Abstract:With the continuous development and progress of technology, the wireless power transfer(WPT) technology has attracted wide spread attention recently. Especially in some specific occasions, the WPT technology has its unique advantages, which do not exist in the tradition V-MODE based on the wired power supply, to greatly improve the reliability, convenience and safety of power supply. In this paper, the development and application of WPT technology is investigated. Firstly, several major means of WPT technology and their relative merits are elaborated based on the development of WPT history. Secondly, in view of the current hot focus of WPT technology, the WPT based magnetically coupled resonance is discussed in detail, including its current research, analysis methods and some key technologies. Finally, the application focus and development prospects of WPT technology are further investigated.
黄学良, 谭林林, 陈中, 强浩, 周亚龙, 王维, 曹伟杰. 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, Qiang Hao, Zhou Yalong, Wang Wei, Cao Weijie. Review and Research Progress on Wireless Power Transfer Technology. Transactions of China Electrotechnical Society, 2013, 28(10): 1-11.
[1] 余卫国, 熊幼京, 周新风, 等. 电力网技术线损分析及降损对策[J]. 电网技术, 2006, 30(18): 54-63. Yu Weiguo, Xiong Youjing, Zhou Xinfeng, et al. Analysis on technical line losses of power grids and countermeasures to reduce line losses[J]. Power System Technology, 2006, 30(18): 54-63. [2] 王涛, 张坚敏, 李小平. 计划线损率的计算及其评价[J]. 电网技术, 2003, 27(7): 40-42. Wang Tao, Zhang Jianmin, Li Xiaoping. Calculaton of scheduled loss ratio and its assessment[J]. Power System Technology, 2003, 27(7): 40-42. [3] Tesla N, Apparatus for transmitting electrical energy: US 1119732[P]. 1914-10. [4] Yagi H, Uda S. Feasibility of electric power transm- ission by radio waves[C]. The 3rd Pan-Pacific Academic Conference, Tokyo, Japan, 1926. [5] Brown W C. Thermionic diode rectifier[J]. Micro- wave Power Engineering, 1968, 1: 295-298. [6] Brown W C. The combination receiving antenna and rectifier[J]. Microwave Power Engineering, 1968, 2: 273-275. [7] Matsumoto H. Numerical estimation of SPS microwave impact on ionospheric environment[J]. Acta Astronaut, 1982, 9(8): 493-497. [8] Brown W C. The history of power transmission by radio waves[J]. IEEE Transactions on Microwave Theory abd Technioues, 1984, 32(9): 1230-1242. [9] Brown W C, Eves E E. Beamed microwave power transmission and its application to space[J]. IEEE Transactions on Microwave Theory and Technioues, 1992, 40(6): 1239-1250. [10] 杨雁南. 激光用于无线电力传输的探索[C]. 中国光学学会2011年学术大会摘要集. 2011. [11] 宇飞. 用激光在太空中传输电力[J]. 激光与光电子学进展, 1980(5): 30-41. Yu Fei. Use laser to transmit power in space [J]. Laser & Optoelectronics Progress, 1980(5): 30-41. [12] Boys J T, Covic G A. Pick-up transformer for ICPT applications[C]. Electronics Letters. 2002: 1276-1278. [13] Hu A P, Boys J T, Frequency analysis and computation of a current-fed resonant converter for ICPT power supplies[C]. International Conference on Power System Technology, 2000: 327-332. [14] Wang Chwei-Sen, Stielau, Oskar H. Covic. Grant A. Design considerations for a contactless electric vehicle batter-y charger[J]. IEEE Transactions on Industrial Electronics, 2005, 52(5): 1308-1314. [15] Stielau O H, Covic G A, Design of loosely coupled inductive power transfer systems[C]. International Conference on Power System Technology, 2000: 85-90. [16] Kurs A, Karalis A, Moffatt R, et al. Wireless power tran sfer via strongly coupled magnetic resonances[J]. Science, 2007, 317(5834): 83-86. [17] Jeff R C, Jietao L A capacitively coupled battery charging system[J]. Fept. Elect & Comp. Eng. the Univ. of Auckland, New Zealand, 2006. [18] 柏杨, 黄学良, 邹玉炜, 等. 