Investigations of Vibration Energy Harvester Applying the Triangular Structure with a Tunable Resonant Frequency

被引:1
|
作者
Chen, Xiaozhe [1 ,2 ]
Jiao, Zhicheng [2 ]
Shi, Jialian [2 ]
机构
[1] Northeastern Univ Qinhuangdao, Sch Control Engn, Qinhuangdao 066004, Peoples R China
[2] Univ Sci & Technol LiaoNing, Sch Mech Engn & Automat, Anshan 114051, Peoples R China
基金
中国国家自然科学基金;
关键词
Energy harvester; Nonlinear system; Electromagnetic induction; Ambient vibration; Tuned resonance; WIRELESS SENSOR NETWORKS; STIFFNESS; ISOLATOR; DRIVEN;
D O I
10.1007/s42417-023-00963-z
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
PurposeThis paper investigates a vibration energy harvester with a triangular structure for lowfrequency vibrations, focusing on the analysis of nonlinear stiffness and damping characteristics generated by the structure itself for advantageous harvesting performance.MethodsFirst, Euler-Lagrange equation of the system is established based on Hamilton's principle. Then, with the mathematical modeling, the dynamic response of the system is derived using Harmonic Balance Method, which is discussed by numerical analysis. Based on the analytical solutions, the effects on harvesting power changed by different assembly angles, connecting rod length and excitation amplitudes are studied particularly. The advantageous harvesting performance of the proposed system is shown by comparing it with a corresponding conventional linear system.ResultsThe result shows that the triangular structure in the system is beneficial for expanding the power output and energy-harvesting bandwidth. Further, the resonant frequency of the system can be tuned to a desired value by adjusting the assembly angle according to the characteristics of surrounding vibration sources.ConclusionsTherefore, the harvester system in this work is demonstrated to provide an effective method for design to scavenge the low-frequency vibration energy from the ambient environment in engineering.
引用
收藏
页码:2043 / 2053
页数:11
相关论文
共 50 条
  • [21] Electromagnetic vibration harvester with piezoelectrically tunable resonance frequency
    Wischke, M.
    Masur, M.
    Goldschmidtboeing, F.
    Woias, P.
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2010, 20 (03)
  • [22] Widening the bandwidth of vibration energy harvester by automatically tracking the resonant frequency with magnetic sliders
    Wang, Kai
    Liu, Wenbo
    Tang, Yufei
    Pei, Jiahao
    Kang, Shuangyuan
    Wu, Zhifei
    SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2023, 58
  • [23] Vibration energy harvester with low resonant frequency based on flexible coil and liquid spring
    Wang, Y.
    Zhang, Q.
    Zhao, L.
    Tang, Y.
    Shkel, A.
    Kim, E. S.
    APPLIED PHYSICS LETTERS, 2016, 109 (20)
  • [24] System-Level Model and Simulation of a Frequency-Tunable Vibration Energy Harvester
    Bouhedma, Sofiane
    Rao, Yongchen
    Schuetz, Arwed
    Yuan, Chengdong
    Hu, Siyang
    Lange, Fred
    Bechtold, Tamara
    Hohlfeld, Dennis
    MICROMACHINES, 2020, 11 (01)
  • [25] A frequency and bandwidth tunable piezoelectric vibration energy harvester using multiple nonlinear techniques
    Wang, Xiang
    Chen, Changsong
    Wang, Na
    San, Haisheng
    Yu, Yuxi
    Halvorsen, Einar
    Chen, Xuyuan
    APPLIED ENERGY, 2017, 190 : 368 - 375
  • [26] Investigations of a Stiffness Tunable Nonlinear Vibrational Energy Harvester
    Su, Dongxu
    Nakano, Kimihiko
    Zheng, Rencheng
    Cartmell, Matthew P.
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2014, 14 (08)
  • [27] Applications of a Novel Tunable Piezoelectric Vibration Energy Harvester
    Raghavan, Sreekumari
    Gupta, Rishi
    Sharma, Loveleen
    MICROMACHINES, 2023, 14 (09)
  • [28] An advanced folded piezoelectric vibration energy harvester with low resonant frequency and high power density
    Shi, Chunkang
    Li, Fan
    Zhao, Jianhui
    AIP ADVANCES, 2020, 10 (06)
  • [29] Frequency adjustable MEMS vibration energy harvester
    Podder, P.
    Constantinou, P.
    Amann, A.
    Roy, S.
    27TH MICROMECHANICS AND MICROSYSTEMS EUROPE WORKSHOP (MME 2016), 2016, 757
  • [30] An Electromagnetic Frequency Increased Vibration Energy Harvester
    Ashraf, Khalid
    Khir, Mohd Haris Md
    Dennis, John Ojur
    MEMS, NANO AND SMART SYSTEMS, PTS 1-6, 2012, 403-408 : 4231 - +