Design and Simulation of Broadband Piezoelectric Energy Harvester with Multi-Cantilever

被引:0
|
作者
Mo, Weiqiang [1 ]
Huang, Shiqing [1 ]
Liu, Na [1 ]
机构
[1] Beijing Inst Technol, Sch Ind Automat, Zhuhai 519088, Guangdong, Peoples R China
来源
PROCEEDINGS OF INCOME-VI AND TEPEN 2021: PERFORMANCE ENGINEERING AND MAINTENANCE ENGINEERING | 2023年 / 117卷
关键词
Piezoelectric; Cantilever; Vibration; Natural frequency; Broadband;
D O I
10.1007/978-3-030-99075-6_68
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Piezoelectric bimorph cantilever is a typical collecting structure for vibration energy, however it can not adapt to the low frequency and random of vibration excitation in natural environment. In this paper, the physical model of linear vibration system of piezoelectric bimorph cantilever is analyzed, where the piezoelectric energy harvester with multi-cantilever is designed for it's disadvantages. By increasing the cantilever beam with different natural frequencies, the energy harvester has the characteristics of broadband. By measuring the dynamic strain under sweep excitation in the simulation of Comsol, Compare the output voltage and working bandwidth between the piezoelectric bimorph cantilever and the piezoelectric energy harvester with multi-cantilever, verify the broadband characteristics of the latter. This paper also designs the rectifier circuit, to convert alternating current from the energy harvester into direct current.
引用
收藏
页码:841 / 851
页数:11
相关论文
共 50 条
  • [21] Performance Analysis of Piezoelectric Multi-cantilever Array System with Different Mass Configurations
    Syed, Fahmidul Huq
    Thong, Li Wah
    Chan, Yee Kit
    INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING, 2024, 16 (03): : 118 - 132
  • [22] Optimization of bimorph cantilever based piezoelectric energy harvester for high efficiency
    Satyanarayana T.
    Nikhitha Y.
    Neeraj Kumar C.
    Jeevan Naga Sai K.
    Lohitha V.
    Materials Today: Proceedings, 2023, 80 : 2883 - 2887
  • [23] Long-term fatigue behavior of a cantilever piezoelectric energy harvester
    Avvari, Panduranga Vittal
    Yang, Yaowen
    Soh, Chee Kiong
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2017, 28 (09) : 1188 - 1210
  • [24] Design and optimization of a compact broadband piezoelectric energy harvester system with enhanced efficiency
    Ma, Xinxin
    Gong, Lijiao
    Zeng, Zhaoquan
    Wu, Yufei
    Guo, Wangwang
    Chen, Haichao
    Feng, Ge
    Renewable Energy, 2025, 247
  • [25] Non Traditional Proof Mass Arrangement in Cantilever based Piezoelectric Energy Harvester
    Butram, Vicky
    Naugarhiya, Alok
    PROCEEDINGS ON 2018 IEEE 3RD INTERNATIONAL CONFERENCE ON COMPUTING, COMMUNICATION AND SECURITY (ICCCS), 2018, : 100 - 103
  • [26] Energy harvesting properties of the d31 type piezoelectric cantilever harvester
    Xu, Dongyu
    Hu, Yan
    Bu, Xianlong
    Chen, Huaicheng
    Jia, Hongyu
    JOURNAL OF ELECTROCERAMICS, 2023, 51 (03) : 221 - 229
  • [27] Design, fabrication, and experimental demonstration of a piezoelectric cantilever for a low resonant frequency microelectromechanical system vibration energy harvester
    Kim, Moonkeun
    Hwang, Beomseok
    Ham, Yong-Hyun
    Jeong, Jaehwa
    Min, Nam Ki
    Kwon, Kwang-Ho
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2012, 11 (03):
  • [28] Design and Fabrication of Vibration Based Energy Harvester Using Microelectromechanical System Piezoelectric Cantilever for Low Power Applications
    Kim, Moonkeun
    Lee, Sang-Kyun
    Yang, Yil Suk
    Jeong, Jaehwa
    Min, Nam Ki
    Kwon, Kwang-Ho
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2013, 13 (12) : 7932 - 7937
  • [29] Theoretical and experimental study on the secondary piezoelectric effect of a piezoelectric cantilever energy harvester
    Liu, Chengxi
    Wang, Xiaoxi
    Shan, Xiaobiao
    Xie, Tao
    MACHINE DESIGN AND MANUFACTURING ENGINEERING, 2012, 566 : 57 - 60
  • [30] Energy harvesting properties of the d31 type piezoelectric cantilever harvester
    Dongyu Xu
    Yan Hu
    Xianlong Bu
    Huaicheng Chen
    Hongyu Jia
    Journal of Electroceramics, 2023, 51 : 221 - 229