Marinicic A,Budimir D.Tesla’s Contribution to Radiowave Propagation[C]//TELSIKS 5 th International Conference on Telecommunications in Modern Satellite, Cable and Broadcasting Service.Nis,Serbia:IEEE Computer Society,2001:327-331.
[2]
Brown W C.The history of wireless power transmission[J].Solar Energy,1996,56(1):3-2.
[3]
Glaser P E.Power from the sun:its future[J].Science,1968,162(3856):857-861.
[4]
Matsumoto H.Research on solar power satellites and microwave power transmission in Japan[J].IEEE Microwave Magazine,2002,3(4):36-45.
[5]
Nansen R H.Wireless power transmission:the key to solar power satellites[J].IEEE Transactions on Aerospace and Electronic Systems Magazine,1996,11(1):33-39.
[6]
Boys J T,Green A W.Inductively coupled power transmission:concept,design and application[C]//IPENZ Annual Conference.Nelson,New Zealand:The Institution of Professional Engineers New Zealand (IPENZ),1995: 1-9.
[7]
Wang C S,Stielau O H,Covic G A.Design considerations for a contactless electric vehicle battery charger[J].IEEE Transactions on Industrial Electronics,2005,52(5):1308-1314.
[8]
Yugami H,Kanamori Y,Arashi H,et al.Field experiment of laser energy transmission and laser to electric conversion[C]//Proceedings of the Intersociety Energy Conversion Engineering Conference.Honolulu,HI,USA: IEEE,1997:625-630.
[9]
Soljacic M,Kurs A,Karalis A,et al.Wireless power transfer via strongly coupled magnetic resonances [J].Science Express,2007,323(1):34-48.
[10]
赵争鸣,张艺明,陈凯楠.磁耦合谐振式无线电能传输技术新进展[J].中国电机工程学报,2013,33(3):1-13.Zhao Zhengming,Zhang Yiming,Chen Kainan.New progress of magnetically-coupled resonant wireless power transfer technology[J].Proceedings of the CSEE,2013,33(3):1-13(in Chinese).
[11]
孙跃,夏晨阳,戴欣,等.感应耦合电能传输系统互感耦合参数的分析与优化[J].中国电机工程学报,2010,30(33):44-50.Sun Yue,Xia Chenyang,Dai Xin,et al.Analysis and optimization of mutual inductance for inductively coupled power transfer system[J].Proceedings of the CSEE,2010,30(33):44-50(in Chinese).
[12]
Kurs A,Moffatt R,Soljacic M.Simultaneous mid-range power transfer to multiple devices[J].Applied Physics Letters,2010,96(4):23-30.
[13]
杨雪霞.微波输能技术概述与整流天线研究新进展[J].电波科学学报,2009,24(4):770-779.Yang Xuexia.Overview of microwave power transmission technology and recent progress of rectennas[J].Chinese Journal of Radio Science,2009,24(4):770-779(in Chinese).
[14]
何滔,杨苏辉,张海洋,等.高效激光无线能量传输及转换实验[J].中国激光,2013,40(3):1-6.He Tao,Yang Suhui,Zhang Haiyang,et al.Experiment of space laser energy transmission and conversion with high efficiency[J].Chinese Journal of Lasers,2013,40(3):1-6(in Chinese).
[15]
Toshihiko I,Yasuyuki K,Junichi O.Impact of a wireless power transmission system using an ultrasonic air transducer for low-power mobile applications[C]//IEEE Symposium on Ultrasonics.Honolulu,HI,United States:IEEE Ultrasonics, Ferroelectrics and Frequency Control Society,2003:1368-1371.
[16]
邹玉炜,黄学良,柏杨,等.基于PZT的超声波无接触能量传输系统的研究[J].电工技术学报,2011,26(9):144-150.Zou Yuwei,Huang Xueliang,Bai Yang,et al.Research on contactless ultrasonic energy transfer system based on PZT[J].Transactions of China Electrotechnical Society,2013,26(9):144-150(in Chinese).
[17]
Sanni A,Vilches A,Toumazou C.Inductive and ultrasonic multi-tier interface for low-power, deeply implantable medical devices[J].IEEE Transactions on Biomedical Circuits and Systems,2012,6(4):297-308.
[18]
Shaul O,Doron S.Ultrasonic transcutaneous energy transfer for powering implanted devices[J].Ultrasonics,2010,50(6):556-566.
