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The Study on the One-stage PFC-flyback Converter using the Soft Switching Technique

소프트 스위칭 기법을 이용한 1단 PFC-flyback 컨버터

  • Received : 2012.12.05
  • Accepted : 2013.03.02
  • Published : 2013.06.20

Abstract

The flyback converter has been applied widely in isolated DC/DC power converters because this converters employ a single MOSFET switch. The leakage inductance should be minimized for high efficiency of flyback converter. but in reality, it is very difficult. Namely, The Snubber circuit is essential to recover the leakage inductance stored energy when the switch is turn off. Flyback Converter typically operates in DCM mode and when switch is turn off in hard switching, this hard switching action results in a high power losses and switching stresses. In order to overcome these problems, a novel soft switching flyback converter using resonant snubber circuit is proposed in this paper. The resonant snubber circuit is composed of the transformer leakage inductance and a capacitor. To verify and confirm the proposed resonant snubber circuit, PSIM simulation and hardware prototype are implemented. Simulation and Experimental results indicate that the proposed resonant snubber circuit is effective.

Keywords

References

  1. Keith Billings, "Switchmode Power Supply Handbook," Mc Graw Hill, 1999.
  2. Ned Mohan, "Power Electronics," Wiley, 1995.
  3. Y. C. Jung, "Novel Energy Recovery Circuit for High Efficiency Flyback Converter," Journal of Power Electronics, Vol. 11, No. 6, pp. 529-534, Dec. 2006.
  4. D. Y. Jung, J. K. Lee, S. S. Hong, S. K. Han, S. C. Sakong, C. W. Roh, "A Characteristic Analysis of High Voltage Flyback Converter including Resonant Element," Journal of Power Electronics, Vol. 13, No. 3, pp. 186-195, Jun. 2008.
  5. S. S. Hong, S. K. Ji, Y .J. jung, C. W. Roh, "Analysis and design of high voltage flyback converter with resonant element," Journal of Power Electronics, Vol. 10, No. 2, pp. 107-114, Mar. 2010. https://doi.org/10.6113/JPE.2010.10.2.107
  6. M. G. Kim, Y. S. Jung, "A Novel Soft-Switching Two-Switch Flyback Converter with a Wide Operating Range and Regenerative Clamping," Journal of Power Electronics, Vol. 9, No. 5, pp. 772-780, Sep. 2009.
  7. H. Yuequan, L. Huber, M. M. Jovanovic, "Single-Stage Flyback Power-Factor-Correction Front-End for HB LED Application," Industry Applications Society Annual Meeting, 2009. IAS 2009. IEEE, pp. 1-8, Jul. 2009.
  8. B. S. Kim, I. H. Lim, J. H. Lee, H. S. Ryu, B. H Kwon, "A Single-Stage Single-Switch Flyback Converter with Synchronous Rectifier," Journal of Power Electronics, Vol. 11, No. 4, pp. 361-370, Aug. 2006.

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