Accurate first-harmonic-approximation-based model of the diode rectifier in series-series compensated inductive wireless power transfer link at load-independent-voltage-output frequency
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering
Reference23 articles.
1. Wireless power transfer – an overview;Zhang;IEEE Trans Ind Electron,2019
2. Investigation on power optimization principles for series-configured resonant coupled wireless power transfer systems;Truong;AEU - Int J Electron Commun,2019
3. “Maximizing the efficiency of wireless power transfer systems with an optimal duty cycle operation;Sis;AEU – Int J Electron Commun,2019
4. Design guidelines to avoid bifurcation in a series-series compensated inductive power transfer systems;Aditya;IEEE Trans Ind Electron,2019
5. Impedance matching and efficiency improvenet of a dual-band wireless power transfer system using variable inductance and coupling method;Fereshtian;AEU - Int J Electron Commun,2020
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1. Coil-to-Coil Efficiency of ISS-Compensated Inductive Wireless Power Transfer Links Operating with Load-Independent Output Voltage at Fixed Frequency;2023 International Conference on Clean Electrical Power (ICCEP);2023-06-27
2. Simple Enhancement of Series–Series-Compensated Inductive Wireless Power Transfer Links Operating With Load-Independent Voltage Output at Fixed Frequency to Attain Zero Inverter Phase Angle;IEEE Transactions on Power Electronics;2023-05
3. A Three-Coil Wireless Power Transfer System using Self-Resonant Open-Bifilar Coils;AEU - International Journal of Electronics and Communications;2022-09
4. Output characteristics modeling and experimental verification of secondary-uncompensated inductive power delivery link operating without feedback;Energy;2022-08
5. Output characteristics of none-series compensated inductive wireless power transfer link operating at load-independent-voltage-output frequency;Simulation Modelling Practice and Theory;2022-02
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