[19]
Yang Zengtao,Guo Shaohua,Yang Jiashi.Transmitting electric energy through a closed elastic wall by acoustic waves and piezoelectric transducers[J].IEEE Transactions on Ultrasonics,Ferroelectrics,and Frequency Control,2008,55(6):1380-1386.
[20]
Michael P T.Effective capacitive power transfer[J].IEEE Transactions on Power Electronics,2012,27(2):4906-4913.
[21]
苏玉刚,徐健,谢诗云,等.电场耦合型无线电能传输系统调谐技术[J].电工技术学报,2013,28(11):189-194.Su Yugang,Xu Jian,Xie Shiyun,et al.A tuning technology of electrical-field coupled wireless power transfer system[J].Transactions of China Electro- -technical Society,2013,28(11):189-194(in Chinese).
[22]
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.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(in Chinese).
[23]
武瑛,严陆光,徐善纲.新型无接触电能传输系统的稳定性分析[J].中国电机工程学报,2004,24(5):63-66.Wu Ying,Yan Luguang,Xu Shangang.Stability analysis of the new contactless power delivery system [J].Porceedings of the CSEE,2004,24(5):63-66(in Chinese).
[24]
张献,杨庆新,陈海燕,等.电磁耦合谐振式传能系统的频率分裂特性研究[J].中国电机工程学报,2012,32(9):167-172.Zhang Xian,Yang Qingxin,Chen Haiyan,et al.Researchh on characteristic of frequency splitting in electromagnetic coupling resonant power transmission systems [J].Proceedings of the CSEE,2012,32(9):167-172(in Chinese).
[25]
Cheon S,Kim Y H,Kang S Y,et al.Circuit-model-based analysis of a wireless energy-transfer system via coupled magnetic resonances[J].IEEE Transactions on Industrial Electronics,2011,58(7):2906-2014.
[26]
黄虎,尤政,刘有军,等.一种高效安全的激光能量传输系统的设计仿真[J].清华大学学报:自然科学版,2012,52(4):421-424,435.Huang Hu,You Zheng,Liu Youjun,et al.Design and simulation of an efficient and safe laser power transmission system[J].Journal of Tsinghua University:Science & Technology,2012,52(4):421-424,435(in Chinese).
[27]
Huh J,Lee S W,Lee W Y,et al.Narrow-width inductive power transfer system for online electrical vehicles [J].IEEE Transactions on Power Electronics,2011,26(12):3666-3679.
[28]
Udaya K M,Duleepa J T.A bidirectional inductive power interface for electric vehicles in V2G systems[J].IEEE Transactions on Industrial Electronics,2011,58(10):4789-4796.
[29]
Lee W Y,Huh J,Choi S Y,et al.Finite-width magnetic mirror models of mono and dual coils for wireless electric vehicles[J].IEEE Transactions on Power Electronics,2013,28(3):1413-1428.
[30]
Shi Jianguang,Li Dejun,Yang Canjun.Design and analysis of an underwear inductive coupling power transfer system for autonomous underwear vehicle docking application[J].Journal of Zhejiang University- SCIENCE C:Computer & Electronics,2014,15(1):51-62.
[31]
Zargham M,Gulak P G.Maximum achievable efficiency in near-field coupled power-transfer systems[J].IEEE Transactions on Biomedical Circuits and Systems,2012 6(3):228-245.
[32]
Diao Yinliang,Shen Yuanmao,Gao Yougang.Design of coil structure achieving uniform magnetic field distribution for wireless charging platform[C]//2011 4 th International Conference on Power Electronic Systems and Applications(PESA).Hong Kong,China:IEEE Computer Society,2011:1-5.
[33]
艾维平,李铁军,王鹏,等.自动垂直钻井工具中非接触式供电系统研制[J].电力电子技术,2013,47(7):76-78.Ai Weiping,Li Tiejun,Wang Peng,et al.Development of contactless power supply system in automatic vertical drilling tools[J].Power Electronics,2013,47(7):76-78(in Chinese).
[34]
Seungyoung A,Yangbae C,Dong-Ho C,et al.wireless power transfer technology in on-line Electric Vehicle [J].Journal of the Korean Institute of Electromagnetic Engineering and Science,2011,11(3):174-182.
[35]
Takehiro I,Yoichi H.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.
