參考文獻 |
[1] W. J. Gu and K. Harada, “A new method to regulate resonant converters,” IEEE Trans. on Power Electronics, vol. 3, no. 4, pp. 430-439, 1988.
[2] I. Batarseh, “Resonant converter topologies with three and four energy storage elements,” IEEE Trans. on Power Electronics, vol. 9, no. 1, pp. 64-73, 1994.
[3] A. K. S. Bhat, “Analysis, optimization and design of a series-parallel resonant converter,” in Proc. IEEE APEC, pp. 155-164, 1990.
[4] F. C. Lee, “High-frequency quasi-resonant converter technologies,” Proceedings of the IEEE, vol. 76, no. 4, pp. 377-390, 1988.
[5] K. H. Liu and F. C. Lee., “Zero-voltage switching technique in DC-DC converters,” IEEE Trans. on Industrial Electronics, vol. 5, no. 3, pp. 293-304 1986.
[6] R. Liu, and C. Q. Lee, “Analysis and design of LLC-type series resonant convertor,” IEE Electron Letter, vol. 24, no.24 , pp. 1517 -1519,1988
[7] Energy Star, 2007: http://www.energystar.gov/
[8] European Commission, 2007: http://ec.europa.eu/index_en.htm
[9] B. Wang, X. Xin, “Analysis and Implementation of LLC Burst Mode for Light Load Efficiency Improvement,” in Proc. IEEE APEC, pp. 58-64, 2009.
[10] W. Feng, F.-C. Lee, “LLC resonant converter burst mode control with constant burst time and optimal switching pattern,” in Proc. IEEE APEC, pp. 6-12, 2011.
[11] R. Beiranvand, “Optimizing the LLC–LC Resonant Converter Topology for Wide-Output-Voltage and Wide-Output-Load Applications,” IEEE Trans. on Power Electronics, vol. 26, pp. 3192-3204, 2011
[12] S. Kim and P. N. Enjeti, “A Modular Single-Phase Power-Factor- Correction Scheme With a Harmonic Filtering Function,” IEEE Trans. on Industrial Electronics, vol. 50, No. 2, pp. 328-335, Apr., 2003.
[13] N. Mohan, T.-M. Undeland, and W.-P. Robbins, “Power electronics,” Third Edition, John Wiley & Sons, 2002.
[14] K. Raggl, T. Nussbaumer, G. Doerig, J. Biela and J. W. Kolar, “Comprehensive Design and Optimization of a High-Power-Density Single-Phase Boost PFC,” IEEE Trans. on Power Electronics, vol. 56, pp. 2574-2587, Jul., 2009.
[15] M. Matsuo, K. Matsui, I. Yamamoto and F. Ueda, “A comparison of various DC-DC converters and their application to power factor correction,” IEEE Industrial Electronics Society, vol. 2, pp. 1007-1013, Oct., 2000.
[16] M. S. Dawande and G. K Dubey, “Programmable input power factor correction method for switch-mode rectifiers,” IEEE Trans. on Power Electronics, vol. 11, pp. 585-591, Jul., 1996.
[17] C. A. Canesin, and I. Barbi, “Analysis and Design of Constant-Frequency Peak-Current-Controlled High-Power-Factor Boost Rectifier with Slope Compensation,” in Proc. IEEE APEC, pp. 807-813, 1996.
[18] P. J. Villegas, J. Sebastian, M. Hernando, F. Nuno and J. A. Martinez, “Average current mode control of series-switching post-regulators used in power factor correctors,” IEEE Trans. on Power Electronics, vol. 15, pp. 813-819, Sept., 2000.
[19] R. Srinivasan and R. Oruganti, “ A unity power factor converter using half-bridge boost topology,"IEEE Trans. on Power Electronics, vol. 13, No. 3, pp. 487-500, May, 1998.
[20] L. Huber, B. T. Irving and M. M. Jovanovic, “Open-loop control methods for interleaved DCM/CCM boundary boost PFC converters,” IEEE Trans. on Power Electronics, vol. 23, No. 4, pp. 1649-1657, Jul., 2008.
[21] J. W. Kim, S. M. Choi and K. T. Kim, ”Variable on-time control of the critical conduction mode boost power factor correction converter to improve zero-crossing distortion,” in Proc. IEEE PEDS, pp. 1542-1546, 2005.
[22] G. C. Chryssis, “High Frequency Switching Power Supplies: Theory & Design,” McGraw-Hill, 1989.
[23] A. I. Pressman, “Switching Power Supply Design,” Second Edition, McGraw-Hill, 1999.
[24] G. C Hsieh, C. Y. Tsai, and S. H. Hsieh, “Design considerations for LLC series-resonant converter in two-resonant regions,” in Proc. IEEE PESC, pp. 731-736, 2007. |