A Study on Efficiency Improvement of High-frequency Current Output Inverter Based on Immittance Conversion Element

Author:

Suzuki Shun1,Shimizu Toshihisa1

Affiliation:

1. Tokyo Metropolitan University

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Mechanical Engineering,Energy Engineering and Power Technology,Automotive Engineering

Reference16 articles.

1. (1) A. Kurs, A. Karalis, R. Moffatt, J. D. Joannopoulos, P. Fisher, and M. Soljacic: “Wireless Power Transfer via Strongly Coupled Magnetic Resonances”, Science, Vol. 317, No. 5834, pp. 83-86 (2007)

2. (2) A. Karalis, J. D. Joannopoulos, and M. Soljai: “Efficiency wireless non-radiative mid-range energy transfer”, Annals of Physics, Vol. 323, No. 1, pp. 34-48 (2008)

3. (3) T. Imura, T. Uchida, and Y. Hori: “Flexibility of Contactless Power Transfer using Magnetic Resonance Coupling to Air Gap and Misalignment for EV”, The papers of Technical Meeting on Vehicle Technology, World Electric Vehicle Association Journal, Vol. 3 (2010)

4. (4) K. E. Koh, T. Imura, and Y. Hori: “Impedance Matching and Power Division Using Impedance Inverter for Wireless Power Transfer via Magnetic Resonant Coupling”, IEEE Trans. on Industry Applicatoins, Vol. 50, No. 3, pp. 2061-2070 (2014)

5. (5) A. P. Sample, A. Meyer, and J. R. Smith: “Analysis, experimental results, and range adaptation of magnetically coupled resonators for wireless power transfer”, IEEE Trans. on Industrial Electronics, Vol. 58, No. 2, pp. 544-554 (2011)

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