Electric Power ›› 2021, Vol. 54 ›› Issue (10): 134-143,195.DOI: 10.11930/j.issn.1004-9649.202009034
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NIE Qingqing, PENG Han, LI Hongbin, KANG Yong
Received:
2020-09-04
Revised:
2021-09-03
Online:
2021-10-05
Published:
2021-10-16
Supported by:
NIE Qingqing, PENG Han, LI Hongbin, KANG Yong. Design of Matching Network for Magnetic Field Energy Harvesting in Wide Frequency Range[J]. Electric Power, 2021, 54(10): 134-143,195.
[1] 刘忠战. 电子式电流互感器高压侧自励源供能方法研究[J]. 高压电器, 2006, 42(1): 55–57 LIU Zhongzhan. Research on self-excitation power supply from high voltage side of electronic current transformers[J]. High Voltage Apparatus, 2006, 42(1): 55–57 [2] DAI Y, CHEN K, LIN J D, et al. Design of induced power apparatus for monitoring system of dynamic increasing capacity of high-voltage transmission lines[C]//2012 IEEE International Conference on Condition Monitoring and Diagnosis. Bali, Indonesia. IEEE, 2012: 774-777. [3] 邵庆祝, 谢民, 王同文, 等. 带有自供电功能的电流测量传感器的设计[J]. 电力系统保护与控制, 2020, 48(16): 155–162 SHAO Qingzhu, XIE Min, WANG Tongwen, et al. Design of a current measuring sensor with self-power supply function[J]. Power System Protection and Control, 2020, 48(16): 155–162 [4] 谭卫斌, 张维, 权立, 等. 一种新型配电网在线监测装置的研制[J]. 电力系统保护与控制, 2019, 47(1): 158–165 TAN Weibin, ZHANG Wei, QUAN Li, et al. Development of a new on-line monitoring device for distribution network lines[J]. Power System Protection and Control, 2019, 47(1): 158–165 [5] HUI S Y R, ZHONG W X, LEE C K. A critical review of recent progress in mid-range wireless power transfer[J]. IEEE Transactions on Power Electronics, 2014, 29(9): 4500–4511. [6] 李锐杰. 磁耦合谐振式无线电能传输特性研究及优化[D]. 西安: 西安科技大学, 2019. LI Ruijie. Research and optimization of magnetically coupled resonant radio energy transmission characteristics[D]. Xi'an: Xi'an University of Science and Technology, 2019. [7] 杨峰, 杜林, 王云承, 等. 智能传感器热电及磁场能量收集方法[J]. 高电压技术, 2015, 41(12): 3909–3915 YANG Feng, DU Lin, WANG Yuncheng, et al. Thermoelectric and magnetic energy harvesting methods for intelligent sensors[J]. High Voltage Engineering, 2015, 41(12): 3909–3915 [8] CORRÊA D C, RESENDE U C, BICALHO F S. Experiments with a compact wireless power transfer system using strongly coupled magnetic resonance and metamaterials[J]. IEEE Transactions on Magnetics, 2019, 55(8): 1–4. [9] IMURA T. Equivalent circuit for repeater antenna for wireless power transfer via magnetic resonant coupling considering signed coupling[C]//2011 6th IEEE Conference on Industrial Electronics and Applications. Beijing, China. IEEE, 2011: 1501-1506. [10] 康湛毓. 2.45 GHz高效率微带整流天线的研究[D]. 成都: 电子科技大学, 2016. KANG Zhanyu. The research of 2.45-GHz high efficiency microstrip rectenna for microwave power transmission[D]. Chengdu: University of Electronic Science and Technology of China, 2016. [11] 王鹏飞, 肖剑山, 李满天, 等. 面向微小型机器人的5.8 GHz微波能量传输系统[J]. 机器人, 2010, 32(4): 529–533 WANG Pengfei, XIAO Jianshan, LI Mantian, et al. 5.8 GHz microwave power transmission system for micro-robot[J]. Robot, 2010, 32(4): 529–533 [12] LI Y, JANDHYALA V. Design of retrodirective antenna arrays for short-range wireless power transmission[J]. IEEE Transactions on Antennas and Propagation, 2012, 60(1): 206–211. [13] 胡亚辉. 晶闸管与IGBT换流阀对控制电路近场电磁骚扰特性的研究[D]. 