[36]
Zhang Fei,Liu Jianbo,Mao Zhihong,et al.Mid-range wireless power transfer and Its application to body sensor networks[J].Open Journal of Applied Sciences,2012,2:35-46.
[37]
Li Xiuhan,Zhang Hanru,Peng Fei,et al.A wireless magnetic resonance energy transfer system for micro implantable medical sensors[J].Sensors,2012,12:10292- 10308.
[38]
Benjamin H W,Alanson P S,Pranmod B,et al.Powering a ventricular assist device(VAD) with the freerange resonant electrical energy delivery(FREE-D) system [J].Proceedings of the IEEE,2012,100(1):138- 149.
[39]
Kim N Y,Kim K Y,Kim C W.Automated frequency tracking system for efficient mid-range magnetic resonance wireless power transfer[J].Microwave and Optical Technology Letters,2012,54(6):1423-1426.
[40]
Bernd S,Kai C.Microwave power transmission:historical milestones and system components[J].Proceedings of the IEEE,2013,101(6):1379-1396.
[41]
Susumu S,Koji T,Ken-Ichiro M.Microwave power transmission technologies for solar power satellites [J].Proceedings of the IEEE,2013,101(6):1438-1447.
[42]
Schafer C A,Gray D.Transmission media appropriate laser-microwave solar power satellite system[J].Elsevier Acta Astronautica,2012,79:140-156.
[43]
Boris E C,Roman A E,Victor P L,et al.Remote electric power transfer between spacecrafts by infrared beamed energy[J].AIP Conference Proceedings,2011,1402:489-496.
[44]
Seung-Hwan L,Lorenz R D.Development and validation of model for 95% efficiency 220W wireless power transfer over a 30cm air gap[J].IEEE Trans.on Industry Applications,2011,47(6):2495-2504.
[45]
张献,杨庆新,崔玉龙,等.大功率无线电能传输系统能量发射线圈设计、优化与验证[J].电工技术学报,2013,28(10):12-18.Zhang Xian,Yang Qingxin,Cui Yulong,et al.Design optimization and verification on the power transmitting coil in the high-power wireless power transmission system [J].Transactions of China Electrotechnical Society,2013,28(10):12-18(in Chinese).
[46]
Bernd Strassner,Kai Chang.Microwave power transmission:historical milestones and system components[J].Proceedings of the IEEE,2013,101(6):1379-1396.
[47]
Nobuki Kawashima,Kazuya Takeda,Kyoichi Yabe.Application of the laser energy transmission technology to drive a small airplane[J].Chinese Optics Letters,2007(5):S109-S110.
[48]
Daniel E B,Richard C,Catherine C K,et al.Photovoltaic- concentrator based power beaming for space elevator application[C]//AIP Conference Proceedings.Scottsdale,Arizona:American Institute of Physics,2010:271-281.
[49]
Raabe S,Covic G A.Practical design considerations for contactless power transfer quadrature pick-ups[J].IEEE Transactions on Industrial Electronics,2013,60(1):400-409.
[50]
Budhia M,Covic G A,Boys J T.Design and optimization of circular magnetic structures for lumped inductive power transfer systems[J].IEEE Transactions on Power Electronics,2011,26(11):3096-3108.
[51]
Massimiliano A,Francesco D,Cristina C,et al.Modeling,fabrication and characterization of micro- coils as magnetic inductors for wireless power transfer [J].Microelectronic Engineering,2013(11):143-148.
[52]
Changbyung P,Sungwoo L,Gyu-Hyeong C,et al.Two- dimensional inductive power transfer system for mobile robots using evenly displaced multiple pick-ups[J].IEEE Transactions on Industry Applications,2013,(99):1-9.
[53]
Matsumoto H,Neba Y,Ishizaka K,et al.Model for a three-phase contactless power transfer system[J].IEEE Transactions on Power Electronics,2011,26(9):2676-2687.
[54]
Villa J L,Sallan J,Sanz O J F,et al.High-misalignment tolerant compensation topology for ICPT systems [J].IEEE Transactions on Industrial Electronics,2012,59(2):945-951.
[55]
杨民生,王耀南,欧阳红林,等.基于可控电抗器的无接触电能传输系统动态补偿[J].电工技术学报,2009,24(5):183-189.Yang Minsheng,Wang Yaonan,Ouyang Honglin,et al.Dynamic compensation of contactless power transmission system based on controlled reactor [J].Transactions of China Electrotechnical Society,2009,24(5):183-189(in Chinese).
