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

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感应耦合式非接触电能传输系统的设计

来源:电工电气发布时间:2016-03-15 14:15 浏览次数:688

感应耦合式非接触电能传输系统的设计 

沈慧娟,曾宪智

浙江嘉兴学院,浙江 嘉兴 314001 
 

摘 要:基于电磁感应原理,运用现代电力电子能量变换技术和控制方法,实现供电线路和用电设备之间的非接触电能传输。通过对初级变换器拓扑选择及主要元器件参数的分析,提出非接触电能传输系统的设计,并对系统的效率和补偿等关键问题进行了仿真及实验研究,提高了系统的传输效率。
关键词:可分离变压器;非接触电能传输;原副边补偿 
中图分类号:TM724 文献标识码:A 文章编号:1007-3175(2013)04-0024-04


Design of Inductive Coupling Contactless Power Transmission System 

SHEN Hui-juan, ZENG Xian-zhi 
Jiaxing University, Jiaxing 314001, China 
 

Abstract: On the basis of the principle of electromagnetic induction, the energy converting technology of modern power electronics and controlling methods were adopted to realize contactless power transmission between power lines and electrical equipments. A design of contactless power transmission system was set up by selecting the topology of primary converter and analyzing parameters of main components. Simulation and experimental study of key points on the efficiency and compensation of the system were completed, which improved transmission efficiency of the system.
Key words: detachable transformer; contactless power transmission; primary and secondary compensation


参考文献
[1] 盛松涛.感应耦合式电能无线传输关键技术研究[D].广州:华南理工大学,2007.
[2] 黄杰.非接触电能传输系统的研究[D].广州:广东工业大学,2009.
[3] Valtchev S,Borges B, Brandisky K,et al.Resonant Contactless Energy Transfer with Improved Efficiency[J].IEEE Transactions on Power Electronics,2009,24(3):685-699.
[4] 王兴,谢海明.高频逆变电路在非接触感应电能传输系统中的应用[J].电工电气,2011(9):31-34.
[5] 刘建.基于松耦合变压器的全桥谐振变换器的研究[D].南京:南京航空航天大学,2008.
[6] 潘冬婷.无接触电能传输系统的设计与实现[D].大连:大连理工大学,2010.
[7] 赵志斌,孙跃,周诗杰,田勇.非接触电能传输系统参数优化的改进遗传解法[J].西安交通大学学报:自然版,2012,46(2):106-112.
[8] 石鑫栋,戴宇,张钰,等.非接触式弱电实验供电平台的设计[J].现代电子技术,2011,34(24):3-5.