Optimized Power Output from Piezoelectric Flexure Element Driven by Low Frequencies

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dc.contributor.author Gamage, W.G.P.L.M.
dc.contributor.author Ganege, H.C.
dc.contributor.author Shazla, M.A.F.
dc.contributor.author Rasul, M.J.M.A.
dc.date.accessioned 2022-08-23T06:10:29Z
dc.date.available 2022-08-23T06:10:29Z
dc.date.issued 2015-03-04
dc.identifier.citation Gamage, W. G. P. L. M., Ganege, H. C., Shazla, M. A. F. & Rasul, M. J. M. A. (2015). Optimized Power Output from Piezoelectric Flexure Element Driven by Low Frequencies. 12th Academic Sessions, University of Ruhuna, Matara, Sri Lanka, 139.
dc.identifier.issn 2362-0412
dc.identifier.uri http://ir.lib.ruh.ac.lk/xmlui/handle/iruor/7785
dc.description.abstract Energy Harvesting is the process of capturing readily available energy and converting into usable electrical energy. Among the many different types of energy harvesting methods, piezoelectric energy harvesting has become popular as Piezoelectric materials have the ability to transform mechanical energy into electrical energy. This research is focused on obtaining and optimizing the output of commercially available piezoelectric device which converts mechanical vibrations (starin) into usable electrical energy. Moreover this research is focused on low vibrational frequency levels as normal vibration sources in the environment such as building, machine, human body, and vehicle have low frequency characteristics. In this research, output power of the piezoelectric energy harvester is measured for different vibration frequencies with different tip masses. By considering the experimental data, values for tip mass and vibration frequency are suggested to extract the maximum power output from the energy harvester in 0 to 50 Hz frequency range and 1.45 g to 6.45 g tip mass range. en_US
dc.language.iso en en_US
dc.publisher University of Ruhuna, Matara, Sri Lanka en_US
dc.subject Energy harvesting en_US
dc.subject Low frequency en_US
dc.subject Piezoelectric en_US
dc.subject Tip mass en_US
dc.subject Vibration en_US
dc.title Optimized Power Output from Piezoelectric Flexure Element Driven by Low Frequencies en_US
dc.type Article en_US


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