Publication Cover
EPE Journal
European Power Electronics and Drives
Volume 31, 2021 - Issue 1
142
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Comparison of main design concepts of auxiliary drives for DC catenary fed light traction vehicles: SiC JFET vs Si IGBT technology

ORCID Icon, , &

References

  • Ranstad P, Nee H-P, Linner J, et al. An experimental evaluation of SiC switches in soft-switching converter. IEEE Trans Power Electron. 2014;29:2527–2538.
  • Zhang H, Tolbert LM Efficiency of SiC JFET-based inverters. IEEE 4th International conference on Industrial Electronics and Applications; 2009 May 25-27; Xian (China).
  • Leon-Masich A, Valderrama-Blavi H, Bosque-Moncusí JM, et al. Boost PFC for LED applications. IEEE Trans Power Electron. 2016;31(2):1633–1642.
  • Jordan J, Esteve, V, Sanchis-Kilders E, et al. A comparative performance study of a 1200 V Si and SiC MOSFET intrinsic diode on an induction heating inverter. IEEE Trans Power Electron. 2014;29(5):2550–2562.
  • Tang X, Wu H, Zhao J, et al. Family of half-bridge LLC resonant converters with auxiliary switches for hold-up operation. IET Power Electron. 2019;12(6):1376–1384.
  • Pan H, He C, Ajmal F, et al. Pulse-width modulation control strategy for high efficiency LLC resonant converter with light load applications. IET Power Electron. 2014;7:2887–2894.
  • Hang L, Li B, Liu S, et al. Asymmetrical secondary structure of LLC series resonant DC/DC converter for multi-output applications. IET Power Electron. 2011;4:993–1001.
  • McGrath BP, Holmes DG, McGoldrick  PJ, et al. Design of a soft-switched 6-Kw battery charger for traction applications. IEEE Trans Power Electron. 2007;22(4):1136–1144.
  • Oggier GG, Ordonez M. Boundary control of full-bridge ZVS: natural switching surface for transient and steady-state operation. IEEE Trans Ind Electron. 2014;61:969–979.
  • Chen Z, Liu S. A soft switching full bridge converter with reduced parasitic oscillation in a wide load range. IEEE Trans Power Electron. 2014;29:801–811.
  • Lee CQ, Sooksatra S. Performance characteristics of the full-bridge zero voltage switching PWM resonant converter. IEEE Trans Ind Electron. 1991;98:462–468.
  • Ertl H, Kolar JW, Zach FC. A novel multicell DC-AC converter for applications in renewable energy systems. IEEE Trans Ind Electron. 2002;49:1048–1057.
  • Jiang T, Zhang J, Wu X, et al. A bidirectional LLC resonant converter with automatic forward and backward mode transition. IEEE Trans Power Electron. 2014;99:1.
  • Florez D, Diez R, Piquet H. DCM-operated series-resonant inverter for the supply of DBD excimer lamps. IEEE Trans Ind Appl. 2014;50(1):86–93.
  • Liu J, Zheng Z, Wang K, et al. “Comparison of boost and LLC converter and active clamp isolated full-bridge boost converter for photovoltaic DC system. J Eng. 2019;16:3007–3011.
  • Jang S-R, Ryoo H-J, Ahn S-H, et al. Development and optimization of high-voltage power supply system for industrial magnetron. IEEE Trans Ind Electron. 2012;59:1453–1461.
  • Guo W, Bai HK. A 10Kw 97%-efficiency LLC resonant DC/DC converter with wide range of output voltage for the battery chargers in plug-in hybrid electric vehicles. IEEE Transportation Electrification Conference and Expo; 2012 June 18-20; Dearborn, MI,USA.
  • Wang H, Shang M, Shu D. Design considerations of efficiency enhanced LLC PEV charger using reconfigurable transformer. IEEE Trans Veh Technol. 2019;68(9):8642–8651.
  • Wang H, Dusmez S, Khaligh A. Maximum efficiency point tracking technique for LLC based PEV chargers through variable DC link control. IEEE Trans Ind Electron. 2011;99:1.
  • Labella T, Yu W, Lai J-S, et al. A bidirectional-switch-based wide-input range high-efficiency isolated resonant converter for photovoltaic applications. IEEE Trans Power Electron. 2014;29:3473–3484.
  • Liu J, Zeng J. An integrated controller for high-frequency LCLC resonant inverter with phase-shifted control and frequency regulation. Int J Circ Theor Appl. 2017;45(1):47–62.
  • Wen H, Gong J, Zhao X, et al. Analysis of diode reverse recovery effect on ZVS condition for GaN-based LLC resonant converter. IEEE Trans Power Electron. 2019;34(12):11952–11963.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.