首站-论文投稿智能助手
典型文献
Dynamic Power Transmission Using Common RF Feeder with Dual Supply
文献摘要:
This paper proposes the design concept of a dynamic charging system for electric vehicles using multiple transmitter coils con?nected to a common radio frequency (RF) feeder driven by a pair of two power supplies. Using a common RF feeder for multiple transmitter coils reduces the power electronic redundancy compared to a conventional system, where each transmitter coil is individually driven by one switched-mode power supply. Currently, wireless charging of electric vehicles is recommended to operate in the frequency range of 85 kHz and beyond. In this frequency range, the signal wavelength is shorter than about 3.5 km. Therefore, a charging pad longer than several hun?dred meters is subject to the standing wave effect. In such a case, the voltage significantly varies along the RF feeder, resulting in a variation in the received power level when the receiver moves. Specifically, the received power significantly deteriorates when the receiver is nearby a node of the voltage standing wave. In this paper, we employ a pair of two power sources which are electrically separated by an odd-integer number of the quarter wavelength to drive the RF feeder. As a result, the voltage standing wave generated by one power source is comple?mented by that of the other, leading to stable received power and transmission efficiency at all the receiver's positions along with the charging pad. Simulation results at the 85 kHz frequency band verify the output power stabilization effect of the proposed design. It is worth noting that the proposed concept can also be applied to simultaneous wireless information and power transfer (SWIPT) for passive radio frequency identi?fication (RFID) tags by raising the operation frequency to higher industrial, scientific and medical (ISM) bands, e.g., 13.56 MHz and employ?ing similar modulation methods as in the current RFID technology.
文献关键词:
作者姓名:
DUONG Quang-Thang;VO Quoc-Trinh;PHAN Thuy-Phuong;OKADA Minoru
作者机构:
Nara Institute of Science and Technology,Nara 630-0192,Japan;FPT University Da Nang,Da Nang 50500,Vietnam
引用格式:
[1]DUONG Quang-Thang;VO Quoc-Trinh;PHAN Thuy-Phuong;OKADA Minoru-.Dynamic Power Transmission Using Common RF Feeder with Dual Supply)[J].中兴通讯技术(英文版),2022(02):28-36
A类:
dred
B类:
Dynamic,Power,Transmission,Using,Common,Feeder,Dual,Supply,This,paper,proposes,design,concept,dynamic,charging,system,vehicles,using,multiple,transmitter,coils,nected,common,radio,frequency,feeder,driven,pair,two,power,supplies,reduces,electronic,redundancy,compared,conventional,where,each,individually,one,switched,mode,supply,Currently,wireless,recommended,operate,range,kHz,beyond,In,this,signal,wavelength,shorter,than,about,Therefore,pad,longer,several,hun,meters,subject,standing,effect,such,case,voltage,significantly,varies,along,resulting,variation,received,level,when,receiver,moves,Specifically,deteriorates,nearby,node,employ,sources,which,electrically,separated,odd,integer,number,quarter,generated,comple,mented,that,other,leading,stable,transmission,efficiency,positions,Simulation,results,verify,output,stabilization,proposed,It,worth,noting,also,applied,simultaneous,information,transfer,SWIPT,passive,identi,fication,RFID,tags,raising,operation,higher,industrial,scientific,medical,ISM,bands,MHz,similar,modulation,methods,current,technology
AB值:
0.543775
相似文献
FAST Observations of an Extremely Active Episode of FRB 20201124A.Ⅱ.Energy Distribution
Yong-Kun Zhang;Pei Wang;Yi Feng;Bing Zhang;Di Li;Chao-Wei Tsai;Chen-Hui Niu;Rui Luo;Ju-Mei Yao;Wei-Wei Zhu;Jin-Lin Han;Ke-Jia Lee;De-Jiang Zhou;Jia-Rui Niu;Jin-Chen Jiang;Wei-Yang Wang;Chun-Feng Zhang;Heng Xu;Bo-Jun Wang;Jiang-Wei Xu-National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100101,China;University of Chinese Academy of Sciences,Beijing 100049,China;Research Center for Intelligent Computing Platforms,Zhejiang Laboratory,Hangzhou 311100,China;Department of Physics and Astronomy,University of Nevada,Las Vegas,NV 89154,USA;Nevada Center for Astrophysics,University of Nevada,Las Vegas,NV 89154,USA;NAOC-UKZN Computational Astrophysics Centre,University of KwaZulu-Natal,Durban 4000,South Africa;CSIRO Space and Astronomy,PO Box 76,Epping,NSW 1710,Australia;Xinjiang Astronomical Observatory,Chinese Academy of Sciences,Urumqi 830011,China;Kavli Institute for Astronomy and Astrophysics,Peking University,Beijing 100871,China;Department of Astronomy,Peking University,Beijing 100871,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。