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The Characteristics Study of Three Dimension Anti Deflection Magnetic Coupling Resonance Wireless Energy Transmission Resonator |
An Huilin1, 2, Liu Guoqiang1, 2, Li Yanhong1, 2, Zhang Chao1, 2, Song Jiaxiang1, 2 |
1. Institute of Electrical Engineering Chinese Academy of Sciences Beijing 100190 China; 2. University of Chinese Academy of Sciences Beijing 100049 China |
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Abstract In this paper, the relationship between the transmission characteristics and the resonator parameters of the one and three dimension resonant wireless power transmission system is established.Under different actual requirements, the quantitative design of the radius and turn number of one and three dimension resonators can be realized through simulation analysis.At the same time, the relationship among the transmission characteristics of the one and three dimensional system with the deflection angle and the offset distance is analyzed. Finally,under the same deflection angle, compared with the one dimension resonator, it proved the three dimension resonator designed in this paper can achieve high power and full angle energy transmission, and has strong anti deflection capability and multi attitude reception capability by the simulation and experiment.
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Received: 01 July 2018
Published: 17 July 2019
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[1] Kurs A, Karalis A, Moffatt R, et al.Wireless power transfer via strongly coupled magnetic resonances[J]. Science, 2007, 317(5834):83-86. [2] Nguyen M Q, Hughes Z, Woods P, et al.Field distribution models of spiral coil for misalignment analysis in wireless power transfer systems[J]. IEEE Transactions on Microwave Theory & Techniques, 2014, 62(4):920-930. [3] 刘红伟, 张波, 黄润鸿,等. 感应耦合与谐振耦合无线电能传输的比较研究[J]. 电气技术, 2015, 16(6):7-13. Liu Hongwei, Zhang Bo, Huang Runhong, et al.Comparative studies between inductive coupling and resonant coupling wireless power transmission[J]. Electrical Engineering, 2015, 16(6): 7-13. [4] 卢文成, 丘小辉, 毛行奎,等. 磁谐振无线电能传输系统的最大效率分析[J]. 电气技术, 2015, 16(4):14-17. Lu Wencheng, QiuXiaohui, Mao Hangkui, et al. Analysis on maximum efficiency of wireless power transfer via magnetic resonance[J]. Electrical Engineering, 2015, 16(4): 14-17. [5] 张祥文, 江星星, 王龙,等. 配电网接纳电动汽车能力评估方法研究[J]. 电力系统保护与控制, 2015, 43(12):14-20. Zhang Xiangwen, Jiang Xingxing, Wang long, et al. Research on assessment methods of distribution network’s ability of admitting electric vehicles[J]. Power System Protection and Control, 2015,43(12): 14-20. [6] 郑心城, 陈为. 电动汽车无线充电的磁耦合结构综述[J]. 电气技术, 2017, 18(4):9-15. ZhengXincheng, Chen Wei. Overview of magnetic coupling structure in wireless charging for electric vehicle[J]. Electrical Engineering, 2017, 18(4): 9-15. [7] 张振华. 高压电力线路在线视频监控系统工程应用及实践[J]. 电力系统保护与控制, 2013, 41(16):149-153. Zhang Zhenhua.Research and application of online video surveillance system for high-voltage power lines[J]. Power System Protection and Control, 2013,41(16): 149-153. [8] 叶远波, 孙月琴, 黄太贵,等. 智能变电站继电保护二次回路在线监测与故障诊断技术[J]. 电力系统保护与控制, 2016, 44(20):148-153. Ye Yuanbo, Sun Yueqin, Huang Taigui, et al., Online state detection and fault diagnosis technology of relay protection secondary circuits in smart substation[J]. Power System Protection and Control, 2016, 44(20): 148-153. [9] 徐桂芝, 李晨曦, 赵军,等. 电动汽车无线充电电磁环境安全性研究[J]. 电工技术学报, 2017, 32(22):152-157. XuGuizhi, Li Chenxi, Zhao Jun, et al. Electromagneticenvironment safety study of wireless electric vehicle Charging[J]. Transactions of China Electrotechnical Society, 2017, 32(22): 152-157. [10] 苑朝阳, 张献, 杨庆新,等. 无线供电高铁列车非对称耦合机构[J]. 电工技术学报, 2017, 32(18): 18-25. Yuan Chaoyang, Zhang Xian, Yang Qingxin, et al.Asymmetric coupling mechanism of wireless power transmission system for high-speed train[J]. Transactions of China Electrotechnical Society, 2017, 32(18): 18-25. [11] 赵俊锋. 三维无线电能传输系统研究[D]. 南京:东南大学, 2015. [12] 张波, 疏许健,黄润鸿. 感应和谐振无线电能传输技术的发展[J]. 电工技术学报, 2017, 32(18):4-17. Zhang Bo, ShuXujian, Huang Runhong. The development of inductive and resonant wireless power transfer technology[J]. Transactions of China Electrotechnical Society, 2017, 32(18): 4-17. [13] 邓其军, 刘姜涛, 陈诚,等. 应用于无线电能传输的Litz线平面矩形螺旋线圈高频电阻计算[J]. 电工技术学报, 2016, 31(11):176-185. Deng Qijun, Liu Jiangtao, Chen Cheng, et al.High fre-quency resistance in litz-wire planar rectangular solenoid coils for wireless power transfer[J]. Transactions of China Electrotechnical Society, 2016, 31(11):176-185. [14] 李中启, 黄守道, 袁小芳. 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[J]. 电工技术学报, 2017, 32(8):151-159. Li Zhongqi, Huang Shoudao, Yuan Xiaofang.Optimum efficiency analysis of wireless power transfer system via coupled magnetic resonances with lateral and angular misalignments[J]. Transactions of China Electrotechnical Society, 2017, 32(8): 151-159. [15] Shin J, Shin S, Kim Y, et al.Design and implementation of shaped magnetic resonance based wireless power transfer system for roadway powered moving electric vehicles[J]. IEEE Transactions on Industrial Electronics, 2013, 61(3):1179-1192. [16] Lee J, Lim Y S, Yang W J, et al.Wireless power transfer system adaptive to change in coil separation[J]. IEEE Transactions on Antennas & Propagation, 2014, 62(2):889-897. [17] 李艳红, 刘国强, 宋显锦,等. 宽频磁耦合谐振式无线电能传输系统特性分析[J]. 电工技术学报, 2015, 30(19):7-11. Li Yanhong, Liu Guoqiang, Song Xianjin, et al.The study on the characteristics of broadband magnetic coupling resonant wireless power transfer system[J]. Transactions of China Electrotechnical Society, 2015, 30(19): 7-11. |
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