Vibration-based MEMS Piezoelectric Energy Harvester for Power Optimization

被引:5
|
作者
Sidek, Othman [1 ]
Saadon, Salem [2 ]
机构
[1] USM, CEDEC, George Town, Malaysia
[2] USM, CEDEC, Sch Elect & Elect Engn, George Town, Malaysia
关键词
Piezoelectric materials; Energy conversion; shaped cantilever; MEMS; GENERATOR; FABRICATION; MODE;
D O I
10.1109/UKSim.2013.153
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
The simplicity associated with piezoelectric micro-generators makes them very attractive for MEMS applications in which ambient vibrations are harvested and converted into electric energy. These micro-generators can become an alternative to the battery-based solutions in the future, especially for remote systems. In this paper, we propose a model and present the simulation of a MEMS-based energy harvester under ambient vibration excitation using the COVENTORWARE2010 approach. This E-shaped cantilever-based MEMS energy harvester that operates under ambient excitation in frequencies of 28, 29, and 31 Hz within a base acceleration of 1g produces an output power of 0.25 milliwatts at 5k Omega load.
引用
收藏
页码:241 / 246
页数:6
相关论文
共 50 条
  • [31] Wireless Vibration Sensing System Powered by a Piezoelectric MEMS Vibration Energy Harvester
    Takei, Ryohei
    Okada, Hironao
    Kobayashi, Takeshi
    Noda, Daiji
    Ohta, Ryo
    Itoh, Toshihiro
    2016 IEEE SENSORS, 2016,
  • [32] Power characteristics of vibration-based piezoelectric energy harvesters: the effect of piezoelectric material nonlinearity
    Lan, Chunbo
    Qian, Feng
    Liao, Yabin
    Zuo, Lei
    SMART MATERIALS AND STRUCTURES, 2022, 31 (10)
  • [33] Design and Simulation of MEMS AlN Piezoelectric Vibration Energy Harvester Array for Improved Power Density
    Nisanth, A.
    Suja, K. J.
    Seena, V.
    2018 IEEE SENSORS, 2018, : 251 - 254
  • [34] Temperature effect on the vibration-based electrostatic energy harvester
    Kim, Sehwan
    Bang, Sungil
    Chun, Kukjin
    2011 IEEE REGION 10 CONFERENCE TENCON 2011, 2011, : 1317 - 1320
  • [35] A Vibration-Based PMN-PT Energy Harvester
    Mathers, Alex
    Moon, Kee S.
    Yi, Jingang
    IEEE SENSORS JOURNAL, 2009, 9 (07) : 731 - 739
  • [36] ON THE OPTIMIZATION AND PERFORMANCES OF A COMPACT PIEZOELECTRIC IMPACT MEMS ENERGY HARVESTER
    Janphuang, Pattanaphong
    Lockhart, Robert
    Briand, Danick
    de Rooij, Nico F.
    2014 IEEE 27TH INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS (MEMS), 2014, : 429 - 432
  • [37] MEMS Piezoelectric Vibration Energy Harvester with In-Plane PZT Bimorph
    Wang, Lu
    Zhao, Libo
    Jiang, Zhuangde
    Li, Xiang
    Chen, Zihang
    Ryutaro, Maeda
    2019 14TH ANNUAL IEEE INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS (IEEE-NEMS 2019), 2019, : 355 - 359
  • [38] Piezoelectric MEMS Energy Harvester for Low-Power Applications
    Muscalu, George
    Firtat, Bogdan
    Anghelescu, Adrian
    Moldovan, Carmen
    Dinulescu, Silviu
    Brasoveanu, Costin
    Ekwinska, Magdalena
    Szmigiel, Dariusz
    Zaborowski, Michal
    Zajac, Jerzy
    Stan, Ion
    Tulbure, Adrian
    ELECTRONICS, 2024, 13 (11)
  • [39] Power Optimization by Mass Tuning for MEMS Piezoelectric Cantilever Vibration Energy Harvesting
    Jia, Yu
    Seshia, Ashwin A.
    JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2016, 25 (01) : 108 - 117
  • [40] A Novel Structure for Piezoelectric Based MEMS Energy Harvester
    Chamuah, Anil
    Kurmendra
    Kumar, Rajesh
    2018 5TH IEEE UTTAR PRADESH SECTION INTERNATIONAL CONFERENCE ON ELECTRICAL, ELECTRONICS AND COMPUTER ENGINEERING (UPCON), 2018, : 1189 - 1192