基于超声波的无线电能传输的研究[J]. 压电与声光, 2011(2): 324-327. Bai Yang, Huang Xueliang, Zou Yuwei, et al. Study of wireless power transfer system based on ultrasonic[J]. Piezoelect Rics & Acoustooptics, 2011(2): 324-327. [19] 武瑛. 新型无接触供电系统的研究[D]. 中国科学院电工研究所, 2004. [20] 孙跃, 王智慧, 戴欣, 等. 非接触电能传输系统的频率稳定性研究[J]. 电工技术学报, 2005(11): 56-59. Sun Yue Wang Zhihui Dai Xin et al, Study of frequency stability of contactless power transmission system[J]. Transactions of China Electrotechnical Society, 2005(11): 56-59. [21] 孙跃, 祝兵权, 戴欣. CPT系统输出电压主动控制技术[J]. 电源技术, 2011(1): 76-78. Sun Yue, Zhu Bingquan, Dai Xin. Active control technology of CPT system output voltage[J]. Chinese Journal of Power Sources, 2011(1): 76-78. [22] 黄辉, 黄学良, 谭林林, 等. 基于磁场共振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. 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. [23] Tan Linlin, Huang Xueliang, Li Hui, et al. Efficiency analysis and optimization on magnetic resonance coupled wireless transfer system[J]. Advanced Materials Research, 2011, 308-310: 1345-1348. [24] 孙勇, 楼佩煌, 吴亮亮. 非接触供电系统的应用平台研究[J]. 工业控制计算机, 2009(3): 86-88. Sun Yong, Lou Peihuang, Wu Liangliang. Research on application platform of contactless supply system [J]. Industrial Control Computer, 2009(3): 86-88. [25] 林宁, 姚缨英. 恒压输出的无线电能传输系统设计[J]. 电力电子技术, 2011(2): 86-88. Lin Ning, Yao Yingying. Design of a wireless energy transfer system with constant ouput[J]. Power Electronics, 2011(2): 66-68. [26] Zhu Chunbo, Liu Kai, Yu Chunlai, et al. Simulation and experimental analysis on wireless energy transfer based on magnetic resonance[C]. 2008 IEEE Vehicle Power and Propulsion Conference, 2008: 1-4. [27] 沈爱民. 无线电能传输关键技术问题与应用前景(新视点新学说学术沙龙文集)[M]. 中国科学技术出版社, 2012. [28] 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. [29] Uei-Ming Jow, Maysam Ghovnloo. Design and optimization of printed spiral coils for efficient transcutaneous inductive power transmission[J]. IEEE Transactions on Biomedical Circuits and Systems, 2007, 1(3): 193-200. [30] Zhen Ning Low, Raul Andres Chinga, Ryan Tseng. Design and test of a high-power high-efficiency loosely coupled planar wireless power transfer System[J]. IEEE Transactions on Industrial Electronics, 2009, 56(5): 1801-1812. [31] Abe H, Sakamoto H, Harada K, A non-contact charger using a resonant converter with parallel capacitor of the secondary coil[C]. IEEE Applied Power Electronics Conference Exposition, 1998, 1: 136-141. [32] Casanova J J, Low Z N, Lin J, et al. coil achieving uniform magnetic field distribution for planar wireless power transfer system[C]. IEEE Radio Wireless Symposium, 2009: 530-533. [33] Yin Ning, Xu Guizhi, Yang Qingxin, et al. Analysis of wireless energy transmission for implantable device based on coupled magnetic resonance[J]. IEEE Transactions on Magnetics, 2012, 48(2): 723-726. [34] Zhang Xiu, Ho s L, Fu W N. Analysis and optimization of magnetically coupled resonators for wireless power transfer[J]. IEEE Transactions on Magnetics, 2012, 48(11): 4511-4514. [35] Chen ChihJung, Chu TahHsiung, Lin ChihLung, et al. A study of loosely coupled coils for wireless power transfer[J]. IEEE Transactions on Circuits and Systems-II: Express Briefs, 2010, 57(7): 536- 540. [36] Haus H. Waves and fields in optoelectronics[M]. Prentice-Hall, Englewood Cliffs, NJ, 1984. [37] Zargham, M. Maximum. Achievable efficiency in near-field coupled power-transfer systems[J]. IEEE Transactions on Biomedical Circuits and Systems, 2012, 6(3): 228-245. [38] Robert Alexander Moffatt. Wireless transfer of electric power[D]. MIT, 2009. [39] 黄辉. 