期刊文献+

微型电磁振动能量采集器的研究进展 被引量:8

Research Progess of Micro-Electromagnetic Vibration-Based Energy Harvesters
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摘要 微型电磁振动能量采集器(振动能量发生器)是振动能量采集器的一个重要分支,其利用电磁感应原理吸收环境的振动能量。综述了近几年微型电磁振动能量采集器的相关研究、制作工艺和检测技术,按运动件的支撑方式对其加以分类。对各研究中电磁振动能量采集器的特性参数进行考察,探讨了现有研究的优点与不足,分析了微型电磁振动能采集器的发展趋势,提出了新型抗磁悬浮振动能量采集器的原型。对抗磁悬浮振动能量采集器进行了原理性阐述,其工作是可行的,进一步讨论了这种振动能量采集器的微加工制作工艺可行性及其优点。 The micro-electromagnetic vibration-based energy harvester(vibration-based generator) is an important branch of the vibration-based energy harvester,which harvests the energy from the environment based on the electromagnetic induction principle.The theoretic research,fabrication processes and testing techniques of the micro-electromagnetic vibration-based energy harvester in recent years are reviewed,which is classified according to the supporting manner for the moving parts.The characteristic parameters of the electromagnetic vibration-based energy harvesters in the researches are studied,the advantages and disadvantages of the current research are discussed,and the development trend of the micro-electromagnetic vibration-based energy harvester is analyzed.Then,a novel prototype of the vibration energy harvester based on the diamagnetic levitation is put forward.The principle of the energy harvester based on the diamagnetic levitation is discussed to testify its feasibility.Besides that,the micro-fabrication process,feasibility and advantages of the energy harvester are further analyzed.
出处 《微纳电子技术》 CAS 北大核心 2013年第3期156-166,共11页 Micronanoelectronic Technology
基金 国家自然科学基金资助项目(51175479) 中国博士后科学基金资助项目(2012M521404) 河南省教育厅重点项目(12B460022) 2012年度河南省高等学校青年骨干教师资助项目(2012GGJS-003)
关键词 电磁 振动 能量采集器 抗磁悬浮 振动能量发生器 electromagnet vibration energy harvester diamagnetic levitation vibration-based generator
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参考文献53

  • 1CHINGNN H, WONG H Y, LI W J, et al. A laser micro machined multi-modal resonating power transducer for wireless sensing systems [J] Sensors and Actuators: A, 2002, 97/98 (4) : 685 - 690.
  • 2YUEN S C L, LEE J M H, LI W J, et al. An AA-sized vibra- tion based microgenerator for wireless sensors [J]. IEEE Per- vasive Computing, 2007, 6 (1) : 64- 72.
  • 3温中泉,温志渝,陈光焱,蒋子平.微型振动式发电机振子系统的理论计算及仿真[J].光学精密工程,2003,11(1):45-48. 被引量:5
  • 4PAN C T, HWANG Y M, HUH L, et al. Fabrication and analysis of a magnetic self-power microgenerator [J]. Journal of Magnetism and Magnetic Materials, 2006, 304 (1): 394- 396.
  • 5HWANG Y M, LU W L, PAN C T. Design and low-tempera- ture cofired ceramic fabrication of a novel vibration induced electromagnetic microgenerator with enhanced power output [J]. Journal of Micro/ Nanolithography, MEMS, and MO- EMS, 2010, 9 (1): 013052 1-013052-3.
  • 6PAN C T, CHEN Y J, SHEN S C. Simulation and analysis of electromagnetic in plane micro-generator [J]. Journal of Mi- cro/Nanolithography, MEMS, and MOEMS, 2009, 8 (3): 031304 I - 031304 8.
  • 7WANG P H, TANAKA K, SUGIYAMA S, et al. A micro electro-magnetic low level vibration energy harvester based on MEMS technology [J]. Microsystem Technologies, 2009, 15 (6) : 941 - 951.
  • 8WANG P H, I.IU H T, DAI X H, et al. Design, simulation, fabrication and characterization of a micro electro-magnetic vi- bration energy harvester with sandwiched structure and air channel [J]. Microelectronics Journal, 2012, 43 (2): 154- 159.
  • 9王佩红,刘慧婷,杨卓青,戴旭涵,赵小林.基于MEMS技术的三明治型电磁式微振动能量采集器[J].纳米技术与精密工程,2010,8(6):510-515. 被引量:25
  • 10王佩红,鲁李乐,戴旭涵,赵小林.基于电镀铜平面弹簧的微型电磁式振动能量采集器[J].功能材料与器件学报,2008,14(1):171-174. 被引量:5

