期刊文献+

电容补偿对无线能量传输系统性能影响的实验研究

The Experimental Research of the Capacitor Compensated on the Influence of the Wireless Power Transmission System Performance
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摘要 首先介绍了无线能量传输系统的基本构成和初次级电容补偿模型,然后建立以松耦合变压器为基础的无线电能传输系统,对不同初次级电容补偿模型进行试验研究。结果表明:初级串联补偿可以显著降低电源所需供应的电压,初级并联补偿可以有效降低初级绕组的电流。次级补偿也可降低输入电压和初级绕组的发射电流,与初级补偿相比,电压下降幅度小得多。在初次级均补偿情况下,输入电压和初级绕组电流均下降,功率因数都有提高。在串并补偿情况下输入电压最小,功率因数最高。 The basic constitutions of a Wireless Power Transmission(WPT)system and primary and secondary compensated topologies are introduced.Then,based on a loosely coupling transformer,the WPT system are designed.The results show that the primary compensated in series can reduce the voltage of power supply evidently,the primary comensated in parallel can reduce the current of the primary;the secondary compensated may also reduce the input voltage and primary winding's emission current,compares with the primary compensated,the voltage decline rate is much smaller;both the primary and secondary compensated,the input voltage and the primary current drop,the power factor is increased.But in the situation of SP comensated model,the input voltage is the smallest and the power factor is the highest.
出处 《科学技术与工程》 2011年第11期2596-2599,共4页 Science Technology and Engineering
基金 广东省自然科学基金项目(10151148301000001)资助
关键词 无线能量传输 松耦合 补偿 the wireless power transmission loosely coupling compensate
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参考文献5

  • 1Bingyi Z, Hongbin L, Guihong F. Study of the separable transformerused in contactless electrical energy transmission system. In: Trans- mission and Distribution Conference and Exhibition: Asia and Pacif- ic, 2005.
  • 2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
  • 3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
  • 4Heinloth K. Wireless power transmission. In: Fossil energy. Spring- er-Verlag,2002 : 187--199.
  • 5Suh Y H,Kai C F. A high-efficiency dual-frequency rectenna for 2. 45-and 5.8-ghz wireless power transmission. In: IEEE Transactions on Microwave Theory and Techniques, 2002:1784--1789.

二级参考文献8

  • 1[1]K W Klontz, D M Divan, et al. Contactless power delivery system for mining applications [J]. IEEE Trans. on Industry Applications, 1995, 31(1): 27-35.
  • 2[2]Schin-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.
  • 3[3]Wen H Ko, Sheau P Liang, et al. Design of radio-frequency powered coils for implant instruments [J]. Med. & Biol. Eng. & Comput., 1977,15: 634-640.
  • 4[4]G A J Elliott, J T Boys, A W Green. Magnetically coupled systems for power transfer to electric vehicles [Z]. IEEE Catalogue No. 95th8025:797-801.
  • 5[6]Albert Esser, Hans-Skudelny. A new approach to power supplies for robots [J]. IEEE Trans. on Industry Applications, 1991, 27(5): 872-875.
  • 6[7]D Giuliani, R McMahon, D Engel. Pacing toothbrush [P]. U S A: #5,544382, August 13,1996.
  • 7[8]N Macabrey, M Jufer, P Germanno. Contactless induction energy transmission system for high speed vehicles--application to Swissmetro [A]. Proc. of Maglev'95 [C]. Bremen, Germany, 1995. 355-361.
  • 8李宏.感应电能传输——电力电子及电气自动化的新领域[J].电气传动,2001,31(2):62-64. 被引量:53

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