[56]
Li H L,Hu A P,Covic G A.A direct AC-AC converter for inductive power transfer systems[J].IEEE Transactions on Power Electronics,2012,27(2):661-668.
[57]
王智慧,孙跃,苏玉刚,等.适用于非接触电能传输系统的新型AC/DC/AC变换器[J].电工技术学报,2010,25(1):84-89.Wang Zhihui,Sun Yue,Su Yugang,et al.A new type AC/DC/AC converter for contactless power transfer system[J].Transactions of China Electrotechnical Society,2010,25(1):84-89(in Chinese).
[58]
戴欣,孙跃,苏玉刚,等.非接触电能双向推送模式研究[J].中国电机工程学报,2010,30(18):55-61.Dai Xin,Sun Yue,Su Yugang,et al.Study on contactless power Bi-directional push mode[J].Proceedings of the CSEE,2010,30(18):55-61(in Chinese).
[59]
Madawala U K,Thrimawithana D J.Current sourced bi-directional inductive power transfer system[J].IET Power Electronics,2011,4(4):471-480.
[60]
戴欣,周继昆,孙跃.具有频率不确定性的π型谐振感应电能传输系统H∞控制方法[J].中国电机工程学报,2011,31(30):45-53.Dai Xin,Zhou JiKun,Sun Yue.H∞ control method with frequency uncertainty for π type resonant inductive power transfer system[J].Proceedings of the CSEE,2011,31(30):45-53(in Chinese).
[61]
Sheng-Liang H,Nan-Chyuan T,Chih-Che L.An innovative power regulation method applied for wireless magnetic-energy transportation[J].Mechatronics,2013,23:289-296.
[62]
强浩,黄学良,谭林林,等.基于动态调谐实现感应耦合无线电能传输系统的最大功率传输[J].中国科学:技术科学,2012,42(7):830-837.Qiang Hao,Huang Xueliang,Tan Linlin,et al.Achieving maximum power transfer of inductively coupled wireless power transfer system based on dynamic tuning control[J].Science China:Technology & Science,2012,42(7):830-837(in Chinese).
[63]
Cai Hua,Shi Liming,Li YaoHua.Harmonic-based phase-shifted control of inductively coupled power transfer[J].IEEE Transactions on Power Electronics,2013,29(2):594-602.
[64]
Zhang Wei,Wong Siu-Chung,Chi K T,et al.Design for efficiency optimization and voltage controllability of series-series compensated inductive power transfer systems[J].IEEE Transactions on Power Electronics,2013,29(1):191-200.
[65]
Ahn D,Hong S.Effect of coupling between multiple transmitters or multiple receivers on wireless power transfer[J].IEEE Transactions on Industrial Electronics,2013,60(7):2602-2613.
[66]
Dionigi M,Mongiardo M.A novel coaxial loop resonator for wireless power transfer[J].International Journal of RF and Microwave Computer-Aided Engineering,2012,22(3):345-352.
[67]
Yuan Q,Chen Q,Li L,et al.Numerical analysis on transmission efficiency of evanescent resonant coupling wireless power transfer system[J].IEEE Transactions on Antennas and Propagation,2010,58(5):1751-1758.
[68]
Ishizaki T,Komori T,Ishida T,et al.Comparative study of coil resonators for wireless power transfer system in terms of transfer loss[J].IECE Electronics Express,2011,7(11):785-790.
[69]
Hirayama H,Okuyama Y,Kikuma N,et al.Equivalent circuit of induction fed magnetic resonant WPT system[C]//2011 IEEE MIT-S International Micorwave Workshop Series on Innovative Wireless Power Transmission:Technologies, System, and Applications (IMWS).Kyoto,Japan:IEEE Microwave Theory and Techniques Society,2011:239-242.
[70]
Yoon I J,Ling H.Realizing efficient wireless power transfer using small folded cylindrical helix dipoles [J].IEEE Antennas and Wireless Propagation Letters,2010:846-849.
[71]
Uesaka T,Arai H.WPT by a pair of short helical dipoles[C]//IEEE MTT-S International Microwave Workshop Series on Innovative Wireless Power Transmission:Technologies,Systems, and Applications (IMWS).Kyoto,Japan:IEEE Microwave Theory and Techniques Society,2012:57-60.
