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Flyback Da-Da Dönüştürücüler için Yeni Bir RCD Pasif Bastırma Hücresinin Analiz ve Benzetimi

Year 2021, Volume: 1 Issue: 1, 1 - 5, 30.06.2021

Abstract

Darbe Genişlik Modülasyonlu (DGM) flyback da-da dönüştürücüler oldukça popüler olmalarının yanı sıra endüstride geniş bir yelpazede kullanım alanı bulurlar. Ancak bu dönüştürücülerde yarıiletken anahtar kesime girdiğinde, kaçak endüktanstan ötürü yarıiletken anahtar üzerinde gerilim pikleri oluşur. Bu nedenle kesime grime aşamasında gerilim piklerinin değerini sınırlamak için pasif ya da aktif bastırma hücreleri gerekir. Bu makalede flyback da-da dönüştürücüler için yeni bir pasif bastırma hücresi sunulmuştur. Önerilen bastırma hücresi düşük maliyet, kontrol kolaylığı ve basit yapı özelliklerine sahiptir. Makalede, dönüştürücünün detaylı analizi sunulmuş ve analizler benzetim çalışması ile doğrulanmıştır. Bütün analizler ve benzetim çalışması 100 kHz anahtarlama frekansı ve 16 W çıkış gücünde gerçekleştirilmiştir.

References

  • Abramovitz, A., Liao, C-S. & Smedley, K. (2013) State-Plane Analysis of Regenerative Snubber for Flyback Converters. IEEE Transactions On Power Electronics, 28, 5323-5332.
  • Ai, T-H. (2005) A novel integrated non-dissipative Snubber for flyback converter. Proceeding International Conference Systems and Signals. 66–71.
  • Gacio, D., Alonso, J. M., Calleja, A. J., García, J. & M. Rico-Secades. (2011) A universal-input single-stage high-power-factor power supply for HB-LEDs based on integrated buck-flyback converter. IEEE Transactions On Industrial Electronics, 58, 589–599.
  • Jung, S. & Chou, G-H. (2014) Transformer Coupled Recycle Snubber for High-Efficiency Offline Isolated LED Driver With On-Chip Primary-Side Power Regulation. IEEE Transactions On Industrial Electronics, 61, 6710-6719.
  • Meng, P., Wu, X., Yang, J., Chen, H. & Qian, Z. (2010) Analysis and design considerations for EMI and losses of RCD snubber in flyback converter. Proceeding IEEE APEC, 642–647.
  • Papanikolaou, N. P. & Tatakis, E. C. (2004). Active Voltage Clamp in Flyback Converters Operating in CCM Mode Under Wide Load Variation. IEEE Transactions On Industrial Electronics, 51, 632-640.
  • Rezai, M. A., Lee, K-J. & Huang, A. Q. (2016). A High-Efficiency Flyback Micro-inverter With a New Adaptive Snubber for Photovoltaic Applications. IEEE Transactions On Power Electronics, 31, 318-327.
  • Spiazzi, G., Buso, S. & Tagliavia, D. (2000) A low-loss high-power-factor flyback rectifier for smart power integration. Proceeding IEEE PESC’00, Galway, Ireland, 805–810.
  • Sukesh, N., Pahlevaninezhad, M. & Jain, P. K. (2014) Analysis and implementation of a single-stage flyback PV microinverter with soft switching. IEEE Transactions On Industrial Electronics, 61, 1819–1833.
  • Ting, N. S., Aksoy, I., & Sahin, Y. (2015). A new ZCT-ZVT PWM interleaved DC-DC boost converter. 2015 Intl Aegean Conference on Electrical Machines & Power Electronics (ACEMP), 2015 Intl Conference on Optimization of Electrical & Electronic Equipment (OPTIM) & 2015 Intl Symposium on Advanced Electromechanical Motion Systems (ELECTROMOTION), 250-256.
  • Ting, N. S., Sahin, Y., & Aksoy, I. (2017) Analysis, design and implementation of a zero voltage-transition interleaved boost converter. Journal of Power electronics, 17(1), 47-55.
  • Xie, X., Wang, J., Zhao, C., Lu, Q. & Liu, S. (2012) A novel output current estimation and regulation circuit for primary side controlled high power factor single-stage flyback LED driver. IEEE Transactions On Power Electronics, 27, 4602–4612.
  • Zhang, J., Huang, X., Wu, X. & Qian, Z. (2010) A high efficiency flyback converter with new active clamp technique. IEEE Transactions On Power Electronics, 25, 1175-1785.

