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线圈非同轴时磁耦合谐振式无线电能传输系统的效率优化 被引量:21

Optimum Efficiency Analysis of Wireless Power Transfer System via Coupled Magnetic Resonances with Lateral and Angular Misalignments
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摘要 针对磁耦合谐振式无线电能传输系统的发射线圈与接收线圈非同轴放置时系统的传输效率过低的问题,运用耦合模理论,推导出系统的效率表达式。并以此为基础,分析发射线圈与接收线圈非同轴放置时,系统传输效率的变化规律。为解决发射线圈与接收线圈之间非同轴放置时系统效率过低的问题,提出一种基于混沌优化算法的参数动态调节方法,该方法能使系统几个关键参数实现最优匹配,有效提高系统的传输效率。最后,研制了一套磁耦合谐振式无线电能传输系统装置。仿真和实验结果验证了理论分析的正确性。 Transmission efficiency will be reduced when transmission and receiving coils arealigned non-coaxially in the wireless power transfer system(WPT)via coupled magnetic resonances.The expression for the efficiency of the WPT system was derived by coupled-model theory(CMT).Thevariation rule of the transmission efficiency was analyzed according to this expression.In this paper,the method of adjusting parameters based on chaos optimization algorithm was proposed.Then keyparameters of the WPT system can be matched.It is shown the efficiency can be improved by theproposed method.A wireless power transmission system via magnetic resonance coupling was designed.Simulation and experimental results have verified the theory.
作者 李中启 黄守道 袁小芳 Li Zhongqi;Huang Shoudao;Yuan Xiaofang(College of Electrical and Information Engineering Hunan University Changsha 410082 China)
出处 《电工技术学报》 EI CSCD 北大核心 2017年第8期151-159,共9页 Transactions of China Electrotechnical Society
基金 国家自然科学基金(61104088) 湖南省自然科学基金(13JJ9023)资助项目
关键词 无线电能传输 参数匹配 最优效率 耦合模理论 Wireless power transfer parameters matching maximum efficiency coupled-mode theory
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  • 1Jang Y, Jovanovic M M. A contactless electricalenergy transmission system for portable-telephonebattery chargers [J]. IEEE Transactions on Industrial.Electronics, 2003, 50(3): 520-527.
  • 2Kurs A, Karalis A,Moffatt R, et al. Wireless powertransfer via strongly coupled magnetic resonances[J].Science Express, 2007, 317(5834): 83-86.
  • 3Tan L L, Huang X L,Qiang H. Efficiency analysisand optimization on magnetic resonance coupledwireless transfer system[J]. Advanced MaterialsResearch, 2011, 308-310: 1345-1348.
  • 4Karalisa A, Joannopoulosb J D, Soljacic M. Efficientwireless non-radiative mid-range energy transfer[J].Annals of Physics, 2008,323(1): 34-48.
  • 5Qiang H, Huang X L, Tan L L, et al. Study ontopology design of wireless power transfer for electricvehicle based on magnetic resonance coupling[J].Advanced Materials Research, 201 1,308-310:1000-1003.
  • 6Sample A P, Meyer D A, Smith J R. Analysis,experimental results, and range adaptation ofmagnetically coupled resonators for wireless powertransfer[J]. IEEE Transactions on IndustrialElectronics’ 2011, 58(2): 544-554.
  • 7Imura T, Hori Y. Maximizing air gap and efficiencyof magnetic resonant coupling for wireless powertransfer using equivalent circuit and neumann formula[J]. IEEE Transactions on Industrial Electronics, 2011,58(10):4746-4752.
  • 8Lee S H, Lorenz R D. Development and validation ofmodel for 95%-efficiency 220W wireless powertransfer over a 30cm air gap[J]. IEEE Transactionson Industry Applications, 2011, 47(6):2495-2504.
  • 9Fotopoulou K,Brian W F. Wireless power transfer inloosely coupled links: coil misalignment model[J].IEEE Transactions on Magnetics, 2011,47(2):416-430.
  • 10Lu Xiao, Sun Yue, Wang Zhihui. Development of current-fed ICPT system with quasi sliding mode control[J]. WSEAS Transactions on Circuit and System, 2012, 11(11): 351-360.

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