[72]
Hamam R E,Karalis A,Joannopoulos J D,et al.Efficient weakly-radiative wireless energy transfer:An EIT-like approach[J].Annals of Physics,2009,324(8):1783-1795.
[73]
Takehiro I.Equivalent circuits for repeater antennas used in wireless power transfer via magnetic resonance coupling[J].Electrical Engineering in Japan,2013,183(1):51-62.
[74]
Wang B,Teo K H,Yamaguchi S,et al.Flexible and mobile near-field wireless power transfer using an array of resonators[J].The Institute of Electronics,Information and Communication Engineers,2012:10-16.
[75]
Kim J W,Son H C,Kim D H,et al.Wireless power transfer for free positioning using compact planar multiple self-resonators[C]//2012 IEEE MTT-S International Microwave Workshop Series on Innovative Wireless Power Transmission:Technologies, Systems, and Applications(IMWS).Kyoto,Japan:IEEE Microwave Theory and Techniques Society,2012:127-130.
[76]
Dukju A,Songcheol H.Effect of coupling between multiple transmitters or multiple receivers on Wireless power transfer[J].IEEE Transactions on Industrial Electronics,2013,60(7):2602-2613.
[77]
Rizal J,James V K,David J L.Analysis and practical considerations in implementing multiple transmitters for wireless power transfer via coupled magnetic resonance [J].IEEE Transactions on Industrial Electronics,2014,61(4):1774-1783.
[78]
Urzhumov Y,Smith D R.Metamaterial-enhanced coupling between magnetic dipoles for efficient wireless power transfer[J].American Physical Society,Physical Review B,2011,83(20):1-10.
[79]
Pai Y H,Yan Z Y,Fu P H.Enhanced saturation magnetization of Fe 3 Si nanodot-embedded Fe80Si17Nb3 flexible film for efficient wireless power transfer [J].Material Chemistry and Physics,2013,140:570-574.
[80]
Choi J H,Yeo S K,Park S,et al.Resonant regulating rectifiers (3R) operating for 6.78 MHz resonant wireless power transfer(RWPT)[J].IEEE Journal of Solid-State Circuits,2013,48(12):2989-3004.
[81]
Sample A P,Meyer D A,Smith J R.Analysis, experimental results, and range adaptation of magnetically coupled resonators for wireless power transfer[J].IEEE Transactions on industrial Electronic,2011,58(2):544-554.
[82]
谭林林,黄学良,黄辉,等.基于频率控制的磁耦合共振式无线电力传输系统传输效率优化控制[J].中国科学,2011,41(7):913-919.Tan Linlin,Huang Xueliang,Huang Hui,et al.Transfer efficiency optimal control of magnetic resonance coupled system of wireless power transfer based on frequency control[J].Science China,2011,41(7):913-919(in Chinese).
[83]
Beh T C,Kato M,Imura T,et al.Automated impedance matching system for robust wireless power transfer via magnetic resonance coupling[J].IEEE Transactions on Industrial Electronics,2012,60(9):3689-3698.
[84]
Lee W S,Lee H L,Oh K S,et al.Switchable distance-based impedance matching networks for a tunable HF system[J].Progress In Electromagnetics Research,2012,128:19-34.
[85]
Hoang H,Lee S G,Kim Y,et al.An adaptive technique to improve wireless power transfer for consumer electronics[J].IEEE Transactions on Consumer Electronics,2012,58(2):327-332.
[86]
孙立保.非辐射共振耦合无接触电能传输系统射频功率放大器开发[D].杭州:浙江大学,2013.Sun Linbao.Development of RF power amplifier used in non-radiative magnetic resonance strongly coupled wireless power transfer system[D].Hangzhou:Zhejiang University,2013(in Chinese).
[87]
Jaffe P,Mcspadden J.Energy conversion and transmission modules for space solar power[J].Proceedings of the IEEE,2013,101(6):1424-1437.
[88]
徐樱杰,王晶琦,朱晓维.GaN逆F高效率功率放大器及线性化研究[J].电子与信息学报,2012,34(4):981-985.Xu Yingjie,Wang Jingqi,Zhu Xiaowei.Investigation on GaN inverse class-F highly efficient power amplifier and linearization[J].Journal of Electronics & Information Technology,2012,34(4):981-985(in Chinese).
