期刊文献+

分布式无线电能传输网 被引量:9

Study on Distributed Wireless Power Transfer Network
下载PDF
导出
摘要 无线电能传输技术是有效解决移动设备,特别是特殊环境下电设备电能可靠灵活接入的最佳解决方案。然而,通常意义下无线电能传输技术只能以"点对点"模式实现电源对受电设备的直接供电。针对空间分布的多设备供电问题,提出分布式无线电能传输网概念,并给出了其平面型自组织网络结构。在此基础上,提出了基于共振模式的节点间能量传输模式及节点的结构。最后,就分布式无线电能传输网的能量传输效率和传统点对点传输模式的传输效率进行了比较分析。 Wireless Power Transfer technology is an efficient method to realize power supply for mobile vehicles, especially in special environment. However, classic wireless power transfer technology can only resort to "Point to Point" mode to realize direct power supply form power source to load. The paper put forwards concept-Of distribnted wireless power transfer aiming at power supply for distributes devices. And a kind of plane self-organizing network structure is presented. The network node structure and energy transfer mode based on magnetic resonace are presented as well. Furthermore, the energy transfer efficiency analysis is given for comparison with classic direct energy transfer.
出处 《电力电子》 2010年第3期59-61,84,共4页 Power Electronics
关键词 无线电能传输 自组织 磁共振 分布式 Wireless powertransfer Self-organizing Magnetic resonance Istribute
  • 相关文献

参考文献13

  • 1Takamiya M., Sekitani T., Miyamoto Y., Noguchi Y., Kawaguchi H., Someya T., Sakurai T.Design Solutions for a Multi-Object Wireless Power Transmission Sheet Based on Plastic Switches[J]. Proximity Data and Power Transmion. 2007. 20(4) :362-609.
  • 2Someya T. Ambient Electronics with Organic Transistors, 2007 Symposium on V/LSI Circuits [C]. 2007 Symposium on V/LSI Circuits Digest of Technical Papers. 2007:116-119.
  • 3Liu L. C., Takamiya M., Sekitani T., Noguchi Y., Nakano S., Zaitsu K., Kuroda T., Someya T., Sakurai T. A 1071aJ/b 100kb/s 0.18um Capacitive-Coupling Transceiver for Printable Trends in Signal and Power Transmission[C]. ISSCC 2008. 2008:292-614.
  • 4Imura T., Okabe H., Hori Y. Basic Experimental Study on Helical Antennas of Wireless Power Transfer for Electric Vehicles by Using Magnetic Resonant Couplings[C]. IEEE Computer Society. Dearborn, MI, United states. 2009:936-940.
  • 5Karalis A., Joannopoulos J. D., Soljacic M. Efficient Wireless Non- Radiative Mid-Range Energy Transfer[J]. Annals of Physics. 2008 323(1):34-48.
  • 6Kurs A., Karalis A., Moffatt R., Joannopoulos J. D., Fisher P., Soljacic M. Wireless Power Transfer Via Strongly Coupled Magnetic Resonances [J]. SCIENCE. 2007. 317(5834) :83-86.
  • 7Gozalvez J. WiTricity - The Wireless Power Transfer[J]. IEEE Vehicular Technology Magazine. 2007:38-44.
  • 8Su Y. P., Liu X., Hui S. Y. R. Mutual Inductance Calculation of Movable Planar Coils on Parallel Surfaces[J]. IEEE Transactions on Power Electronics. 2009. 24(4) :1115-1123.
  • 9Liu X., Hni S. Y. R. Optimal Design of a Hybrid Winding Structure for Planar Contactless Battery Charging Platform[J]. IEEE Transactions on Power Electronics. 2008.23(1):455-463.
  • 10Qianhong Chen, Siu Chung Wong, Tse C. K., Xinbo Ruan. Analysis, Design, and Control of A Transcutaneous Power Regulator for Artificial Hearts[J]. IEEE Transactions on Biomedical Circuits and Systems, 2009, 3(1):23-31.

