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Articles

Effect of design parameters on resonant wireless energy transfer system

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Pages 288-298 | Received 15 Aug 2012, Accepted 18 Oct 2012, Published online: 12 Nov 2012

References

  • Yu, C, Liu, C-J, Zhang, B, Chen, X, and Huang, K-M, 2011. An intermodulation recycling rectifier for microwave power transmission at 2.45 GHz, Prog. Electromagn. Res. 119 (2011), pp. 435–447.
  • Ravaud, R, Lemarquand, G, Lemarquand, V, Babic, SI, and Akyel, C, 2010. Mutual inductance and force exerted between thick coils, Prog. Electromagn. Res. 102 (2010), pp. 367–380.
  • Wei, X-C, Li, EP, Guan, YL, and Chong, YH, 2009. Simulation and experimental comparison of different coupling mechanisms for the wireless electricity transfer, J. Electromagn. Waves Appl. 23 (2009), pp. 925–934.
  • Kurs, A, Karalis, A, Moffatt, R, Joannopoulos, JD, Fisher, P, and Soljacic, M, 2007. Wireless power transfer via strongly coupled magnetic resonances, Science. 317 (2007), pp. 83–86.
  • Cannon, B, Hoburg, J, Stancil, D, and Goldstein, S, 2009. Magnetic resonant coupling as a potential means for wireless power transfer to multiple small receivers, IEEE Trans. Power Electron. 22 (2009), pp. 1819–1826.
  • Jang, B-J, Lee, S, and Yoon, H, 2012. Hf-band wireless power transfer system: concept, issues, and design, Prog. Electromagn. Res. 124 (2012), pp. 211–231.
  • Choi, J, and Seo, C, 2011. Analysis on transmission efficiency of wireless energy transmission resonator based on magnetic resonance, Prog. Electromagn. Res. M. 19 (2011), pp. 221–237.
  • Peng, L, Wang, JY, Ran, LX, Breinbjerg, O, and Mortnsen, NA, 2011. Performance analysis and experimental verification of mid-range wireless energy transfer through non-resonant magnetic coupling, J. Electromagn. Waves Appl. 25 (2011), pp. 845–855.
  • Choi, J, and Seo, C, 2010. High-efficiency wireless energy transmission using magnetic resonance based on negative refractive index metamaterial, Prog. Electromagn. Res. 106 (2010), pp. 33–47.
  • Carta, R, Sfakiotakis, M, Pateromichelakis, N, Thoné, J, Tsakiris, DP, and Puers, R, 2011. A multi-coil inductive powering system for an endoscopic capsule with vibratory actuation, Sens. Actuat. A: Phys. 172 (2011), pp. 253–258.
  • Vilaa, JL, Sallan, J, Llombart, A, and Sanz, JF, 2009. Design of a high frequency inductively coupled power transfer system for electric vehicle battery charge, Appl. Energy. 86 (2009), pp. 355–363.
  • Iero, DAM, Isernia, T, Morabito, AF, Catapano, I, and Crocco, L, 2010. Optimal constrained field focusing for focusing for hyperthermia cancer therapy: a feasibility assessment on realistic phantoms, Prog. Electromagn. Res. 102 (2010), pp. 125–141.
  • Din, NM, Chakrabarty, CK, Bin Ismail, A, Devi, KKA, and Chen, W-Y, 2012. Design of RF energy harvesting system for energizing low power devices, Prog. Electromagn. Res. 132 (2012), pp. 49–69.
  • Peng, L, Breinbjerg, O, and Mortensen, NA, 2010. Wireless energy transfer through non-resonant magnetic coupling, J. Electromagn. Waves Appl. 24 (2010), pp. 1587–1598.

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