Analysis and Simulation of Novel RCD Passive Snubber Cell for Flyback Dc-Dc Converters

Year 2021, Volume: 1 Issue: 1, 1 - 5, 30.06.2021

Abstract

Pulse Width Modulation (PWM) flyback dc-dc converters are pretty popular and have wide range application in the industry. Nevertheless, the leakage inductance issues cause high voltage spikes on the semiconductor switch when it is turned off. Consequently, passive or active snubber cells are needed at turned-off process for limiting the voltage spikes. In this paper, a novel passive snubber cell is proposed for PWM flyback dc-dc converter. The proposed snubber cell has low cost, ease of control and simple structure features. The detailed theoretical analysis of converter is presented and the analysis is demonstrated by a simulation setup in the paper. All analyses and simulation setup is made under 100 kHz switching frequency and 16 W output power conditions.

References

  • Abramovitz, A., Liao, C-S. & Smedley, K. (2013) State-Plane Analysis of Regenerative Snubber for Flyback Converters. IEEE Transactions On Power Electronics, 28, 5323-5332.
  • Ai, T-H. (2005) A novel integrated non-dissipative Snubber for flyback converter. Proceeding International Conference Systems and Signals. 66–71.
  • Gacio, D., Alonso, J. M., Calleja, A. J., García, J. & M. Rico-Secades. (2011) A universal-input single-stage high-power-factor power supply for HB-LEDs based on integrated buck-flyback converter. IEEE Transactions On Industrial Electronics, 58, 589–599.
  • Jung, S. & Chou, G-H. (2014) Transformer Coupled Recycle Snubber for High-Efficiency Offline Isolated LED Driver With On-Chip Primary-Side Power Regulation. IEEE Transactions On Industrial Electronics, 61, 6710-6719.
  • Meng, P., Wu, X., Yang, J., Chen, H. & Qian, Z. (2010) Analysis and design considerations for EMI and losses of RCD snubber in flyback converter. Proceeding IEEE APEC, 642–647.
  • Papanikolaou, N. P. & Tatakis, E. C. (2004). Active Voltage Clamp in Flyback Converters Operating in CCM Mode Under Wide Load Variation. IEEE Transactions On Industrial Electronics, 51, 632-640.
  • Rezai, M. A., Lee, K-J. & Huang, A. Q. (2016). A High-Efficiency Flyback Micro-inverter With a New Adaptive Snubber for Photovoltaic Applications. IEEE Transactions On Power Electronics, 31, 318-327.
  • Spiazzi, G., Buso, S. & Tagliavia, D. (2000) A low-loss high-power-factor flyback rectifier for smart power integration. Proceeding IEEE PESC’00, Galway, Ireland, 805–810.
  • Sukesh, N., Pahlevaninezhad, M. & Jain, P. K. (2014) Analysis and implementation of a single-stage flyback PV microinverter with soft switching. IEEE Transactions On Industrial Electronics, 61, 1819–1833.
  • Ting, N. S., Aksoy, I., & Sahin, Y. (2015). A new ZCT-ZVT PWM interleaved DC-DC boost converter. 2015 Intl Aegean Conference on Electrical Machines & Power Electronics (ACEMP), 2015 Intl Conference on Optimization of Electrical & Electronic Equipment (OPTIM) & 2015 Intl Symposium on Advanced Electromechanical Motion Systems (ELECTROMOTION), 250-256.
  • Ting, N. S., Sahin, Y., & Aksoy, I. (2017) Analysis, design and implementation of a zero voltage-transition interleaved boost converter. Journal of Power electronics, 17(1), 47-55.
  • Xie, X., Wang, J., Zhao, C., Lu, Q. & Liu, S. (2012) A novel output current estimation and regulation circuit for primary side controlled high power factor single-stage flyback LED driver. IEEE Transactions On Power Electronics, 27, 4602–4612.
  • Zhang, J., Huang, X., Wu, X. & Qian, Z. (2010) A high efficiency flyback converter with new active clamp technique. IEEE Transactions On Power Electronics, 25, 1175-1785.
There are 13 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Articles
Authors

Yakup Şahin 0000-0001-6792-2550

Publication Date June 30, 2021
Submission Date January 5, 2021
Published in Issue Year 2021 Volume: 1 Issue: 1

Cite

APA Şahin, Y. (2021). Analysis and Simulation of Novel RCD Passive Snubber Cell for Flyback Dc-Dc Converters. Rahva Journal of Technical and Social Studies, 1(1), 1-5.