Energy harvesting in a delayed and excited Duffing harvester device

We explore quasi-periodic (QP) vibration-based energy harvesting (EH) in a forced nonlinear oscillator under time delay. The energy harvesting system consists in a delayed Duffing oscillator subject to harmonic excitation coupled to an electric circuit through an electromechanical coupling mechanism...

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Main Authors: Ghouli Z., Hamdi M., Lakrad F., Belhaq M.
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20168302001
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spelling doaj-f5b763d2611743c58f4ede85f9d245a22021-02-02T01:47:35ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01830200110.1051/matecconf/20168302001matecconf_csndd2016_02001Energy harvesting in a delayed and excited Duffing harvester deviceGhouli Z.Hamdi M.Lakrad F.Belhaq M.We explore quasi-periodic (QP) vibration-based energy harvesting (EH) in a forced nonlinear oscillator under time delay. The energy harvesting system consists in a delayed Duffing oscillator subject to harmonic excitation coupled to an electric circuit through an electromechanical coupling mechanism.We consider the case of primary resonance for which the frequency of the excitation is near the natural frequency of the oscillator. Application of the double-step perturbation method enables the approximation of the amplitude of the QP vibrations used to extract the average powers from the harvester device. Results shown that for a small value of delay amplitude, the periodic vibration-based EH can be extracted in a narrow range near the resonance, while QP vibration-based EH can be extracted over broad ranges of excitation. For relatively increasing value of the delay amplitude, only QP vibration-based EH can be extracted.http://dx.doi.org/10.1051/matecconf/20168302001
collection DOAJ
language English
format Article
sources DOAJ
author Ghouli Z.
Hamdi M.
Lakrad F.
Belhaq M.
spellingShingle Ghouli Z.
Hamdi M.
Lakrad F.
Belhaq M.
Energy harvesting in a delayed and excited Duffing harvester device
MATEC Web of Conferences
author_facet Ghouli Z.
Hamdi M.
Lakrad F.
Belhaq M.
author_sort Ghouli Z.
title Energy harvesting in a delayed and excited Duffing harvester device
title_short Energy harvesting in a delayed and excited Duffing harvester device
title_full Energy harvesting in a delayed and excited Duffing harvester device
title_fullStr Energy harvesting in a delayed and excited Duffing harvester device
title_full_unstemmed Energy harvesting in a delayed and excited Duffing harvester device
title_sort energy harvesting in a delayed and excited duffing harvester device
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description We explore quasi-periodic (QP) vibration-based energy harvesting (EH) in a forced nonlinear oscillator under time delay. The energy harvesting system consists in a delayed Duffing oscillator subject to harmonic excitation coupled to an electric circuit through an electromechanical coupling mechanism.We consider the case of primary resonance for which the frequency of the excitation is near the natural frequency of the oscillator. Application of the double-step perturbation method enables the approximation of the amplitude of the QP vibrations used to extract the average powers from the harvester device. Results shown that for a small value of delay amplitude, the periodic vibration-based EH can be extracted in a narrow range near the resonance, while QP vibration-based EH can be extracted over broad ranges of excitation. For relatively increasing value of the delay amplitude, only QP vibration-based EH can be extracted.
url http://dx.doi.org/10.1051/matecconf/20168302001
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AT hamdim energyharvestinginadelayedandexcitedduffingharvesterdevice
AT lakradf energyharvestinginadelayedandexcitedduffingharvesterdevice
AT belhaqm energyharvestinginadelayedandexcitedduffingharvesterdevice
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