期刊文献+

用于多频振动的MEMS复合式能量采集器的设计(英文) 被引量:5

Design of MEMS hybrid energy generator for multi-frequency vibration
下载PDF
导出
摘要 设计、模拟了一款用于多频振动的MEMS复合式能量采集器,提出了一种新颖的能量采集结构,即将压电式悬臂梁和可变电容器结合起来用于多频振动能量的采集。在建立多频振动能量采集系统分析模型的基础上,使用MatLab/SIMULINK的数值模拟,预测了功率输出。模拟结果显示,该结构可在630~655Hz有效工作,在负载为50 kΩ时,输出功率可达13.46μW。基于这个结果,给出了一个优化设计方案,同时为了防止结构失效,对结构进行了有限元仿真分析。仿真分析结果显示了良好的预期性能,说明了该设计指导思想的合理性和先进性。 The design, modeling and simulation of a novel MEMS hybrid energy generator for multifrequency vibration is presented to meet the requirements of portable and wireless electronic devices for collecting energy from the ambient environment. In this design, piezoelectric cantilever beams and capacitors are combined for harvesting the hybrid vibration energy. Then,an analytical model is established for the multi-frequency vibration energy harvesting system and a numerical simulation method is used to predict the power output by using a MatLab/SIMULINK. The result shows that the structure can work efficiently in the frequency ranges of 630-655 Hz, and the power output can reach about 13.46 μW with a load resistance of 50 kΩ. Based on the result, an optimized multi-frequency hybrid energy harvester is designed in this paper. In addition, the Finite Element Analysis (FEA) of the structure is carried out to prevent the structure failure. The work implemented by this paper shows that the next generation design with a wider frequency range and a higher power output within a smaller structure volume is expectant.
作者 任婧 陈旭远
出处 《光学精密工程》 EI CAS CSCD 北大核心 2009年第6期1367-1372,共6页 Optics and Precision Engineering
基金 Supported by the National Natural Science Foundation of China (Grant No.50575191) the Scienceand Technology Programof Xiamen (Grant No .3502Z20063006)
关键词 振动能量采集 复合式采集器 多频能量采集 微机电系统 vibration energy harvesting hybrid generator multi frequency energy harvesting MEMS
  • 相关文献

参考文献2

二级参考文献9

  • 1KAN Jun-wu,XUAN Ming,LIU Guo-jun,YANG Zhi-gang,WU Yi-hui.Performance of a serial-connection multi-chamber piezoelectric micropump[J].光学精密工程,2005,13(5):535-541. 被引量:3
  • 2曾平,温建明,程光明,吴博达,杨志刚.新型惯性式压电驱动机构的研究[J].光学精密工程,2006,14(4):623-627. 被引量:23
  • 3LI Q, LOVELL M, MEI J F, et al.. A study of displacement distribution in a piezoelectric heterogeneous bimorph [J]. Journal of Mechanical Design, 2004, 126(4) :757-762. 被引量:1
  • 4SMITS J G, DALKE S I, COONEY T K. The constituent equations of piezoelectric bimorphs [J]. Sensors and Actuator A, 1991,28:41-61. 被引量:1
  • 5LIM K J, KANG S H, LEE J S. Design and properties of piezoelectric vibrator with generating function by FEM analysis [J]. Journal of Electroceramlcs, 2004, 13(1-3) : 329-432. 被引量:1
  • 6MA C C, LIN Y C, HUANG Y H, et al.. Experimental measurement and numerical analysis on resonant characteristics of cantilever plates for piezoceramic bimorphs[J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 2007, 54(2):227-239. 被引量:1
  • 7POIZAT C, BENJEDDOU A. On analytical and finite element modelling of piezoelectric extension and shear bimorphs [J]. Computers and Structures, 2006, 84(22-23) : 1426-1437. 被引量:1
  • 8WU T, RO P I. Dynamic peak amplitude analysis and bonding layer effects of piezoelectric bimorph cantilevers [J]. Smart Materials and Structures, 2004,13 ( 1 ) : 203- 210. 被引量:1
  • 9LI T, CHEN Y H, MA J. Frequency dependence of piezoelectric vibration velocity [J].Sensors and Actuators A, 2007,138:404-410. 被引量:1

共引文献20

同被引文献46

  • 1ROUNDY S, WRIGHT P K. A piezoelectric vibra tion based generator for wireless electronics [J]. Smart Materials and Structures, 2004, 13:1131-1142. 被引量:1
  • 2PARK J C, LEE D H, PARK J Y, et al.. High Performance Piezoelectric MEMS Energy Harvester Based on d33 Mode of PZT Thin Film on Buffer- Layer with PbTiO3 Inter-Layer [C]. Transducers 2009, Denver, CO, USA, 2009: 517-520. 被引量:1
  • 3BEEBY S P, TORAH R N, TUDOR M J, et al.. A micro electromagnetic generator for vibration en- ergy harvesting[J]. Journal of Micromechanics and Microengineering, 2007,17:1257-1265. 被引量:1
  • 4SARI I, BALKAN T, KULAH H. An electromag- netic micro power generator for low-frequency environ- mental vibrations based on the frequency upconversion technique [J]. Journal of Microelectromechanical Systems, 2010,19(1) :14-27. 被引量:1
  • 5HOFFMANN D, FOLKMER B, MANOLI Y. Fabri- cation, characterization and modeling of electrostatic micro-generators [J]. Journal of Micromechanics and Microengineering, 2009, 19: 094001. 被引量:1
  • 6HALVORSEN E, WESTBY E R, HUSA S, et al.. An Electrostatic Energy Harvester with Eelec- tret Bias (C]. Transducers 2009, Denver, CO, USA, 2009:1381-1384. 被引量:1
  • 7WISCHKE M, MASUR M, WOIAS P. A Hybrid Generator for Vibration Energy Harvesting Appli- cations [C]. Transducers 2009, Denver, CO, USA, 2009 : 521-524. 被引量:1
  • 8ERTURK A, INMAN D J. An experimentally validated bimorph cantilever model for piezoelectric energy harvesting from base excitations [J]. Smart Materials and Structures, 2009, 18: 025009. 被引量:1
  • 9KIM M, HOEGEN M, DUGUNDJI J, et al.. Modeling and experimental verification of proof mass effects on vibration energy harvester per- formanee [J]. Smart Materials and Structures, 2010,19:045023. 被引量:1
  • 10ERTURK A, INMAN D J. A distributed parame- ter electromechanical model for cantilevered piezo- electric energy harvesters[J]. Journal of Vibra- tion and Acoustics, 2008,130:041002. 被引量:1

引证文献5

二级引证文献45

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部