A study on the effect of load variation on quality factor for single-phase half-bridge resonant converter

被引:0
作者
Baharom, R. [1 ]
Omar, M.F. [1 ]
Wahab, N. [1 ]
Salleh, M. [1 ]
Seroji, M.N. [1 ]
机构
[1] Faculty of Electrical Engineering, Universiti Teknologi MARA, Shah Alam, 40450, Selangor
来源
International Journal of Simulation: Systems, Science and Technology | 2013年 / 14卷 / 06期
关键词
Hybrid resonant converter; Parallel-loaded resonant converter; Quality factor; Series-loaded resonant converter;
D O I
10.5013/IJSSST.a.14.06.08
中图分类号
学科分类号
摘要
This paper studies on the effect of load variation on quality factor for the three types of half-bridge loaded resonant converter topologies; series resonant, parallel-resonant and series-parallel (hybrid) resonant for use in low output voltage power supply applications. The relationship between input voltage and output voltage (voltage gain/ratio) is used along with resonant frequency for determining parameters value to investigate the effect of quality factor (Q) on load variations. The results show that the hybrid resonant converter, which combines the best characteristics of the series-loaded resonant converters and parallel-loaded resonant converters, have the same characteristics with the series-loaded resonant converter in terms of quality factor on load variations. Computer simulation model was developed using MATLAB/Simulink and selected results are presented to verify the studies. © 2013, UK Simulation Society. All rights reserved.
引用
收藏
页码:53 / 60
页数:7
相关论文
共 10 条
  • [1] Steigerwald R.L., A comparison of half-bridge resonant converter topologies, IEEE Transactions on Power Electronics, 3, 2, pp. 174-182, (1988)
  • [2] Martin-Ramos J.A., Pernia A.M., Diaz J., Nuno F., Martinez J.A., Power Supply for a High-Voltage Application, IEEE Transactions on Power Electronics, 23, 4, pp. 1608-1619, (2008)
  • [3] Bai S., Pantic Z., Lukic S., A comparison study of control strategies for ZVS resonant converters, 36Th Annual Conference on IEEE Industrial Electronics Society -IECON 2010, pp. 256-262, (2010)
  • [4] Ke Y.-L., Chuang Y.-C., Yuan-Kang W., Cai S.-J., Photovoltaic energy battery chargers with a series-parallel load resonant converter, 2011 IEEE Industrial and Commercial Power Systems Technical Conference (I&Cps), pp. 1-8, (2011)
  • [5] Huang H., Designing an LLC Resonant Half-Bridge Power Converter, 2010 Texas Instruments Power Supply Design Seminar SEM1900
  • [6] Sheng H., Pei Y., Wang F., Impact of resonant tank structures on transformer size for a high power density isolated resonant converter, IEEE Power Electronics Specialists Conference, 2008, pp. 2975-2981, (2008)
  • [7] Sosa J.L., Castilla M., Miret J., De Vicuna L.G., Matas J., Modeling and Performance Analysis of the DC/DC Series–Parallel Resonant Converter Operating With Discrete Self-Sustained Phase-Shift Modulation Technique, IEEE Transactions on Industrial Electronics, 56, 3, pp. 697-705, (2009)
  • [8] Yang R., Ding H., Yun X., Yao L., Xiang Y., An Analytical Steady-State Model of LCC type Series–Parallel Resonant Converter With Capacitive Output Filter, IEEE Transactions on Power Electronics, 29, 1, pp. 328-338, (2014)
  • [9] Taufik T., McCarthy M., Watkins S., Anwari M., Performance study of Series Loaded Resonant converter using super barrier rectifiers, 2009 IEEE Region 10 Conference - TENCON 2009, pp. 1-5, (2009)
  • [10] Chuang Y.-C., Ke Y.-L., Chang S.-Y., Highly-Efficient Battery Chargers with Parallel-Loaded Resonant Converters, IEEE Industry Applications Society Annual Meeting, 2009, pp. 1-10, (2009)