北京: 华北电力大学(北京), 2016. HU Yahui. Research on near-field electromagnetic disturbance characteristic in thyristor and IGBT converter vavles on control circuit[D]. Beijing: North China Electric Power University, 2016. [14] WANG R, WANG Z B, DU J, et al. Design considerations of maximum energy harvesting and voltage control from high voltage power cables[C]//2014 International Power Electronics and Application Conference and Exposition. Shanghai, China. IEEE, 2014: 920–923. [15] COLOMER-FARRARONS J, MIRIBEL-CATALA P, SAIZ-VELA A, et al. A multiharvested self-powered system in a low-voltage low-power technology[J]. IEEE Transactions on Industrial Electronics, 2011, 58(9): 4250–4263. [16] LI P, WEN Y M, LIU P G, et al. A magnetoelectric energy harvester and management circuit for wireless sensor network[J]. Sensors and Actuators A:Physical, 2010, 157(1): 100–106. [17] HSIEH L H, STRASSNER B H, KOKEL S J, et al. Development of a retrodirective wireless microwave power transmission system[C]//IEEE Antennas and Propagation Society International Symposium. Digest. Held in conjunction with: USNC/CNC/URSI North American Radio Sci. Meeting (Cat. No. 03CH37450). Columbus, OH, USA. IEEE, 2003: 393–396. [18] 李安旭, 赵志民. 巧解900MHzLTE-FDD与GSM共模组网的频率规划难题[J]. 广西通信技术, 2016(2): 43–49, 60 LI Anxu, ZHAO Zhimin. An intelligent solution to the frequency plannning problem of 900 MHz LTEFDD and GSM common-mode networking[J]. Guangxi Communication Technology, 2016(2): 43–49, 60 [19] 赵春丽. ISM频段认知无线电通信的抗干扰技术[D]. 北京: 北京邮电大学, 2018. ZHAO Chunli. Anti-jamming technologies of cognitive radio communication in the ISM band[D]. Beijing: Beijing University of Posts and Telecommunications, 2018. [20] 唐灿, 郑宏兴, 王辂, 等. 一种应用于5G的紧凑型阵列天线设计[J]. 太赫兹科学与电子信息学报, 2020, 18(6): 1015–1019 TANG Can, ZHENG Hongxing, WANG Lu, et al. Design of a compact antenna array applied to 5G[J]. Journal of Terahertz Science and Electronic Information Technology, 2020, 18(6): 1015–1019 [21] 何日. UPFC换流阀电磁骚扰特性及阀厅电磁屏蔽效能的研究[D]. 北京: 华北电力大学(北京), 2019. HE Ri. Investigation for electromagnetic disturbance characteristics of UPFC converter valve and electromagnetic shielding effectiveness of valve hall[D]. Beijing: North China Electric Power University, 2019. [22] 刘奕. IGBT近场电磁骚扰特征的研究[D]. 北京: 华北电力大学, 2013. LIU Yi. The research of IGBT near-field electromagnetic disturbance characteristics[D]. Beijing: North China Electric Power University, 2013. [23] HU Y H, ZHANG W D, HAO H, et al. Measurement and analysis of near-field electromagnetic disturbances in UHVDC converter valve[C]//2016 Asia-Pacific International Symposium on Electromagnetic Compatibility (APEMC). Shenzhen, China. IEEE, 2016: 758-760. [24] 柳百毅, 陈为, 李榜, 等. 基于感应取能的微功率能量收集器[J]. 中国电机工程学报, 2020, 40(5): 1474–1485 LIU Baiyi, CHEN Wei, LI Bang, et al. Micro-power energy harvester based on electromagnetic induction[J]. Proceedings of the CSEE, 2020, 40(5): 1474–1485 [25] LI P, WEN Y M, ZHANG Z Q, et al. A high-efficiency management circuit using multiwinding upconversion current transformer for power-line energy harvesting[J]. IEEE Transactions on Industrial Electronics, 2015, 62(10): 6327–6335. [26] 张佳佳, 欧德旭, 严冬, 等. 电线磁场能量采集的混合储能控制管理电路[J]. 电子测试, 2019(23): 36–42 ZHANG Jiajia, OU Dexu, YAN Dong, et al. A hybrid energy storage control management circuit on electromagnetic field energy harvesting[J]. Electronic Test, 2019(23): 36–42 [27] 东南大学等七所工科院校. 物理学-上册[M]. 6版. 马文蔚, 周雨青, 改编. 北京: 高等教育出版社, 2014: 256-262. [28] 刘传超, 倪勇. 巴特沃斯型EMI滤波器在飞艇电源系统中的应用[J]. 中国仪器仪表, 2016(12): 50–52 LIU Chuanchao, NI Yong. Application of butterworth EMI filter in airship power system[J]. China Instrumentation, 2016(12): 50–52 |
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