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Enhancement of energy harvesting performance for a piezoelectric cantilever using a spring mass suspension

Authors
Li, ChuanHong, DaewoongKwon, Kwang-HoJeong, Jaehwa
Issue Date
2월-2014
Publisher
JVE INT LTD
Keywords
vibration; energy harvester; piezoelectric cantilever; broadband; power
Citation
JOURNAL OF VIBROENGINEERING, v.16, no.1, pp.116 - 125
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF VIBROENGINEERING
Volume
16
Number
1
Start Page
116
End Page
125
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/99399
ISSN
1392-8716
Abstract
A spring-mass suspension is proposed in this paper for enhancing vibration energy harvesting performances of piezoelectric cantilevers. The suspension is inserted between the piezoelectric cantilever and the vibration base. Two key criteria are proposed for designing the present structure towards simultaneous broadband and intensive energy harvesting. On the one hand, the natural frequency of the spring-mass suspension is tuned close to that of the piezoelectric beam. On the other hand, the inertial mass of the suspension is chosen much greater than the cantilever mass. The amplification of the dynamic response over a broader frequency band of the proposed configuration is validated via vibration analyses. A prototype device in accordance with the proposed design is subsequently developed for experimental evaluations. The present structure widens the effective bandwidth from 7.6 Hz to 22.2 Hz, while increasing the maximum harvested power from 0.01436 mW/g to 0.4406 mW/g compared to the conventional cantilevered energy harvester.
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Graduate School > Department of Control and Instrumentation Engineering > 1. Journal Articles
College of Science and Technology > Department of Electro-Mechanical Systems Engineering > 1. Journal Articles

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