A novel two-degrees-of-freedom piezoelectric energy harvester

Energy harvesting from ambient vibrations using piezoelectric effect is a promising alternative solution for powering small electronics such as wireless sensors. A conventional piezoelectric energy harvester usually consists of a cantilevered beam with a proof mass at its free end. For such a device...

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Main Authors: Wu, Hao, Tang, Lihua, Yang, Yaowen, Soh, Chee Kiong
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/79588
http://hdl.handle.net/10220/17558
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-795882020-03-07T11:43:30Z A novel two-degrees-of-freedom piezoelectric energy harvester Wu, Hao Tang, Lihua Yang, Yaowen Soh, Chee Kiong School of Civil and Environmental Engineering Energy harvesting from ambient vibrations using piezoelectric effect is a promising alternative solution for powering small electronics such as wireless sensors. A conventional piezoelectric energy harvester usually consists of a cantilevered beam with a proof mass at its free end. For such a device, the second resonance of the piezoelectric energy harvester is usually ignored because of its high frequency as well as low response level compared to the first resonance. Hence, only the first mode has been frequently exploited for energy harvesting in the reported literature. In this article, a novel compact piezoelectric energy harvester using two vibration modes has been developed. The harvester comprises one main cantilever beam and an inner secondary cantilever beam, each of which is bonded with piezoelectric transducers. By varying the proof masses, the first two resonant frequencies of the harvester can be tuned close enough to achieve useful wide bandwidth. Meanwhile, this compact design efficiently utilizes the cantilever beam by generating significant power output from both the main and secondary beams. An experiment and simulation were carried out to validate the design concept. The results show that the proposed novel piezoelectric energy harvester is more adaptive and functional in practical vibrational circumstances. Accepted Version 2013-11-11T04:44:59Z 2019-12-06T13:28:46Z 2013-11-11T04:44:59Z 2019-12-06T13:28:46Z 2012 2012 Journal Article Wu, H., Tang, L., Yang, Y., & Soh, C. K. (2013). A novel two-degrees-of-freedom piezoelectric energy harvester. Journal of Intelligent Material Systems and Structures, 24(3), 357-368. https://hdl.handle.net/10356/79588 http://hdl.handle.net/10220/17558 10.1177/1045389X12457254 en Journal of intelligent material systems and structures © 2012 The Authors. This is the author created version of a work that has been peer reviewed and accepted for publication in Journal of Intelligent Material Systems and Structures, published by SAGE Publications on behalf of The Authors. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: [DOI: http://dx.doi.org/10.1177/1045389X12457254]. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description Energy harvesting from ambient vibrations using piezoelectric effect is a promising alternative solution for powering small electronics such as wireless sensors. A conventional piezoelectric energy harvester usually consists of a cantilevered beam with a proof mass at its free end. For such a device, the second resonance of the piezoelectric energy harvester is usually ignored because of its high frequency as well as low response level compared to the first resonance. Hence, only the first mode has been frequently exploited for energy harvesting in the reported literature. In this article, a novel compact piezoelectric energy harvester using two vibration modes has been developed. The harvester comprises one main cantilever beam and an inner secondary cantilever beam, each of which is bonded with piezoelectric transducers. By varying the proof masses, the first two resonant frequencies of the harvester can be tuned close enough to achieve useful wide bandwidth. Meanwhile, this compact design efficiently utilizes the cantilever beam by generating significant power output from both the main and secondary beams. An experiment and simulation were carried out to validate the design concept. The results show that the proposed novel piezoelectric energy harvester is more adaptive and functional in practical vibrational circumstances.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Wu, Hao
Tang, Lihua
Yang, Yaowen
Soh, Chee Kiong
format Article
author Wu, Hao
Tang, Lihua
Yang, Yaowen
Soh, Chee Kiong
spellingShingle Wu, Hao
Tang, Lihua
Yang, Yaowen
Soh, Chee Kiong
A novel two-degrees-of-freedom piezoelectric energy harvester
author_sort Wu, Hao
title A novel two-degrees-of-freedom piezoelectric energy harvester
title_short A novel two-degrees-of-freedom piezoelectric energy harvester
title_full A novel two-degrees-of-freedom piezoelectric energy harvester
title_fullStr A novel two-degrees-of-freedom piezoelectric energy harvester
title_full_unstemmed A novel two-degrees-of-freedom piezoelectric energy harvester
title_sort novel two-degrees-of-freedom piezoelectric energy harvester
publishDate 2013
url https://hdl.handle.net/10356/79588
http://hdl.handle.net/10220/17558
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