二级参考文献26

  • 1Priya S, Inman D J. Energy Harvesting Technologies [ M]. New York : Springer Publishing Company, Incorporated, 2009.
  • 2Mateu L, Moll F. Review of energy harvesting techniques and applications for microelectronics [ J ]. Proceedings of SPIE-The International Society for Optical Engineering, 2005, 5837 : 359-373.
  • 3Roundy S, Wright P K, Rabaey J. A study of low level vibrations as a power source for wireless sensor nodes [ J ]. Computer Communications, 2003, 26 ( 11 ) : 1131-1144.
  • 4Williams C B, Yates R B. Analysis of a micro-electric generator for microsystems [ J ]. Sensors and Actuators A: Physical, 1996, 52(1/2/3) : 8-11.
  • 5Ching N N H, Wong H Y, Li W J, et al. A laser-micromachined multi-modal resonating power transducer for wireless sensing systems [ J ]. Sensors and Actuators A : Physical, 2002, 97/98 : 685-690.
  • 6Pan C T, Hwang Y M, Hu H L, et al. Fabrication and analysis of a magnetic self-power microgenerator [ J ]. Journal of Magnetism and Magnetic Materials, 2006, 304 ( 1 ) : 394-396.
  • 7Beeby S P, Torah R N, Tudor M J, et al. A micro electromagnetic generator for vibration energy harvesting [ J ]. J Micromech Microeng, 2007, 17(7) : 1257-1265.
  • 8Wang P H, Tanaka K, Sugiyama S, et al. A micro electromagnetic low level vibration energy harvester based on MEMS technology [J]. Microsyst Technol, 2009, 15(6): 941-951.
  • 9Beeby S P, Tudor M J, White N M. Energy harvesting vibration sources for microsystems applications [ J ]. Measurement Science and Technology, 2006, 17(12) : R175-R195.
  • 10Arnold D P. Review of microscale magnetic power generation [J ]. IEEE Transactions on Magnetics, 2007, 43 ( 11 ) : 3940-3951.

共引文献31

同被引文献54

  • 1姬玉芳.基于压电效应的压电发电技术研究[D].太原:中北大学,2011.
  • 2PARK J, LEE S, KWAK B M. Design optimization of piezo- electric energy harvester subject to tip excitation [J]. Mecha- nical Science and Technology, 2012, 26 (1) : 137 - 143.
  • 3KORLA S, LEON R A, TANSEL I N. Design and testing of an efficient and compact piezoelectric energy harvester[J]. Microelectronics Journal, 2011, 42 (2) : 265 - 270.
  • 4LEE C, LIM Y M, YANG B, et al. Theoretical comparison of the energy harvesting capability among various electrostatic mechanisms from structure aspect [J]. Sensors and Actua- tors: A, 2009, 156 (1): 208-216.
  • 5BEEBY S P, GLYNNE-JONES P, TUDOR M J, et al. An electromagnetic, vibration-powered generator for intelligent sensor systems [J]. Sensors and Actuators, A, 2004, 110 (1/2/3): 344-349.
  • 6MANNA B P, SIMS N D. Energy harvesting from the nonli- near oscillations of magnetic levitation [J]. Sound and Vibra- tion, 2009, 319 (1/2):515- 530.
  • 7FOISAL A R M, HONG C, CHUANG G S. Multi-frequency electromagnetic energy harvester using a magnetic spring cantilever [J].Sensors and Actuators: A, 2012, 182 (4) : 106- 113.
  • 8EARNSHAW S. On the nature of the molecular forces which regulate the constitution of the lumini/erous ether [J]. Trans Camb Phil Soc, 1842, 7 (1): 97- 112.
  • 9MEISSNER W, OCHSENFELD R. Ein neuer effekt bei eint- ritt der supraleitffthigkeit [J]. Naturwissenschaften, 1933, 21 (44) : 787- 788.
  • 10SIMON M D, HEFLINGER L O, GEIM A K. Diamagneti- cally stabilized magnet levitation [J]. Physics, 2001,69 (6) : 702 - 713.

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