Development of multiple-input power management circuit for piezoelectric harvester

This paper discusses the multisource input from the piezoelectric (PZT) generators to the power management circuit (PMC) of the energy harvesting system. It discusses the structure of the PMC starting from the AC-DC full bridge rectifier circuit and the structure of the storage circuit of the power...

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Main Authors: Resali M.S.M., Salleh H.
Other Authors: 57189247722
Format: Article
Published: UiTM Press 2023
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spelling my.uniten.dspace-233762023-05-29T14:39:54Z Development of multiple-input power management circuit for piezoelectric harvester Resali M.S.M. Salleh H. 57189247722 24067645400 This paper discusses the multisource input from the piezoelectric (PZT) generators to the power management circuit (PMC) of the energy harvesting system. It discusses the structure of the PMC starting from the AC-DC full bridge rectifier circuit and the structure of the storage circuit of the power management circuit itself. The AC-DC rectifier circuit was compared with separated AC-DC rectifier, series and parallel connection to choose the best performance output and structure. The storage circuit was also compared between traditional method and switch circuit. This paper also describes the designing circuit of the PMC from the software and fabricating it to PCB board circuit. The PMC was tested by connecting 4 input PZT generators which were harvested from the vibration and connected to the application electronic load circuit such as microcontroller and sensors to complete it as an energy harvesting vibration based system. The performance test was conducted by testing it in a laboratory and field test at one of the cooling fan power stations which provides continuous vibration from the motor. Two methods of testing were conducted to measure the performance of the PMC which were laboratory test and field test at the vibrating motor of cooling fan in power station. The 70% of the efficiency was recorded for both laboratory test and field test from the PMC. The output power of the PMC is 1.94mW and the input power is from the multisource input PZT. Author also makes a comparison between the performances of the PMC with other previous designs. � 2017 Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM), Malaysia. Final 2023-05-29T06:39:54Z 2023-05-29T06:39:54Z 2017 Article 2-s2.0-85041024739 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041024739&partnerID=40&md5=94d48071370c18d1bb160f74b32dcdf5 https://irepository.uniten.edu.my/handle/123456789/23376 SI 2 2 215 230 UiTM Press Scopus
institution Universiti Tenaga Nasional
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content_provider Universiti Tenaga Nasional
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url_provider http://dspace.uniten.edu.my/
description This paper discusses the multisource input from the piezoelectric (PZT) generators to the power management circuit (PMC) of the energy harvesting system. It discusses the structure of the PMC starting from the AC-DC full bridge rectifier circuit and the structure of the storage circuit of the power management circuit itself. The AC-DC rectifier circuit was compared with separated AC-DC rectifier, series and parallel connection to choose the best performance output and structure. The storage circuit was also compared between traditional method and switch circuit. This paper also describes the designing circuit of the PMC from the software and fabricating it to PCB board circuit. The PMC was tested by connecting 4 input PZT generators which were harvested from the vibration and connected to the application electronic load circuit such as microcontroller and sensors to complete it as an energy harvesting vibration based system. The performance test was conducted by testing it in a laboratory and field test at one of the cooling fan power stations which provides continuous vibration from the motor. Two methods of testing were conducted to measure the performance of the PMC which were laboratory test and field test at the vibrating motor of cooling fan in power station. The 70% of the efficiency was recorded for both laboratory test and field test from the PMC. The output power of the PMC is 1.94mW and the input power is from the multisource input PZT. Author also makes a comparison between the performances of the PMC with other previous designs. � 2017 Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM), Malaysia.
author2 57189247722
author_facet 57189247722
Resali M.S.M.
Salleh H.
format Article
author Resali M.S.M.
Salleh H.
spellingShingle Resali M.S.M.
Salleh H.
Development of multiple-input power management circuit for piezoelectric harvester
author_sort Resali M.S.M.
title Development of multiple-input power management circuit for piezoelectric harvester
title_short Development of multiple-input power management circuit for piezoelectric harvester
title_full Development of multiple-input power management circuit for piezoelectric harvester
title_fullStr Development of multiple-input power management circuit for piezoelectric harvester
title_full_unstemmed Development of multiple-input power management circuit for piezoelectric harvester
title_sort development of multiple-input power management circuit for piezoelectric harvester
publisher UiTM Press
publishDate 2023
_version_ 1806428291029008384
score 13.214268