Design and analysis of vibration based MEMS energy harvester for precision agriculture

Proceeding of Nanotechnology 2013: Electronics, Devices, Fabrication, MEMS, Fluidics and Computational - 2013 NSTI Nanotechnology Conference and Expo (NSTI-Nanotech 2013) at Washington, DC, United States on 12 May 2013 through 16 May 2013.

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Main Authors: Hasnizah, Aris, Fitrio, David, Singh, Jack
Other Authors: haris@students.latrobe.edu.au
Format: Working Paper
Language:English
Published: TechConnect. All Rights Reserved 2014
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Online Access:http://dspace.unimap.edu.my:80/dspace/handle/123456789/34155
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spelling my.unimap-341552014-04-29T04:23:56Z Design and analysis of vibration based MEMS energy harvester for precision agriculture Hasnizah, Aris Fitrio, David Singh, Jack haris@students.latrobe.edu.au d.fitrio@latrobe.edu.au j.singh@latrobe.edu.au Energy harvester Meshing Peak power response Piezoelectric Resonant frequency Tip deflection Proceeding of Nanotechnology 2013: Electronics, Devices, Fabrication, MEMS, Fluidics and Computational - 2013 NSTI Nanotechnology Conference and Expo (NSTI-Nanotech 2013) at Washington, DC, United States on 12 May 2013 through 16 May 2013. This paper discusses the performances of different cantilever geometry of piezoelectric MEMS Energy Harvester. Resonant frequency, tip deflection, output voltage and peak power response of five different geometries are compared and analysed. Two piezoelectric materials, ZnO and AlN are utilized as part of the cantilever structures. The design and optimization procedures are done using Coventorware®. Meshing refinement study is also carried out to ensure the numerical accuracy of the results and reduce simulation time. The third cantilever design achieved the least resonant frequency, 3.7 kHz and with total peak power response of 0.14 pW. 2014-04-29T04:23:56Z 2014-04-29T04:23:56Z 2013-05 Working Paper p. 205-208 978-148220584-8 http://dspace.unimap.edu.my:80/dspace/handle/123456789/34155 en Proceeding of Nanotechnology 2013: Electronics, Devices, Fabrication, MEMS, Fluidics and Computational - 2013 NSTI Nanotechnology Conference and Expo (NSTI-Nanotech 2013); TechConnect. All Rights Reserved
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Energy harvester
Meshing
Peak power response
Piezoelectric
Resonant frequency
Tip deflection
spellingShingle Energy harvester
Meshing
Peak power response
Piezoelectric
Resonant frequency
Tip deflection
Hasnizah, Aris
Fitrio, David
Singh, Jack
Design and analysis of vibration based MEMS energy harvester for precision agriculture
description Proceeding of Nanotechnology 2013: Electronics, Devices, Fabrication, MEMS, Fluidics and Computational - 2013 NSTI Nanotechnology Conference and Expo (NSTI-Nanotech 2013) at Washington, DC, United States on 12 May 2013 through 16 May 2013.
author2 haris@students.latrobe.edu.au
author_facet haris@students.latrobe.edu.au
Hasnizah, Aris
Fitrio, David
Singh, Jack
format Working Paper
author Hasnizah, Aris
Fitrio, David
Singh, Jack
author_sort Hasnizah, Aris
title Design and analysis of vibration based MEMS energy harvester for precision agriculture
title_short Design and analysis of vibration based MEMS energy harvester for precision agriculture
title_full Design and analysis of vibration based MEMS energy harvester for precision agriculture
title_fullStr Design and analysis of vibration based MEMS energy harvester for precision agriculture
title_full_unstemmed Design and analysis of vibration based MEMS energy harvester for precision agriculture
title_sort design and analysis of vibration based mems energy harvester for precision agriculture
publisher TechConnect. All Rights Reserved
publishDate 2014
url http://dspace.unimap.edu.my:80/dspace/handle/123456789/34155
_version_ 1643797410804137984
score 13.226497