Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism

In recent years, energy harvesting technology has been given a lot of attention due to its capability to produce clean and sustainable energy to power electronic devices. The applications of this technology involve the area of biomedical, automotive, industrial, and even military applications. Curre...

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Main Authors: Mustaffer, Muhammad Harith, Wan Hashim, Wan Ahmad Faiz, Abdul Rahman, Mohd Nazim, Ramlan, Roszaidi, Putra, Azma
Format: Article
Language:English
Published: Universiti Malaysia Perlis 2020
Online Access:http://eprints.utem.edu.my/id/eprint/25066/2/IJNEAM%20VOL_13_NO_3_2020_10_523-536.PDF
http://eprints.utem.edu.my/id/eprint/25066/
https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20JULAI%202020/Vol_13_No_3_2020_10_523-536.pdf
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spelling my.utem.eprints.250662021-07-19T16:01:04Z http://eprints.utem.edu.my/id/eprint/25066/ Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism Mustaffer, Muhammad Harith Wan Hashim, Wan Ahmad Faiz Abdul Rahman, Mohd Nazim Ramlan, Roszaidi Putra, Azma In recent years, energy harvesting technology has been given a lot of attention due to its capability to produce clean and sustainable energy to power electronic devices. The applications of this technology involve the area of biomedical, automotive, industrial, and even military applications. Currently, the energy harvesting device is made for more than one purpose. Due to similar operating characteristics, apart from tapping the ambient energy, it is also used as the dynamic vibration absorber (DVA). However, the conventional linear mechanism adopted in the system is limited to only in a restricted bandwidth. This paper proposes a newly designed non-linear piezoelectric energy harvesting device which was also adopted as a non-linear DVA (NDVA) by using a piecewise-linear stiffness mechanism. The mechanism consists of a cantilever beam constrained by two limit stoppers, which are adjustable in both horizontal and vertical directions. The restoring forcedeflection behaviour for different limit block configurations was characterised using quasistatic measurement. The dynamic study was conducted for different limit block configurations and input amplitudes. The study on the dynamic behaviour shows that the device can widen the harvesting frequency bandwidth compared to its equivalent linear DVA Universiti Malaysia Perlis 2020-07 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25066/2/IJNEAM%20VOL_13_NO_3_2020_10_523-536.PDF Mustaffer, Muhammad Harith and Wan Hashim, Wan Ahmad Faiz and Abdul Rahman, Mohd Nazim and Ramlan, Roszaidi and Putra, Azma (2020) Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism. International Journal of Nanoelectronics and Materials, 13 (3). pp. 523-536. ISSN 1985-5761 https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20JULAI%202020/Vol_13_No_3_2020_10_523-536.pdf
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description In recent years, energy harvesting technology has been given a lot of attention due to its capability to produce clean and sustainable energy to power electronic devices. The applications of this technology involve the area of biomedical, automotive, industrial, and even military applications. Currently, the energy harvesting device is made for more than one purpose. Due to similar operating characteristics, apart from tapping the ambient energy, it is also used as the dynamic vibration absorber (DVA). However, the conventional linear mechanism adopted in the system is limited to only in a restricted bandwidth. This paper proposes a newly designed non-linear piezoelectric energy harvesting device which was also adopted as a non-linear DVA (NDVA) by using a piecewise-linear stiffness mechanism. The mechanism consists of a cantilever beam constrained by two limit stoppers, which are adjustable in both horizontal and vertical directions. The restoring forcedeflection behaviour for different limit block configurations was characterised using quasistatic measurement. The dynamic study was conducted for different limit block configurations and input amplitudes. The study on the dynamic behaviour shows that the device can widen the harvesting frequency bandwidth compared to its equivalent linear DVA
format Article
author Mustaffer, Muhammad Harith
Wan Hashim, Wan Ahmad Faiz
Abdul Rahman, Mohd Nazim
Ramlan, Roszaidi
Putra, Azma
spellingShingle Mustaffer, Muhammad Harith
Wan Hashim, Wan Ahmad Faiz
Abdul Rahman, Mohd Nazim
Ramlan, Roszaidi
Putra, Azma
Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
author_facet Mustaffer, Muhammad Harith
Wan Hashim, Wan Ahmad Faiz
Abdul Rahman, Mohd Nazim
Ramlan, Roszaidi
Putra, Azma
author_sort Mustaffer, Muhammad Harith
title Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
title_short Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
title_full Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
title_fullStr Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
title_full_unstemmed Wideband Non-Linear Vibration Piezoelectric Energy Harvesting Using A Piecewise-Linear Mechanism
title_sort wideband non-linear vibration piezoelectric energy harvesting using a piecewise-linear mechanism
publisher Universiti Malaysia Perlis
publishDate 2020
url http://eprints.utem.edu.my/id/eprint/25066/2/IJNEAM%20VOL_13_NO_3_2020_10_523-536.PDF
http://eprints.utem.edu.my/id/eprint/25066/
https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20JULAI%202020/Vol_13_No_3_2020_10_523-536.pdf
_version_ 1706960983914708992
score 13.209306