Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester

Energy harvesting is a very promising technology to provide low levels of power for small autonomous systems, which the applicability encompass a very wide range of areas, that spans from micro/nano sensors in engineering to state of art implants in medicine. The present work deals with the analysis...

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Main Authors: Peterson João Victor Ligier Lopes, Lopes Vinicius Gonçalves, Cunha Americo
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201824101001
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author Peterson João Victor Ligier Lopes
Lopes Vinicius Gonçalves
Cunha Americo
author_facet Peterson João Victor Ligier Lopes
Lopes Vinicius Gonçalves
Cunha Americo
author_sort Peterson João Victor Ligier Lopes
collection DOAJ
description Energy harvesting is a very promising technology to provide low levels of power for small autonomous systems, which the applicability encompass a very wide range of areas, that spans from micro/nano sensors in engineering to state of art implants in medicine. The present work deals with the analysis and detailed characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester driven by a periodic external excitation. The dynamical system is studied in depth through bifurcation diagrams and basins of attraction. The level of chaoticity of the dynamical system is accessed very efficiently via the 0-1 test for chaos, which allows mapping the presence of dense regions of chaos without the help of the Lyapunov exponents.
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spelling doaj.art-d1e1a813d91540a6888dfca83287286b2022-12-21T23:38:55ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012410100110.1051/matecconf/201824101001matecconf_csndd2018_01001Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvesterPeterson João Victor Ligier Lopes0Lopes Vinicius Gonçalves1Cunha Americo2Universidade do Estado do Rio de JaneiroUniversidade do Estado do Rio de JaneiroUniversidade do Estado do Rio de JaneiroEnergy harvesting is a very promising technology to provide low levels of power for small autonomous systems, which the applicability encompass a very wide range of areas, that spans from micro/nano sensors in engineering to state of art implants in medicine. The present work deals with the analysis and detailed characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester driven by a periodic external excitation. The dynamical system is studied in depth through bifurcation diagrams and basins of attraction. The level of chaoticity of the dynamical system is accessed very efficiently via the 0-1 test for chaos, which allows mapping the presence of dense regions of chaos without the help of the Lyapunov exponents.https://doi.org/10.1051/matecconf/201824101001
spellingShingle Peterson João Victor Ligier Lopes
Lopes Vinicius Gonçalves
Cunha Americo
Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
MATEC Web of Conferences
title Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
title_full Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
title_fullStr Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
title_full_unstemmed Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
title_short Dynamic analysis and characterization of a nonlinear bi-stable piezo-magneto-elastic energy harvester
title_sort dynamic analysis and characterization of a nonlinear bi stable piezo magneto elastic energy harvester
url https://doi.org/10.1051/matecconf/201824101001
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AT cunhaamerico dynamicanalysisandcharacterizationofanonlinearbistablepiezomagnetoelasticenergyharvester