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磁谐振式无线电能传输系统谐振器参数对传输性能的影响性分析

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Keywords: 无线电能传输,磁谐振,传输性能,参数归一,最优化

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Abstract:

针对磁谐振式无线电能传输系统进行设计,需要在不同场合下挖掘其最优化传输性能。通过对磁谐振式无线电能传输系统特别是目前常用的含中继谐振器的四线圈无线电能传输系统进行相应的理论建模分析,采用参数归一化解析理论,探讨最优化传输效率及最大化输出功率的影响因素以及在设计过程中两种实现目标的内在关系。通过理论仿真及实验验证的方式得出在系统工作频率确定的前提下,磁谐振式无线电能传输系统最优化传输效率以及最大化输出功率一定不拟合。将理论结果应用到无线电能传输系统的设计中,发现在系统设计条件不变的前提下,存在确定匝数及半径的能量接收线圈可使得系统传输效率或输出功率达到最优化。

References

[1]  黄学良,谭林林,陈中,等.无线电能传输技术研究与应用综述[J].电工技术学报,2013,28(10):1-11.
[2]  Huang Xueliang,Tan Linlin,Chen Zhong,et al.Review and research progress on wireless power transfer technology[J].Transactions of China Electrotechnical Society,2013,28(10):1-11.
[3]  张剑韬,朱春波,陈清泉.应用于无尾家电的非接触式无线能量传输技术[J].电工技术学报,2014,29(9):33-37.
[4]  Zhang Jiantao,Zhu Chunbo,Chen Qingquan.Contactless wireless energy transfer technology applied to tail-free household appliances[J].Transactions of China Electrotechnical Society,2014,29(9):33-37.
[5]  赵军,杨新生,徐桂芝,等.Witricity 系统对作用于人体胸腔电磁环境的研究[J].电工技术学报,2013,28(S2):200-203.
[6]  Zhao Jun,Yang Xinsheng,Xu Guizhi,et al.Research on electromagnetic environment to chest via witricity[J].Transactions of China Electrotechnical Society,2013,28(S2):200-203.
[7]  Ahn D,Hong S.Wireless power transmission with self-regulated output voltage for biomedical implant[J].IEEE Transactions on Industrial Electronics,2014,61(5):2225-2235.
[8]  Onar O C,Miller J M,Campbell S L,et al.A novel wireless power transfer for in-motion EV/PHEV charging[C].2013 Twenty-Eighth Annual IEEE Applied Power Electronics Conference and Exposition (APEC) Long Beach,CA,2013:3073-3080.
[9]  Shin J,Shin S,Kim Y,et al.Design and implementation of shaped magnetic-resonance-based wireless power transfer system for roadway-powered moving electric vehicles[J].IEEE Transactions on Industrial Electronics,2014,61(3):1179-1192.
[10]  Liu C,Chau K T,Zhang Z,et al.Multiple-receptor wireless power transfer for magnetic sensors charging on Mars via magnetic resonant coupling[J].Journal of Applied Physics,2015,117(17):17A743.
[11]  Zhang X,Ho S L,Fu W N.Quantitative analysis of a wireless power transfer cell with planar spiral structures[J].IEEE Transactions on Magnetics,2011,47(10):3200-3203.
[12]  Wang J,Li J,Ho S L,et al.Study and experimental verification of a rectangular printed-circuit-board wireless transfer system for low power devices[J].IEEE Transactions on Magnetics,2012,48(11):3013-3016.
[13]  Fotopoulou K,Flynn B W.Wireless power transfer in loosely coupled links:coil misalignment model[J].IEEE Transactions on Magnetics,2011,47(2):416-430.
[14]  王维,黄学良,周亚龙,等.双中继无线电能传输系统建模及传输效率分析[J].电工技术学报,2014,29(9):1-6.
[15]  Wang Wei,Huang Xueliang,Zhou Yalong,et al.Modeling and transmission efficiency analysis of wireless power transmission system with dual relays[J].Transactions of China Electrotechnical Society,2014,29(9):1-6.
[16]  Chen Linhui,Liu Shuo,Zhou Yongchun,et al.An optimizable circuit structure for high-efficiency wireless power transfer[J].IEEE Transactions on Industrial Electronics,2013,60(1):339-349.
[17]  黄学良,吉青晶,谭林林,等.磁耦合谐振式无线电能传输系统串并式模型研究[J].电工技术学报,2013,28(3):171-176.
[18]  Huang Xueliang,Ji Qingjing,Tan Linlin,et al.Study on series-parallel model of wireless power transfer via magnetic resonance coupling[J].Transactions of China Electrotechnical Society,2013,28(3):171-176.
[19]  Huang X L,Wang W,Tan L L,et al.Study of transmission performance on strong coupling wireless power transfer system in free position[C].Session 2P4 Near to Mid-range Wireless Power Transfer Technology:Principles and Applications 2,Moscow,2012:383.
[20]  П·Л·卡兰塔罗夫,Л·А·采伊特林.电感计算手册[M].陈汤铭,刘保安,罗应立,等译.北京:机械工业出版社,1992.
[21]  黄辉,黄学良,谭林林,等.基于磁场谐振耦合的无线电力传输发射及接收装置的研究[J].电工电能新技术,2011,30(1):32-35.
[22]  Huang Hui,Huang Xueliang,Tan Linlin,et al.Research on transmitter and receiver of wireless power transmission based on magnetic resonance coupling[J].Advanced Technology of Electrical Engineering and Energy,2011,30(1):32-35.

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