal et al. 2017. Design of Simple DC-to-DC Wireless Power Transfer via Inductive Coupling. 3rd International Conference on Advances in Electrical, Electronics, Information, Communication and Bio-Informatics (AEEICB17).NatarajC.KhanS.EniolaF. F.SelvaperumalS. K.2017Design of Simple DC-to-DC Wireless Power Transfer via Inductive Coupling3rd International Conference on Advances in Electrical, Electronics, Information, Communication and Bio-Informatics (AEEICB17)Search in Google Scholar
C. H. Lee, G. Jung, K. A. Hosani, B. Song, D. -k. Seo and D. Cho, “Wireless Power Transfer System for an Autonomous Electric Vehicle,” 2020 IEEE Wireless Power Transfer Conference (WPTC), Seoul, Korea (South), 2020, pp. 467–470, doi: 10.1109/WPTC48563.2020.9295631.LeeC. H.JungG.HosaniK. A.SongB.SeoD. -k.ChoD.“Wireless Power Transfer System for an Autonomous Electric Vehicle,”2020 IEEE Wireless Power Transfer Conference (WPTC)Seoul, Korea (South)202046747010.1109/WPTC48563.2020.9295631Open DOISearch in Google Scholar
W. Gong, M. Yu, Z. Zuo, J. Xiao, X. Wu and X. Dai, “High Efficiency Wireless Power Transfer System with Low Voltage Input,” 2022 IEEE 9th International Conference on Power Electronics Systems and Applications (PESA), Hong Kong, Hong Kong, 2022, pp. 1–5.GongW.YuM.ZuoZ.XiaoJ.WuX.DaiX.“High Efficiency Wireless Power Transfer System with Low Voltage Input,”2022 IEEE 9th International Conference on Power Electronics Systems and Applications (PESA)Hong Kong, Hong Kong202215Search in Google Scholar
M. F. Rahman, Y. Hun Jang, S. H. Lee and I. Sohn, “Low-Power Wireless Communication for Wireless Power Transfer Device,” 2020 IEEE Wireless Power Transfer Conference (WPTC), Seoul, Korea (South), 2020, pp. 369–372, doi: 10.1109/WPTC48563.2020.9295560.RahmanM. F.Hun JangY.LeeS. H.SohnI.“Low-Power Wireless Communication for Wireless Power Transfer Device,”2020 IEEE Wireless Power Transfer Conference (WPTC)Seoul, Korea (South)202036937210.1109/WPTC48563.2020.9295560Open DOISearch in Google Scholar