Dissipation Analysis of IGBT Module in FB-ZVZCS-PWM Converter

Article Preview

Abstract:

Along with the government and market take more and more attention to the energy efficiency of power supply, the loss of IGBT module, as the core device, has become a hot topic. Firstly, the dynamic process of IGBT module is analyzed, an accurate and an estimation method of loss calculate are provided, then the working process and resonant process of phase shift full-bridge soft switching converter is discussed, and constitute of IGBT module loss in the circuit is analyzed. Finally the loss is calculated in the 350A inverter welder example, and a conclusion of reliability and proposal for design are given according to the calculation results.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1347-1354

Citation:

Online since:

October 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Maswood Ali I. A switching loss study in SPWM IGBT inverter[C]. Proceedings of 2nd IEEE International Conference on Power and Energy(PECon 08). Johor Baharu, Malaysia:IEEE, 2008: 609-612.

DOI: 10.1109/pecon.2008.4762548

Google Scholar

[2] Bierhof M H, Fuchs F W. Semiconductor losses in voltage source and current source IGBT converters based on analytical derivation[C]. Proceedings of 35th Annual IEEE Power Electronics Specialists Conference. Aachen, Germany: IEEE, 2004: 2836-2842.

DOI: 10.1109/pesc.2004.1355283

Google Scholar

[3] Al-Naseem O, Erickson R W, Carlin P. Prediction of switching loss variation by averaged switching modeling[C]. IEEE Applied Power Electronics Conference, New Orleans, APEC, (2000).

DOI: 10.1109/apec.2000.826111

Google Scholar

[4] P K Jain, W Kang, H Soin, et al. Analysis and design considerations of a load and line independent zero voltage switching full bridge DC/DC converter topology [J]. IEEE Trans. on Power Electronics, 2002, 17(9): 649-657.

DOI: 10.1109/tpel.2002.802181

Google Scholar

[5] R Ayyanar, N Mohan. Novel soft-switching DC-DC converter with full ZVS—range and reduced filter requirement-part 1: regulated-output applications[J]. IEEE Trans. on Power Electronics, 2001, 16(3): 184-192.

DOI: 10.1109/63.911142

Google Scholar

[6] M Borage, S Tiwari, S kotaiah. A passive auxiliary circuit achieves Zero voltage switching in full bridge converter over entire conversion range [J]. IEEE. PE Letters, 2005, 3(12): 141-143.

DOI: 10.1109/lpel.2005.863601

Google Scholar

[7] Pan Wulue, Xu Zhang, Zhang Jing, et al. Dissipation analysis of VSC-HVDC converter[J]. Proceedings of the CSEE, 2008, 28(21): 7-14(In Chinese).

Google Scholar

[8] Mao Peng, Xie Shaojun, Xu Zegang. Switching transients model and loss analysis of IGBT module [J]. Proceedings of the CSEE, 2010, 30(15): 40-47(In Chinese).

Google Scholar

[9] Chen Zhong, Liu Shasha, Shi Liangchen, et al. Power loss comparison of two full-bridge converters with auxiliary networks [J]. Proceedings of the CSEE, 2012, 32(18): 66-72(In Chinese).

DOI: 10.1109/ipemc.2012.6259126

Google Scholar

[10] Wu Rui, Wen Jialiang, Yu Kunshan, et al. Analysis on power dissipation in two-level voltage source converters under different modulation strategies [J]. Power System Technology, 2012, 36(10): 93-98.

Google Scholar

[11] Herfner A R. An investigation of the drive circuit requirements for the power insulated gate bipolar transistor (IGBT) [J]. IEEE Tran. on Power Electronics, 1991, 6(2): 208-219.

DOI: 10.1109/63.76807

Google Scholar

[12] Sheng K, Finney S J, Williams B W. A new analytical IGBT model with improved electrical characteristics [J]. IEEE Trans. on Power Electronics, 1999, 14(1): 98-107.

DOI: 10.1109/63.737597

Google Scholar

[13] Ji Shiqi, Zhao Zhengming, Yuan Liqiang, et al. Transient high voltage IGBT physical model[J]. Journal of Tsinghua University: Science and Technology, 2012, 52(11): 1578-1583(In Chinese).

DOI: 10.1109/ipemc.2012.6258985

Google Scholar

[14] Volker Zorngiebel, Mickael Hecquard, Emil Spahn, et al. Modular 50 kV IGBT switch for pulsed power applications[J]. IEEE Trans. on Plasma Science, 2011, 39(1): 364-367.

DOI: 10.1109/tps.2010.2068061

Google Scholar

[15] Chen Daolian, Yan Bin, Chen Feng, et al. Quasi single-stage unidirectional buck DC-DC converter mode grid-connected inverters with high frequency link [J]. Electric Machines and Control, 2012, 16(12): 54-60.

DOI: 10.1109/ifeec.2013.6687534

Google Scholar

[16] Nabael A, Takahashi I, Akagi H. A new neutral-point clamped PWM inverter [J]. IEEE Trans. on Industrial Application, 1981, 17(5): 518-523.

DOI: 10.1109/tia.1981.4503992

Google Scholar