[89]
吴洋,许州,徐勇,等.低功率驱动的高功率微波放大器实验研究[J].物理学报,2011,60(4):1-6.Wu Yang,Xu Zhou,Xu Yong,et al.Experimental study on a high power microwave amplifier driven by low rf power[J].Acta Phys.Sin.2011,60(4):1-6(in Chinese).
[90]
Oliveri G,Poli L,Massa A.Maximum efficiency beam synthesis of radiating planar array for wireless power transmission[J].IEEE Transactions on Antennas and Propagation,2013,61(5):2490-2499.
[91]
Narita T,Kimura T,Anma K,et al.Development of high accuracy phase control method space solar power system [C]//IEEE MTT-S International Microwave Workshop Series on Innovative Wireless Power Transmission:Technologies, Systems, and Applications (IMWS).Kyoto,Japan:IEEE Microwave Theory and Techniques Society,2011:227-230.
[92]
Homma Y,Sasaki T,Namura K,et al.New phased array and rectenna array systems for microwave power transmission research[C]//IEEE MTT-S International Microwave Workshop Series on Innovative Wireless Power Transmission:Technologies,Systems,and Applications(IMWS).Kyoto,Japan:IEEE Microwave Theory and Techniques Society,2011:59-62.
[93]
Andrea M,Ciacomo O,Federico V,et al.Array designs for long-distance wireless power transmission:state-of- the-art and innovative solutions[J].Proceedings of the IEEE,2013,101(6):1464-1481.
[94]
Yang S Y,Kim J.Wireless power transmission using dipole rectennas made on flexible cellulose embrane [J].IET Microwave,Antennas&Propagation,2012,6(7):756-760.
[95]
Chiou H K,Chen I.High-efficiency dual-band on-chip rectenna for 35 and 94 GHz wireless power transmission in 0.13m CMOS technology[J].IEEE Trans.on Microw Theory Tech,2010,58(12):3598-3606.
[96]
Ojha S S,Singhal P K,Agarwal A,et al.2GHz dual diode dipole rectenna for wireless power transmission [J].International Journal of Microwave and Optical Technology,2013,8(2):86-92.
[97]
张彪,刘长军.一种高效的2.45 GHz二极管阵列微波整流电路[J].强激光与粒子束,2011,23(9):2444-2446.Zhang Biao,Liu Changjun.A high efficiency 2.45 GHz microwave rectifier based on diode array[J].High Power Laser and Particle Beams,2011,23(9):2444-2446(in Chinese).
[98]
Krupke W F,Beach R J,Payne S A,et al.DPAL:New class of lasers for CW power beaming at ideal photovoltaic cell wavelengths[C]//Second International Symposium on Beamed Energy Propulsion.Sendai,Japan:AIP Conference Proceedings,2003:367-377.
[99]
罗威,董文锋,杨华兵,等.高功率激光器发展趋势[J].激光与红外,2013,43(8):845-852.Luo Wei,Dong Wenfeng,Yang Huabing,et al.Development trend of high power lasers[J].Laser & Infrared ,2013,43(8):845-852(in Chinese).
[100]
Sung-Man K,Seong-Min K.Wireless optical energy transmission using optical beamforming[J].Optical Engineering,2013,52(4):1-5.
[101]
刘鹏,孙江曼,赵宝锋,等.聚合物光伏材料与器件研究进展[J].中国科学.化学,2013,43(11):1398-1406.Liu Peng,Sun Jiangman,Zhao Baofeng,et al.Research progress of polymer photovoltaic material and devices [J].Science China.Chimica,2013,43(11):1398-1406(in Chinese).
[102]
王子龙,张华,刘业风,等.三结砷化镓光伏电池电学特性的理论和实验分析[J].中国电机工程学报,2013,33(27):168-174.Wang Zilong,Zhang Hua,Liu Yefeng,et al.Detailed analysis of electrical characteristics of an InGaP/InGaAs/ Ge triple-junction solar cell[J].Proceedings of the CSEE,2013,33(27):168-174(in Chinese).
[103]
Mukherjee J,Jarvis S,Perren M,et al.Efficiency limits of laser power converters for optical power transfer applications[J].Journal of Physics D:Applied Physics,2013,46:1-6.
[104]
Christian A S.Continuous adaptive beam pointing and tracking for laser power transmission[J].Optics Express,2010,18(13):13451-13467.
[105]
Fang He,Yafeng Yin,Jing Zhou.Integrated pricing of roads and electricity enabled by wireless power transfer [J].Transportation Research Part C,2013(34):1-15.