Loading and Power Control for a High-Efficiency Class E PA-Driven Megahertz WPT System
暂无分享,去创建一个
He Yin | Chengbin Ma | Ming Liu | Minfan Fu | Ming Liu | Chengbin Ma | H. Yin | Minfan Fu
[1] Jie Li,et al. A Maximum Efficiency Point Tracking Control Scheme for Wireless Power Transfer Systems Using Magnetic Resonant Coupling , 2015, IEEE Transactions on Power Electronics.
[2] A.P. Hu,et al. A Wireless Power Pickup Based on Directional Tuning Control of Magnetic Amplifier , 2009, IEEE Transactions on Industrial Electronics.
[3] Gyu-Hyeong Cho,et al. Resonant Regulating Rectifiers (3R) Operating for 6.78 MHz Resonant Wireless Power Transfer (RWPT) , 2013, IEEE Journal of Solid-State Circuits.
[4] P. D. Mitcheson,et al. Maximizing DC-to-Load Efficiency for Inductive Power Transfer , 2013, IEEE Transactions on Power Electronics.
[5] Marshall Miller,et al. The power capability of ultracapacitors and lithium batteries for electric and hybrid vehicle applications , 2011 .
[6] T. S. Bhatti,et al. A review on electrochemical double-layer capacitors , 2010 .
[7] Grant Covic,et al. A Unity-Power-Factor IPT Pickup for High-Power Applications , 2010, IEEE Transactions on Industrial Electronics.
[8] James F. Whidborne,et al. Electronic Tuning of Misaligned Coils in Wireless Power Transfer Systems , 2014, IEEE Transactions on Power Electronics.
[9] Frederick H. Raab,et al. Idealized operation of the class E tuned power amplifier , 1977 .
[10] Gianluca Lazzi,et al. Improving Power Transfer Efficiency of a Short-Range Telemetry System Using Compact Metamaterials , 2014, IEEE Transactions on Microwave Theory and Techniques.
[11] Joshua R. Smith,et al. Power Delivery and Leakage Field Control Using an Adaptive Phased Array Wireless Power System , 2015, IEEE Transactions on Power Electronics.
[12] W. X. Zhong,et al. Maximum Energy Efficiency Tracking for Wireless Power Transfer Systems , 2015, IEEE Transactions on Power Electronics.
[13] Jenshan Lin,et al. Design and Optimization of a Class-E Amplifier for a Loosely Coupled Planar Wireless Power System , 2009, IEEE Transactions on Circuits and Systems II: Express Briefs.
[14] Takehiro Imura,et al. Automated Impedance Matching System for Robust Wireless Power Transfer via Magnetic Resonance Coupling , 2013, IEEE Transactions on Industrial Electronics.
[15] James F. Whidborne,et al. Tuning Class E Inverters Applied in Inductive Links Using Saturable Reactors , 2014, IEEE Transactions on Power Electronics.
[16] Sangwook Nam,et al. Investigation of Adaptive Matching Methods for Near-Field Wireless Power Transfer , 2011, IEEE Transactions on Antennas and Propagation.
[17] Songcheol Hong,et al. Effect of Coupling Between Multiple Transmitters or Multiple Receivers on Wireless Power Transfer , 2013, IEEE Transactions on Industrial Electronics.
[18] He Yin,et al. Analysis and Tracking of Optimal Load in Wireless Power Transfer Systems , 2015, IEEE Transactions on Power Electronics.
[19] Jenshan Lin,et al. Design and Test of a High-Power High-Efficiency Loosely Coupled Planar Wireless Power Transfer System , 2009, IEEE Transactions on Industrial Electronics.
[20] Alanson P. Sample,et al. Enabling Seamless Wireless Power Delivery in Dynamic Environments , 2013, Proceedings of the IEEE.
[21] Takehiro Imura,et al. Impedance Matching and Power Division Using Impedance Inverter for Wireless Power Transfer via Magnetic Resonant Coupling , 2014, IEEE Transactions on Industry Applications.
[22] Songcheol Hong,et al. Wireless Power Transmission With Self-Regulated Output Voltage for Biomedical Implant , 2014, IEEE Transactions on Industrial Electronics.
[23] Tong Zhang,et al. Efficiency and Optimal Loads Analysis for Multiple-Receiver Wireless Power Transfer Systems , 2015, IEEE Transactions on Microwave Theory and Techniques.
[24] Jenshan Lin,et al. Method of Load/Fault Detection for Loosely Coupled Planar Wireless Power Transfer System With Power Delivery Tracking , 2010, IEEE Transactions on Industrial Electronics.
[25] Frederick H. Raab,et al. Effects of circuit variations on the class E tuned power amplifier , 1978 .
[26] Cengiz S. Ozkan,et al. Hydrous Ruthenium Oxide Nanoparticles Anchored to Graphene and Carbon Nanotube Hybrid Foam for Supercapacitors , 2014, Scientific Reports.
[27] Wenxing Zhong,et al. A Critical Review of Recent Progress in Mid-Range Wireless Power Transfer , 2014, IEEE Transactions on Power Electronics.
[28] W. Chen,et al. A 25.6 W 13.56 MHz wireless power transfer system with a 94% efficiency GaN Class-E power amplifier , 2012, 2012 IEEE/MTT-S International Microwave Symposium Digest.
[29] Johan Strydom,et al. eGaN FETs in Low Power Wireless Energy Converters , 2013 .
[30] Chengbin Ma,et al. A Cascaded Boost–Buck Converter for High-Efficiency Wireless Power Transfer Systems , 2014, IEEE Transactions on Industrial Informatics.
[31] Udaya K. Madawala,et al. A Power–Frequency Controller for Bidirectional Inductive Power Transfer Systems , 2013, IEEE Transactions on Industrial Electronics.
[32] Chulwoo Kim,et al. Adaptive frequency with power-level tracking system for efficient magnetic resonance wireless power transfer , 2012 .
[33] Pavol Bauer,et al. Control Method for Wireless Inductive Energy Transfer Systems With Relatively Large Air Gap , 2013, IEEE Transactions on Industrial Electronics.