基于磁场谐振耦合的无线电力传输效率及电源研究[D]. 南京: 东南大学, 2011. [40] Wu Hunter H, Covic Grant A, Boys John T, et al. Series-tuned inductive-power-transfer pickup with a controllable AC-voltage output[J]. IEEE Transactions on Power Electronics, 2011, 26(1): 98-109. [41] Wang Chwei Sen, Covic Grant A, Stielau Oskar H. Investigating an LCL load resonant inverter for inductive power transfer applications[J]. IEEE Transactions on Power Electronics, 2004, 19(4): 995-1002. [42] Cha Hyouk Kyu, Park Woo Tae, Je Minkyu. A CMOS rectifier with a cross-Coupled latched comparator for wireless power transfer in biomedical applications[J]. IEEE Transactions on Circuits and Systems-II: Express Briefs, 2012, 59(7): 409-413. [43] Fotopoulou Kyriaki, Flynn Brian W. Wireless power transfer in loosely coupled links: coil misalignment model[J]. IEEE Transactions on Magnetics, 2011, 47(2): 416-430. [44] Kusaka K, Itoh J. Experimental verification of rectifiers with SiC/GaN for wireless power transfer using a magnetic resonance coupling[C]. 2011 IEEE Ninth International Conference on Power Electronics and Drive Systems, Singapore, 2011: 1094-1099. [45] Kiani M, Ghovanloo M. The circuit theory behind coupled-mode magnetic resonance-based wireless power transmission[J]. IEEE Transactions on Circuits and Systems-I, 2012, 59(8): 2065-2074. [46] 陈逸鹏, 聂一雄. 谐振式无线电能传输系统谐振线圈优化设计[J]. 厦门理工学院学报, 2012, 20(3): 62-66. Chen Yipeng, Nie Yixiong. An optimal design of resonant coil for magnetically coupled resonant wireless power transfer system[J]. Journal of Xiamen University of Technology, 2012, 20(3): 62-66. [47] Mauro Ettorre, Anthony Grbic. A transponder-based, nonradiative wireless power transfer[J]. IEEE Antennas and Wireless Propagation Letters, 2012, 11: 1150-1153. [48] Raymond J. Sedwick. Long range inductive power transfer with superconducting oscillators[J]. Annals of Physics, 2010, 325: 287-299. [49] Mizuno T, Yachi S, Kamiya A, et al. Improvement in efficiency of wireless power transfer of magnetic resonant coupling using magnetoplated wire[J]. IEEE Transactions on Magnetics, 2011, 47(10): 4445-4448. [50] Hamam Rafif E, Karalis Aristeidis, Joannopoulos J D, et al. Efficient weakly-radiative wireless energy transfer: An EIT-like approach[J]. Annals of Physics. 2009, 324: 1783-1795. [51] Casanova Joaquin J, Low Zhen Ning, Lin Jenshan. A loosely coupled planar wireless power system for multiple receivers[J]. IEEE Transactions on Industrial Electronics, 2009, 56(8): 3060-3068. [52] André Kurs, Robert Moffatt, Marin Soljačić. Simultaneous mid-range power transfer to multiple devices[J]. Applied Physics Letters, 2010, 96: 044102-044108. [53] Zhong W X, Chi Kwan L, Hui S Y. Wireless power domino-resonator systems with noncoaxial axes and circular structures[J]. IEEE Transactions on Power Electronics, 2012, 27(11): 4750-4762. [54] Zhang Fei, Hackworth Steven A, Fu Weinong, et al Relay effect of wireless power transfer using strongly coupled magnetic resonances[J]. IEEE Transactions on Magnetics, 2011, 47(5): 1478-1481. [55] Li Ying, Member, Vikram jandhyala. Design of retrodirective antenna arrays for short-range wireless power transmission[J]. IEEE Transactions on Antennas and Propagation, 2012, 60(1): 206-211. [56] 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]. Proceedings of the CSEE, 2004, 24(5): 63-66. [57] 张献, 杨庆新, 陈海燕. 