[1] |
Karimi MJ, Jin M, Dehollain C, Schmid A. 2024. A wireless power conversion chain with fully on-chip automatic resonance tuning system for biomedical implants. IEEE Open Journal of Circuits and Systems 5:117−27 doi: 10.1109/OJCAS.2024.3382355 |
[2] |
Essa A, Almajali E, Mahmoud S, Amaya RE, Alja'Afreh SS, et al. 2024. Wireless power transfer for implantable medical devices: impact of implantable antennas on energy harvesting. IEEE Open Journal of Antennas and Propagation 5:739−58 doi: 10.1109/OJAP.2024.3392160 |
[3] |
Alshhawy S, Barakat A, Pokharel RK. 2024. Efficient and low leakage WPT system with integrated uncomplicated matching circuit rectifier using metamaterial director and isolator for biomedical application. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology 8:144−54 doi: 10.1109/JERM.2024.3395572 |
[4] |
Frassati F, Descharles M, Gauroy M, Yvinou A, Stindel E, et al. 2024. Powering smart orthopedic implants through near-field resonant inductive coupling. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology Early access:1−12 doi: 10.1109/JERM.2024.3406331 |
[5] |
Liu X, Jin D, Ji H, Liu L, Xia C. 2024. Research on Mutual inductance identification and efficiency optimization of the three-coil wireless power transfer systems with switchable relay coil. IEEE Transactions on Power Electronics 39:6492−503 doi: 10.1109/TPEL.2024.3363138 |
[6] |
Zhao H, Tian Z, Zhang X, Qiu Y, Li L, et al. 2024. Nonresonant compensation optimization for efficiency improvement of wireless power transfer system with relay coil. IEEE Transactions on Power Electronics 39:2835−45 doi: 10.1109/TPEL.2023.3328939 |
[7] |
Liu Y, Chen J, Li Y, He Z. 2024. A new modeling method for multiple-relay wireless power transfer system considering cross-coupling. IEEE Transactions on Industrial Electronics 71:1456−67 doi: 10.1109/TIE.2023.3257383 |
[8] |
Liu X, Song X, Yuan X. 2022. Compensation optimization of the relay coil in a strong coupled coaxial three-coil wireless power transfer system. IEEE Transactions on Power Electronics 37:4890−902 doi: 10.1109/TPEL.2021.3126860 |
[9] |
Liu X, Chao J, Rong C, Liao Z, Xia C. 2024. Compatibility and performance improvement of the WPT systems based on Q-learning algorithm. IEEE Transactions on Power Electronics 39:10582−93 doi: 10.1109/TPEL.2024.3397804 |
[10] |
Pinuela M, Yates DC, Lucyszyn S, Mitcheson PD. 2013. Maximizing DC-to-Load efficiency for inductive power transfer. IEEE Transactions on Power Electronics 28:2437−47 doi: 10.1109/TPEL.2012.2215887 |
[11] |
Zhang Y, Zhao Z, Chen K. 2014. Frequency decrease analysis of resonant wireless power transfer. IEEE Transactions on Power Electronics 29:1058−63 doi: 10.1109/TPEL.2013.2277783 |
[12] |
Deng Q, Liu J, Czarkowski D, Kazimierczuk MK, Bojarski M, et al. 2016. Frequency-dependent resistance of Litz-wire square solenoid coils and quality factor optimization for wireless power transfer. IEEE Transactions on Industrial Electronics 63:2825−37 doi: 10.1109/TIE.2016.2518126 |
[13] |
Liu J, Deng Q, Czarkowski D, Kazimierczuk MK, Zhou H, et al. 2019. Frequency optimization for inductive power transfer based on AC resistance evaluation in Litz-wire coil. IEEE Transactions on Power Electronics 34:2355−63 doi: 10.1109/TPEL.2018.2839626 |
[14] |
Wang X, Sun P, Deng Q, Wang W. 2018. Evaluation of AC resistance in Litz wire planar spiral coils for wireless power transfer. Journal of Power Electronics 18:1268−77 doi: 10.6113/JPE.2018.18.4.1268 |
[15] |
Wang X, Leng M, He L, Lu S. 2024. An improved LCC-S compensated inductive power transfer system with wide output voltage range and unity power factor. IEEE Transactions on Transportation Electrification 10:2342−54 doi: 10.1109/TTE.2023.3297623 |
[16] |
Ali Shah I, Basir A, Cho Y, Yoo H. 2022. Safety analysis of medical implants in the human head exposed to a wireless power transfer system. IEEE Transactions on Electromagnetic Compatibility, 64:640−49 doi: 10.1109/TEMC.2022.3144468 |
[17] |
Ahn J, Woo S, Kim H, Song K, Huh S, et al. 2022. An out-of-phase wireless power transfer system for implantable medical devices to reduce human exposure to electromagnetic field and increase power transfer efficiency. IEEE Transactions on Biomedical Circuits and Systems 16:1166−80 doi: 10.1109/TBCAS.2022.3222011 |
[18] |
International Electrotechnical Commission (IEC). 2021. Assessment methods of the human exposure to electric and magnetic fields from wireless power transfer systems – models, instrumentation, measurement and numerical methods and procedures (Frequency range of 1 kHz to 30 MHz). IEC PAS 63184. Publicly Available Specification. IEC. |
[19] |
Sandhya P, Nisha GK. 2023. Analysing various compensation schemes for inductive wireless power transfer. IEEE Pune Section International Conference (PuneCon), Pune, India, 14−16 December 2023. USA: IEEE press. pp. 1−6. doi: 10.1109/PuneCon58714.2023.10450092 |
[20] |
Prasad KK, Agarwal V. 2024. Design recommendations considering charging Pads' self-inductance variation with LCC–S and LCC–LCC compensation based IPT chargers in low clearance EVs. IEEE Transactions on Transportation Electrification 10:1758−70 doi: 10.1109/TTE.2023.3277103 |