二级参考文献10

  • 1卡兰塔罗夫 陈汤铭 译.电感计算手册[M].北京:机械工业出版社,1992..
  • 2Keith W Klontz, Deepakraj M Divan, D W Novotny, et al.Contactless power delivery system for mining applications [Jl IEEE Trans. on Ind. Applicat., 1995, 31(1): 27-35.
  • 3N Macabrey, M Jufer, P Germanno. Contactless induction energy transmission system for high speed vehicles-Application to Swissmetro [ A ]. Proc. of Maglev' 95 [ C ].Lausanne, Switzerland, 355-361.
  • 4Schin-ichi Adachi, Fumihiro Sato, et al. Consideration of contactless power station with selective excitation to moving robot [J]. IEEE Trans. on Mag., 1999, 35(5): 3583-3585.
  • 5The Technology Press Massachusetts Institute of Technology.Magnetic Circuits and Transformers [M]. John Wiley & Sons,Inc. London: Chapman & Hall, LTD. 1946.
  • 6周克定 张肃文 董天临.电磁场与电磁波[M].北京:机械工业出版社,2000..
  • 7C Fernandez, O Garcia, R Prieto, et al. Overview of different alternatives for the eontaetless transmission of energy [ A ].IECON '02 [C]. Sevilla, Spain, 2002. 1318-1323.
  • 8Wu Ying, Yan Luguang, Xu Shangang. A new contactless power delivery system [ A]. Proe. of ICEMS'2003 [ C].Beiiinz, China. 2003. 253-256.
  • 9武瑛,严陆光,徐善纲.新型无接触能量传输系统[J].变压器,2003,40(6):1-6. 被引量:62
  • 10武瑛,严陆光,黄常纲,徐善纲.新型无接触电能传输系统的性能分析[J].电工电能新技术,2003,22(4):10-13. 被引量:99

共引文献36

同被引文献79

  • 1于春来,朱春波,毛银花,陈清泉.谐振式无线能量传输系统驱动源[J].电工技术学报,2011,26(S1):177-181. 被引量:9
  • 2孙跃,王智慧,戴欣,苏玉刚,李良.非接触电能传输系统的频率稳定性研究[J].电工技术学报,2005,20(11):56-59. 被引量:112
  • 3Kurs A, Karalis A, Moffatt R, et al. Wireless Power Transfer Via Strongly Coupled Magnetic Resonances[J]. Science, 2007,317 (5834) :83-86.
  • 4Sample AP, Meyer DA, Smith JR. Analysis, Experimental Results, and Range Adaptation of Magnetically Coupled Resonators for Wireless Power Transfer [ J ]. IEEE Transactions on Industrial Electronics, 2011,58 (2) :544-554.
  • 5Yin N, Xu G, Yang Q, et al. Analysis of Wireless Energy Transmissionfor Implantable Device Based on Coupled Magnetic Reso- nance[ J]. IEEE Transactions on Magnetics, 2012,48(2) :723-726.
  • 6Imura T, Hori Y. Maximizing Air Gap and Efficiency of Magnetic Resonant Coupling for Wireless Power Transfer Using Equivalent Circuit and Neumann Formula[ J]. IEEE Transactions on Industrial Electronics, 2011,58 (10) :4746-4752.
  • 7Cannon BL, Hoburg JF, Stancil DD, et al. Magnetic Resonant Coupling as a Potential Means for Wireless Power Transfer to Multi- ple Small Receivers [ J ]. IEEE Transactions on Power Electronics, 2009,24 (7) : 1819-1825.
  • 8Hirayama H, Ozawa T, Hiraiwa Y, et al. A Consideration of Electro-Magnetic-Resonant Coupling Mode in Wireless Power Trans- mission [ J ]. IEICE Electronics Express, 2009,6 (19) : 1421-1425.
  • 9Kim Y, Ling H. Investigation of Coupled Mode Behaviour of Electrically Small Meander Antennas [ J ]. Electronics Letters, 2007, 43(23) :1250-1252.
  • 10Kurs Andre, Karalis Aristeidis, Robert, et al. Wireless power transfer via strongly coupled magnetic resonances [ J ]. Sciencexpress, 2007,10 (1126) : 1-4.

引证文献9

二级引证文献63

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