Title :
Circuit-Model-Based Analysis of a Wireless Energy-Transfer System via Coupled Magnetic Resonances
Author :
Cheon, Sanghoon ; Kim, Yong-Hae ; Kang, Seung-Youl ; Lee, Myung Lae ; Lee, Jong-Moo ; Zyung, Taehyoung
Author_Institution :
Convergence Components & Mater. Res. Lab., Electron. & Telecommun. Res. Inst., Daejeon, South Korea
fDate :
7/1/2011 12:00:00 AM
Abstract :
A simple equivalent-circuit model is developed for a wireless energy-transfer system via coupled magnetic resonances, and a practical design method is also provided. Node equations for the resonance system are built with the method, expanding on the equations for a transformer, and the optimum distances of the coils in the system are derived analytically for optimum coupling coefficients for high transfer efficiency. In order to calculate the frequency characteristics for a lossy system, the equivalent model is established at an electric-design automation tool. The model parameters of the actual system are extracted, and the modeling results are compared with measurements. Through the developed model, it is seen that the system can transfer power over a midrange of a few meters and that impedance matching is important to achieve high efficiency.
Keywords :
coils; equivalent circuits; impedance matching; inductive power transmission; magnetic resonance; transformers; circuit-model-based analysis; coupled magnetic resonances; electric-design automation tool; equivalent-circuit model; impedance matching; node equations; power transfer; wireless energy-transfer system; wireless power-transmission systems; Coils; Couplings; Equations; Loss measurement; Magnetic resonance; Mathematical model; Energy transfer; magnetic resonance; model; wireless;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2010.2072893