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. Research on characteristics of frequency splitting in electro- magnetic coupling resonant power transmission systems[J]. Proceedings of the CSEE, 2012, 32(9): 167-172. [58] Huang Xueliang, Tan Linlin, Li Hui, et al. Frequency splitting and distance boundary condition in magnetic resonance coupled wireless power transfer system[J]. Advanced Materials Research, 2011, 308-310: 1349-1352. [59] Sample Alanson P, Meyer David A, Smith Joshua R. Analysis, experimental results, and range adaptation of magnetically coupled resonators for wireless power transfer[J]. IEEE Transactions on Industrial Electronics, 2011, 58(2): 544-554 [60] 傅文珍, 张波, 丘东元. 频率跟踪式谐振式耦合电能无线传输系统研究[J]. 变频器世界, 2009(8): 41-46. Fu Wenzhen Zhang Bo Qiu Dongyuan. Study on frequency-tracking wireless power transfer system by resonant coupling[J]. The World of Inverters, 2009(8): 41-46. [61] 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 in China Series E: Engineering & Materials Science, 2011, 54(6): 1428 - 1434. [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 Technological Sciences, 2012, 42(7): 830-837. [63] Karalis Aristeidis, Joannopoulos J D, Soljacic Marin. Efficient wireless non-radiative mid-range energy transfer[J]. Annals of Physics, 2008, 323: 34-48. [64] http: //www. letv. com/ptv/vplay/1014068. Html. [65] http: //news. xinhuanet. com/energy/2012-02/11/c_ 122688212. html. [66] 周成虎, 瓮嘉民. 一种用于无线鼠标的无接触供电电路[J]. 现代电子技术, 2011, 34(12 ): 138-140. Zhou Chenghu, Weng Jiamin. Contactless power supply circuit for wireless mouse[J]. Modern Electro- nics Technique, 2011, 34(12): 138-140. [67] Toshio Ishizaki, Satoshi Nojiri, Tetsuya Ishida, et al. 3-D free-access WPT system for charging movable terminals[C]. 2012 IEEE MTT-S International Microwave Workshop Series on Innovative Wireless Power Transmission: Technologies, Systems, and Applications(IMWS), 2012: 219 -222. [68] Yan Guozheng, Zan Peng, Ye Dongdong, et al. Design of transcutaneous energy transmission system for artificial anal sphincter[C]. Proceedings of the 2007 IEEE International Conference on Mechatronics and Automation, 2007: 1434-1438. [69] Lim H G, Yoon Y H, Lee C W, et al. Implementation of a transcutaneous charger for fully implantable middle ear hearing device[C]. IEEE Conference of Engineering in Medicine and Biology, 2005: 6813-6816. [70] Chaimanonart N, Olszens K R, Zimmerman M D, et al. Implantable RF power converter for small animal in vivo biological monitoring[C]. IEEE Conference of Engineering in Medicine and Biology, 2005: 5194-5197. [71] Wang G, Liu W, Sivaprakasam M, et al. Design and analysis of an adaptive transcutaneous power telemetry for biomedical implants[J]. IEEE Transactions on Circuits and Systems-I, 2005, 52(10): 2109-2117. [72] David L Mascarenas, Eric B Flynn, Michael D Todd, et al. Experimental studies of using wireless energy transmission for powering embedded sensor nodes[J]. Journal of Sound and Vibration, 2010, 329(12): 2421-2433. [73] Li Zesong, Li Dejun, Lin Lin, et al. Design considerations for electromagnetic couplers in contactless power transmission systems for deep-sea applications[J]. Journal of Zhejiang University- Science C-Computers & Electronics, 2010, 11(10): 824-834.