Vibration based piezoelectric energy harvesting utilizing bridgeless rectifier circuit
The energy harvesting technique has the capability to build autonomous, self-powered electronic systems that does not depend on the battery power for driving the low power electronics devices. In this paper, a voltage doubler and bridgeless boost rectifier power electronic converter is proposed to...
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ukm-102192017-03-15T09:45:43Z http://journalarticle.ukm.my/10219/ Vibration based piezoelectric energy harvesting utilizing bridgeless rectifier circuit Mahidur R. Sarker, Azah Mohamed, Ramizi Mohamed, The energy harvesting technique has the capability to build autonomous, self-powered electronic systems that does not depend on the battery power for driving the low power electronics devices. In this paper, a voltage doubler and bridgeless boost rectifier power electronic converter is proposed to increase the energy harvesting output voltage from piezoelectric vibration based transducer. The conventional full-wave diode bridge rectifier and boost converter for energy harvesting system increases significant voltage drop and power losses in the circuit. However, the proposed voltage doubler and bridgeless boost rectifier circuit reduce the voltage drop and power loses in the circuit and thus increases the efficiency of the circuit. The proposed voltage doubler and bridgeless boost rectifier circuit step-up the output voltage up to 3 V DC from an input voltage of 1.9 V AC. Penerbit Universiti Kebangsaan Malaysia 2016 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/10219/1/10.pdf Mahidur R. Sarker, and Azah Mohamed, and Ramizi Mohamed, (2016) Vibration based piezoelectric energy harvesting utilizing bridgeless rectifier circuit. Jurnal Kejuruteraan, 28 . pp. 87-94. ISSN 0128-0198 http://www.ukm.my/jkukm/?page_id=2011 |
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Digital Repository |
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Local University |
institution |
Universiti Kebangasaan Malaysia |
building |
UKM Institutional Repository |
collection |
Online Access |
language |
English |
description |
The energy harvesting technique has the capability to build autonomous, self-powered electronic systems that does not
depend on the battery power for driving the low power electronics devices. In this paper, a voltage doubler and bridgeless
boost rectifier power electronic converter is proposed to increase the energy harvesting output voltage from piezoelectric
vibration based transducer. The conventional full-wave diode bridge rectifier and boost converter for energy harvesting
system increases significant voltage drop and power losses in the circuit. However, the proposed voltage doubler and
bridgeless boost rectifier circuit reduce the voltage drop and power loses in the circuit and thus increases the efficiency
of the circuit. The proposed voltage doubler and bridgeless boost rectifier circuit step-up the output voltage up to 3 V DC
from an input voltage of 1.9 V AC. |
format |
Article |
author |
Mahidur R. Sarker, Azah Mohamed, Ramizi Mohamed, |
spellingShingle |
Mahidur R. Sarker, Azah Mohamed, Ramizi Mohamed, Vibration based piezoelectric energy harvesting utilizing bridgeless rectifier circuit |
author_facet |
Mahidur R. Sarker, Azah Mohamed, Ramizi Mohamed, |
author_sort |
Mahidur R. Sarker, |
title |
Vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
title_short |
Vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
title_full |
Vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
title_fullStr |
Vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
title_full_unstemmed |
Vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
title_sort |
vibration based piezoelectric energy harvesting utilizing
bridgeless rectifier circuit |
publisher |
Penerbit Universiti Kebangsaan Malaysia |
publishDate |
2016 |
url |
http://journalarticle.ukm.my/10219/ http://journalarticle.ukm.my/10219/ http://journalarticle.ukm.my/10219/1/10.pdf |
first_indexed |
2023-09-18T19:56:49Z |
last_indexed |
2023-09-18T19:56:49Z |
_version_ |
1777406584625823744 |