感应耦合电能传输系统不同补偿拓扑的研究

被引:87
作者
周雯琪
马皓
何湘宁
机构
[1] 浙江大学电气工程学院
关键词
感应耦合电能传输(ICPT); 补偿拓扑; 功率因数; 谐振;
D O I
10.19595/j.cnki.1000-6753.tces.2009.01.023
中图分类号
TM46 [变流器];
学科分类号
摘要
比较了感应耦合电能传输(ICPT)系统的拓扑。讨论了ICPT系统中几种不同的补偿形式,包括单谐振补偿和多谐振补偿拓扑,并推导出匝比为1时每种拓扑的电压电流增益。为了最小化器件的电压电流应力和优化参数设计,介绍了谐振电路功率因数的概念。由分析结果及得到的曲线图可知,在单谐振补偿拓扑中,一次侧串联补偿与其余几种相比更能抵消漏感的影响。而几种多谐振补偿拓扑的效果则明显优于单谐振补偿拓扑。分析和比较了不同参数变化时的特性曲线,以便于进行电路设计。最后以一次、二次侧都进行并联补偿的一种电流型ICPT电路为例进行实验验证,以说明实际系统的性能。
引用
收藏
页码:133 / 139
页数:7
相关论文
共 16 条
  • [1] Electrical Circuits. Nilsson J W. . 1993
  • [2] A noncontact charger using resonant converter with parallel capacitor of the secondary coil. Abe H,Sakamoto H,Harada K. IEEE Transactions on Industrial Applications . 1998
  • [3] Power transfer capability and bifurcation phenomena of loosely coupled induc-tive power transfer systems. Wang C S,Covic G A,Stielau O H. IEEE Transactions on Industrial Electronics . 2004
  • [4] A novel circuit for noncontact charging through electro-magnetic coupling. Sakamoto H,Harada K. Proceedings of IEEE PESC1992 . 1992
  • [5] "Load models and their application in the design of loosely coupled inductive power transfer systems,". C. Wang,O. H. Stielau,G.A. Covic. IEEE-PES/IEE/DSEE International Conference ofn Power System Technology, POWERCON 2000 . 2000
  • [6] A synchronous Rectification using a digital PLL technique for contactless power supplies. Miura H,Arai S,Sato F,et al. IEEE Transactions on Magnetics . 2005
  • [7] High frequency resonant inverterfor contactless energy transmission over large air gap. Mecke R,Rarhge C. 35Ih Annual IEEE Power Electronics Speciolirts Confer-ence . 2004
  • [8] A Multi-Resonant Converter for Non-Contact Charging with Electromagnetic Coupling. R. Laouamer,M. Brunello,J. P. Ferrieux et al. IEEE .
  • [9] Investigating an LCL load resonant inverter for inductive power transfer applications. Wang C S,Covic G A,Oskar H,et al. IEEE Transactions on Power Electronics . 2004
  • [10] Energy transmission system for an artificial heart using leakage inductance compensation of transcutaneous transformer. Joung G B,Cho B H. IEEE Transactions on Power Electronics . 1998