Suzhou Electric Appliance Research Institute
期刊号: CN32-1800/TM| ISSN1007-3175

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有源功率因数校正控制技术现状与发展

来源:电工电气发布时间:2016-03-15 11:15 浏览次数:596

有源功率因数校正控制技术现状与发展 

万辉1,张捍东1,黄丹2 
1 安徽工业大学 电气信息学院,安徽 马鞍山 243032;
2 安徽理工大学 电气与信息工程学院,安徽 淮南 232001
 
 

摘 要: 介绍了有源功率因数校正(APFC) 技术的基本原理和分类,给出了几种主电路拓扑结构,分析了DCM 工作模式和CCM 工作模式两种控制方法,DCM 工作模式采用恒频、变频等控制方式,CCM工作模式采用峰值电流控制、平均电流控制和滞环电流控制等方式。对三相APFC 电路进行了归纳和分析,并展望了未来技术的发展趋势。
关键词: 有源功率因数校正;三相有源功率因数校正;控制;拓扑
中图分类号:TM714.1 文献标识码:A 文章编号:1007-3175(2013)03-0001-06


Control Technology Overview of Active Power Factor Correction 

WAN Hui1, ZHANG Han-dong1, HUANG Dan2 
1 School of Electric and Information Engineering, Anhui University of Technology, Maanshan 243032, China;
2 School of Electric and Information Engineering, Anhui University of Science and Technology, Huainan 232001, China
 
 

Abstract: Introduction was made to the basic principle and classification of active power factor correction (APFC) technology and several kinds of main circuit topology structure were given. Analysis was made to two kinds of control methods of discontinue current mode (DCM) and continue current mode (CCM). The DCM adopted constant frequency and variable frequency etc control modes and the CCM used peak current control, average current control, hysteretic current control and the like. This paper generalized and analyzed the three-phase active power factor correction circuit and expected the developmental trend of future technology.
Key words: active power factor correction; three-phase active power factor correction; control; topology


参考文献
[1] 王兆安,刘进军.电力电子技术[M].5版.北京:机械工业出版社,2009.
[2] 王平.基于DSP的APFC研究[D].武汉:华中科技大学,2009.
[3] 胡学芝,陈旭武.有源功率因数校正(APFC)技术综述[J].船电技术,2000(4):22-24.
[4] 任凌,李思扬,王志强.有源功率因数校正技术综述[J].通信电源技术,2005(4):23-25.
[5] Wang Shanshan.The research on paralleled interleaved Boost PFC converter[D].Hangzhou:Zhejiang University, 2010.
[6] 彭炼.移相全桥软开关变换器研究[J].科技创新导报,2009(32):2.
[7] 陈世杰,顾亦磊,吕征宇.一种Flyback软开关实现方法[J].电源技术应用,2004,7(7):390-393.
[8] Huber L, Jang Y, Jovanovic M.PerformanceEvaluation of Bridgeless PFC Boost Rectifiers[J].IEEE Transactions on Power Electronics,2009, 23(3):1381-1390.
[9] Jovanovic M M, Jang Y.State-of-the-art,Single-phase, Active Power-factor-correction Techniques for High-power Applications―an Overview[J].IEEE Transactions on Industrial Electronics, 2005, 52(3):701-708.
[10] Wu X, Tse C K, Wong S C, et al.Fastscale bifurcation in singlestage PFC power supplies operating with DCM boost stage and CCM forward stage[J].International Journal of Circuit Theory and Applications, 2006,34(3):341-355.
[11] Lu B, Brown R, Soldano M.Bridgeless PFC Implementation Using One Cycle Control Technique[C]//IEEE Applied Power Electronics Conference and Exposition, 2005, 2:812-817.
[12] Simonetti D S L, Sebastian J, Uceda J.The Discontinuous Conduction Mode Sepic and Cuk Power Factor Preregulators:Analysis and Design[J]. IEEE Transactions on Industrial Electronics, 1997, 44(5):630-637.
[13] 刘夏青,亢敏.高功率因数Boost-APFC电路仿真分析[J].西安工业大学学报,2010,30(1):79-82.
[14] 赖联有,陈仅星,许伟坚.Boost开关电源设计及仿真[J].江西理工大学学报,2010,31(2):29-32.
[15] 贲洪奇,张继红,刘桂花,等.开关电源中的有源功率因数校正技术[M].北京:机械工业出版社,2010.
[16] Wang Han. Research on high power single phase digital APFC[D].Shanghai:Shanghai Jiaotong University, 2009.
[17] 朱志明,陈俊杰.基于Boost变换器的ZVT软开关三相APFC仿真研究[J].电焊机,2012(6):11-17.
[18] 陈宝磊,沈锦飞.基于Cuk型单相合成三相APFC电路的研究[J].电力电子技术,2010,44(7):28-30.
[19] 李清兵.基于DSP的大功率三相APFC的研制[D].武汉:华中科技大学,2009.
[20] 胡方,门秀萍. 一种新型平均电流型APFC 电路的设计[J]. 安徽电子信息职业技术学院学报,2012(3):9-12.
[21] 张恩利,侯振义.有源功率因数校正主电路拓扑结构综述[J].电源世界,2004(1):10-14.
[22] 杨倩,牛鸣德.有源功率因数校正(APFC)技术综述[J].中国西部科技(学术),2007(9):12-14.
[23] Badin A A, Barbi I.Unity power factor isolated three-phase rectifier with split DC-bus based on the scott transformer[J].IEEE Transactions on Power Electronics, 2008,23(3):1278-1287.
[24] Takeuchi N, Matsui K, Yamamoto I, et al.A n o v e l P F C c i r c u i t f o r t h r e e - p h a s e utilizing a single switching device[C]//Telecommunications Energy International Conference, Kasugai, 2008, 1:1-5.
[25] Li Rui, Ma Ke, Xu Dehong. A novel 40 kW ZVS-SVM controlled three-phase boost PFC converter[C]//Applied Power Electronics Conference and Exposition, Hangzhou, 2009:376-382.
[26] Itoh J-I, Ashida I. A novel three-phase PFC rectifier using a harmonic current injection Method[J]. IEEE Transactions on Power Electron, 2008, 23(2):715-722.
[27] Kong P, Wang S, Lee F C. Common Mode EMI N o i s e S u p p r e s s i o n f o r B r i d g e l e s s P F C Converters[J]. IEEE Transactions on Power Electronics, 2008, 23(1):291-297.