Theoretical modeling and simulation of MEMS piezoelectric energy harvester

Energy harvesting devices, capable of converting wasted ambient energy to electrical power are rapidly gaining popularity as a source of green and renewable energy. This work presents the design and simulation of MEMS based piezoelectric cantilever beam which can both harvest energy as well as monit...

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Main Authors: Md Ralib @ Md Raghib, Aliza 'Aini, Nordin, Anis Nurashikin, Salleh, Hanim
Format: Proceeding Paper
Language:English
Published: 2010
Subjects:
Online Access:http://irep.iium.edu.my/3708/
http://irep.iium.edu.my/3708/1/3708.pdf
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author Md Ralib @ Md Raghib, Aliza 'Aini
Nordin, Anis Nurashikin
Salleh, Hanim
author_facet Md Ralib @ Md Raghib, Aliza 'Aini
Nordin, Anis Nurashikin
Salleh, Hanim
author_sort Md Ralib @ Md Raghib, Aliza 'Aini
building IIUM Repository
collection Online Access
description Energy harvesting devices, capable of converting wasted ambient energy to electrical power are rapidly gaining popularity as a source of green and renewable energy. This work presents the design and simulation of MEMS based piezoelectric cantilever beam which can both harvest energy as well as monitor critical vibration frequencies in power plant gas turbines. The design of the energy harvesters consists of a cantilever beam structure with the interdigitated electrodes on the zinc oxide piezoelectric layer with nickel proof mass at the end of the beam. A mechanical finite element simulation was conducted using CoventorWare #x00A9;. This paper illustrates the proposed theoretical modeling and simulation of piezoelectric energy harvesters.
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format Proceeding Paper
id iium-3708
institution International Islamic University Malaysia
institution_category Local University
language English
last_indexed 2025-11-14T14:26:22Z
publishDate 2010
recordtype eprints
repository_type Digital Repository
spelling iium-37082016-03-17T02:53:30Z http://irep.iium.edu.my/3708/ Theoretical modeling and simulation of MEMS piezoelectric energy harvester Md Ralib @ Md Raghib, Aliza 'Aini Nordin, Anis Nurashikin Salleh, Hanim TK7885 Computer engineering Energy harvesting devices, capable of converting wasted ambient energy to electrical power are rapidly gaining popularity as a source of green and renewable energy. This work presents the design and simulation of MEMS based piezoelectric cantilever beam which can both harvest energy as well as monitor critical vibration frequencies in power plant gas turbines. The design of the energy harvesters consists of a cantilever beam structure with the interdigitated electrodes on the zinc oxide piezoelectric layer with nickel proof mass at the end of the beam. A mechanical finite element simulation was conducted using CoventorWare #x00A9;. This paper illustrates the proposed theoretical modeling and simulation of piezoelectric energy harvesters. 2010-05 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/3708/1/3708.pdf Md Ralib @ Md Raghib, Aliza 'Aini and Nordin, Anis Nurashikin and Salleh, Hanim (2010) Theoretical modeling and simulation of MEMS piezoelectric energy harvester. In: International Conference on Computer and Communication Engineering (ICCCE 2010), 11-13 May 2010, Kuala Lumpur. http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=5556815
spellingShingle TK7885 Computer engineering
Md Ralib @ Md Raghib, Aliza 'Aini
Nordin, Anis Nurashikin
Salleh, Hanim
Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title_full Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title_fullStr Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title_full_unstemmed Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title_short Theoretical modeling and simulation of MEMS piezoelectric energy harvester
title_sort theoretical modeling and simulation of mems piezoelectric energy harvester
topic TK7885 Computer engineering
url http://irep.iium.edu.my/3708/
http://irep.iium.edu.my/3708/
http://irep.iium.edu.my/3708/1/3708.pdf