Double Impact-Based Piezoelectric Energy Harvester for Low-Frequency Operation

被引:3
|
作者
Machado, Sebastian Pablo [1 ]
Febbo, Mariano [2 ]
Osinaga, Santiago Manuel [1 ]
机构
[1] Univ Tecnol Nacl FRBB CIC, Grp Invest Multifis Aplicada GIMAP, RA-8000 Bahia Blanca, Argentina
[2] Univ Nacl Sur UNS, Dept Fis, Inst Fis Sur IFISUR, CONICET, RA-8000 Bahia Blanca, Argentina
关键词
Double impact; energy harvesting; low frequency; low impedance; piezoelectric; wide bandwidth; DRIVEN;
D O I
10.1109/JSEN.2022.3226537
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The article presents a theoretical, numerical, and experimental study of a frequency upconverting (FUC) piezoelectric vibration energy harvester with a single low-frequency resonator that impacts twice per oscillation cycle on a single high-frequency unimorph generator. The model's relevant physical aspects are specially designed to enhance the electrical output power over a wide-frequency range in the low-frequency excitation. The proposed double impact strategy allows obtaining a nearly constant output volt-age, in contrast to typical upconverting mechanisms whose output voltage decays quickly in time. The device is safe from fatigue and can be used in high acceleration scenarios because the large displacements are limited by the generating beam, which acts as a natural stopper in an upward and downward directions. The prototype is designed to obtain a low value of optimal resistance with enhanced broadband performance below 25 Hz. The double impact FUC energy harvester's performance is improved by adjusting the gap distance, the thickness of the generating beam, and the tip mass of the driving beam. The harvester reports 1428-mu W peak output power at 20 Hz and 400 mu W of average power for a usable bandwidth from 17.5 to 22 Hz in health monitoring systems. [GRAPHICS]
引用
收藏
页码:1081 / 1090
页数:10
相关论文
共 50 条
  • [21] Piezoelectric energy harvester using mechanical frequency up conversion for operation at low-level accelerations and low-frequency vibration
    Dongjae Han
    Kwang-Seok Yun
    Microsystem Technologies, 2015, 21 : 1669 - 1676
  • [22] Deep-Learning-Based Optimization for a Low-Frequency Piezoelectric MEMS Energy Harvester
    Chimeh, Hamidreza Ehsani
    Nabavi, Seyedfakhreddin
    Janaideh, Mohammad Al
    Zhang, Lihong
    IEEE SENSORS JOURNAL, 2021, 21 (19) : 21330 - 21341
  • [23] Impact-driven piezoelectric energy harvester using a pendulum structure for low-frequency vibration
    Fan, Guifen
    Wang, Yanjiong
    Tian, Feng
    Hao, Mengmeng
    Wen, Yue
    Xu, Yanzhe
    Zeng, FangFang
    Lu, Wenzhong
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2021, 32 (17) : 1997 - 2005
  • [24] A micromachined low-frequency piezoelectric harvester for vibration and wind energy scavenging
    He, Xuefeng
    Shang, Zhengguo
    Cheng, Yaoqing
    Zhu, You
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2013, 23 (12)
  • [25] Design of piezoelectric MEMS cantilever for low-frequency vibration energy harvester
    Takei, Ryohei
    Makimoto, Natsumi
    Okada, Hironao
    Itoh, Toshihiro
    Kobayashi, Takeshi
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2016, 55 (06)
  • [26] Design and performance analysis of the low-frequency and broadband piezoelectric energy harvester
    Laizhao, J.
    Rui, H.
    Weike, W.
    2017 3RD INTERNATIONAL CONFERENCE ON APPLIED MATERIALS AND MANUFACTURING TECHNOLOGY (ICAMMT 2017), 2017, 242
  • [27] A Piezoelectric Spring-Mass System as a Low-Frequency Energy Harvester
    Hu, Hongping
    Hu, Lin
    Yang, Jiashi
    Wang, Hairen
    Chen, Xuedong
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2013, 60 (04) : 846 - 850
  • [28] Investigation of Nonlinear Piezoelectric Energy Harvester for Low-Frequency and Wideband Applications
    Pertin, Osor
    Guha, Koushik
    Jaksic, Olga
    Jaksic, Zoran
    Iannacci, Jacopo
    MICROMACHINES, 2022, 13 (09)
  • [29] Wideband piezoelectric energy harvester for low-frequency application with plucking mechanism
    Hiraki, Yasuhiro
    Masuda, Arata
    Ikeda, Naoto
    Katsumura, Hidenori
    Kagata, Hiroshi
    Okumura, Hidenori
    ACTIVE AND PASSIVE SMART STRUCTURES AND INTEGRATED SYSTEMS 2015, 2015, 9431
  • [30] Impact-based Piezoelectric Energy Harvester as a Power Source for a Neural Activity Monitoring Circuit
    Kim, Sunhee
    Ju, Suna
    Ji, Chang-Hyeon
    INTERNATIONAL JOURNAL OF GRID AND DISTRIBUTED COMPUTING, 2018, 11 (03): : 51 - 62