期刊文献+

开关电感Boost变换器建模与仿真分析 被引量:16

Modeling and Simulation Analysis of Switched Inductor Boost Converter
下载PDF
导出
摘要 针对光伏发电系统中传统Boost变换器的升压能力问题,将开关电感结构嵌入传统Boost变换器中,分析变换器功率开关器件的"ON"和"OFF"状态的工作机理,建立升压增益比与开关器件周期占空比之间的关系。利用状态空间平均法建立开关电感Boost变换器的数学模型,并在此模型基础上,对功率开关器件的不同工作频率进行仿真分析。仿真结果表明,开关电感Boost变换器不仅比传统Boost变换器具有更高的升压能力,而且在高开关频率下也能有效减小输出量的纹波,提升变换器的转换效率;同时也验证了模型的合理性和正确性,为工程实践设计提供理论支撑。 Aiming at the boost ability of the traditional boost converter in photovoltaic power generation system, the switched inductor structure is embedded in the traditional boost converter. The working mechanism of the converter is analyzed through the state of ON and OFF about power switch device and the relationship between the ratio of boost gain and the periodic duty of switch device is established. The mathematical model of switched inductor Boost converter is established by state space average method. Based on this model, simulation and analysis for different operating frequency of the power switching device is executed. The simulation results show that switched inductor Boost converter not only can have higher boost ability than the traditional Boost converter, but also can make the ripple of the output decreased effectively in high switching frequency to improve the conversion efficiency of converter. Meanwhile, it also proves the rationality and correctness of the model, and provides theoretical support for engineering design.
出处 《电源学报》 CSCD 2015年第4期77-84,共8页 Journal of Power Supply
基金 陕西省教育厅科研计划项目(14JF009) 陕西省工业科技攻关项目(2014K06-31)~~
关键词 开关电感 BOOST变换器 升压能力 建模 仿真 switched inductor Boost converter boost ability modeling simulation
  • 相关文献

参考文献12

  • 1徐德鸿,马皓.电力电子技术[M].北京:科学出版社,2006.
  • 2Huber L,Jovanovic M M. A design approach for server power supplies for networking applications [C]//Applied Power Electronics Conference and Exposition,2000. Fif- teenth Annual IEEE. IEEE, 2000,2 : 1163-1169.
  • 3Zhang M T,Jiang Y,Lee F C,et al. Single-phase three- level boost power factor correction converter [C]//Applied Power Electronics Conference and Exposition, 1995. APEC'95. Conference Proceedings 1995. IEEE, 1995:434- 439.
  • 4Jang Y,Jovanovie M N. New two-inductor boost converter with auxiliary transformer[J]. IEEE Transactions on Power Electronics,2004, 19(1) : 169-175.
  • 5Woffs P J. A eurrent-soureed DC-DC converter derived via the duality principle from the half-bridge converter [J]. Industrial Electronics,IEEE Transactions on, 1993,40 (1):139-144.
  • 6de Aragao Filho W C P,Barbi I. A comparison between two current-fed push-pull DC-DC converters-analysis, de- sign and experimentation[C]//Telecommunications Energy Conference, 1996. INTELEC'96. 18th International. IEEE, 1996 : 313-320.
  • 7王琳,胡雪峰,代国瑞,张纯.一种适于燃料电池发电用高增益Boost变换器[J].电源学报,2014,12(5):60-66. 被引量:7
  • 8张惠珍,陈浩龙.风能并网系统中双Boost变换器的研究[J].电源学报,2014,12(2):106-110. 被引量:2
  • 9曹文思,杨育霞.基于状态空间平均法的BOOST变换器仿真分析[J].系统仿真学报,2007,19(6):1329-1330. 被引量:49
  • 10董锋斌,皇金锋.基于状态空间法的DC-DC变换器的统一建模研究[J].电气技术,2008,9(7):21-23. 被引量:14

二级参考文献34

  • 1郭家荣,孟祥瑞,周耀.DC-DC开关电源管理芯片的设计[J].微计算机信息,2005,21(1):152-153. 被引量:30
  • 2曹文思,杨育霞.基于状态空间平均法的BOOST变换器仿真分析[J].系统仿真学报,2007,19(6):1329-1330. 被引量:49
  • 3隋绍勇,冯小平.Stratix Ⅱ FPGA系统电源设计[J].电子元器件应用,2007,9(3):36-38. 被引量:1
  • 4[3]Xinbo Ruan,Bin Li,and Qianhong Chen.Three-Level Converters-A New Concept.in High Voltage DC-to-DC Conversion"[J].IEEE PESC,2002:.663-668.
  • 5MANIKTALA S.精通开关电源设计[M].王志强,译.北京:人民邮电出版社,2008.
  • 6BROWN Marry.开关电源设计指南[M].徐德鸿,译.2版.北京:机械工业出版社,2004.
  • 7XU Ming, ZHOU Jing-hai, YAO Kai-wei. Small signal modeling of a high bandwidth voltage regulator using coupled inductors [J]. IEEE Trans. on Power Electronics,2007, 22 (2): 399-406.
  • 8PRESSMAN A I.开关电源设计[M].王志强,译.2版.北京:电子工业出版社,2005.
  • 9YAO Kai-wei, REN Yuan-cheng, LEE F C. Critical bandwidth for the load transient response of voltage regulator modules [J]. IEEE Trans. on Power Electronics, 2004, 19 (6):1554- 1461.
  • 10Krein P T.On the use of averaging for the analysis of power electronic systems[J].IEEE trans.On power Electronics (S0085-8993),1990,5(2):182-190.

共引文献116

同被引文献119

引证文献16

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部