Affiliation of Author(s):航空学院
Journal:JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES
Key Words:Energy harvesting frequency up-conversion internal resonance nonlinear vibration
Abstract:Frequency up-converting vibration energy harvester can bridge the gap between high-frequency response and low-frequency input, greatly increasing the efficiency of energy conversion. This article proposed a novel frequency up-converting energy harvester based on 1:3 internal resonance in 2 degree-of-freedom cubic nonlinear systems. The harvester consists of two asymmetric cantilevers corresponding to two vibration degrees-of-freedom. The ratio of cantilevers' first-order resonances is (or close to) 1:3. When excited frequency matches the resonant frequency of the first assisting cantilever, 1:3 internal resonance of the harvester system occurs, leading to drastic vibration of the second generating cantilever at its resonance. The generated voltage frequency is then three times increased. Finally, simulated and experimental results clearly proved this frequency up-converting principle. In addition, the resonant frequency tuning and wideband behaviors of the harvester were also investigated, which increased the viability of the proposed harvester under the practical environment vibrations.
ISSN No.:1045-389X
Translation or Not:no
Date of Publication:2018-08-01
Co-author:jihongli,Jinhao Qiu,Liu, Weiqun,Zhao, Jinling
Correspondence Author:jihongli,Yipeng Wu
Associate Professor
Supervisor of Master's Candidates
Gender:Male
Alma Mater:格勒诺布尔大学
Education Level:格勒诺布尔大学
Degree:Doctoral Degree in Engineering
School/Department:College of Aerospace Engineering
Discipline:Engineering Mechanics. Measurement Technology and Instrumentation
Contact Information:yipeng.wu@nuaa.edu.cn
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