Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review
Solar photovoltaic (PV) power generation has grown in popularity as a renewable energy source due to the numerous advantages it provides. These advantages include the ease with which it may be assigned, the absence of noise, the longer life, the absence of pollution, the shorter installation time, t...
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Format: | Article |
Language: | English |
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Institute of Advanced Engineering and Science
2022
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Online Access: | http://eprints.utm.my/100424/1/AwangJusoh2022_ModernisationofDCDCConverterTopologies.pdf |
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author | Sutikno, Tole Purnama, Hendril Satrian Aprilianto, Rizky Ajie Jusoh, Awang Widodo, Nuryono Satya Santosa, Budi |
author_facet | Sutikno, Tole Purnama, Hendril Satrian Aprilianto, Rizky Ajie Jusoh, Awang Widodo, Nuryono Satya Santosa, Budi |
author_sort | Sutikno, Tole |
collection | ePrints |
description | Solar photovoltaic (PV) power generation has grown in popularity as a renewable energy source due to the numerous advantages it provides. These advantages include the ease with which it may be assigned, the absence of noise, the longer life, the absence of pollution, the shorter installation time, the high mobility and portability of its parts, and the ability of its output power to satisfy peak load needs. DC-DC converters are commonly used in solar energy harvesting systems because they enable more efficient usage of solar cells. One of the challenges is selecting an appropriate converter, which has an impact on the operation of the PV system. The modernization of various distinct DC-DC converter topologies for solar energy harvesting systems is discussed in this article. Boost, buck-boost, single-ended primary-inductance converter (SEPIC), Cuk, Zeta, and Z-source are some of these topologies. The topologies have been compared in order to provide extensive information on the hardware complexity, implementation cost, efficiency of the energy transfer elements, tracking efficiency, and converter efficiency. This paper will be useful as a handy reference in choosing the best converter topology for solar energy harvesting applications. |
first_indexed | 2024-03-05T21:18:45Z |
format | Article |
id | utm.eprints-100424 |
institution | Universiti Teknologi Malaysia - ePrints |
language | English |
last_indexed | 2024-03-05T21:18:45Z |
publishDate | 2022 |
publisher | Institute of Advanced Engineering and Science |
record_format | dspace |
spelling | utm.eprints-1004242023-04-14T01:33:53Z http://eprints.utm.my/100424/ Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review Sutikno, Tole Purnama, Hendril Satrian Aprilianto, Rizky Ajie Jusoh, Awang Widodo, Nuryono Satya Santosa, Budi TK Electrical engineering. Electronics Nuclear engineering Solar photovoltaic (PV) power generation has grown in popularity as a renewable energy source due to the numerous advantages it provides. These advantages include the ease with which it may be assigned, the absence of noise, the longer life, the absence of pollution, the shorter installation time, the high mobility and portability of its parts, and the ability of its output power to satisfy peak load needs. DC-DC converters are commonly used in solar energy harvesting systems because they enable more efficient usage of solar cells. One of the challenges is selecting an appropriate converter, which has an impact on the operation of the PV system. The modernization of various distinct DC-DC converter topologies for solar energy harvesting systems is discussed in this article. Boost, buck-boost, single-ended primary-inductance converter (SEPIC), Cuk, Zeta, and Z-source are some of these topologies. The topologies have been compared in order to provide extensive information on the hardware complexity, implementation cost, efficiency of the energy transfer elements, tracking efficiency, and converter efficiency. This paper will be useful as a handy reference in choosing the best converter topology for solar energy harvesting applications. Institute of Advanced Engineering and Science 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/100424/1/AwangJusoh2022_ModernisationofDCDCConverterTopologies.pdf Sutikno, Tole and Purnama, Hendril Satrian and Aprilianto, Rizky Ajie and Jusoh, Awang and Widodo, Nuryono Satya and Santosa, Budi (2022) Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review. Indonesian Journal of Electrical Engineering and Computer Science, 28 (3). 1845 -1872. ISSN 2502-4752 http://dx.doi.org/10.11591/ijeecs.v28.i3.pp1845-1872 DOI: 10.11591/ijeecs.v28.i3.pp1845-1872 |
spellingShingle | TK Electrical engineering. Electronics Nuclear engineering Sutikno, Tole Purnama, Hendril Satrian Aprilianto, Rizky Ajie Jusoh, Awang Widodo, Nuryono Satya Santosa, Budi Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title | Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title_full | Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title_fullStr | Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title_full_unstemmed | Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title_short | Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review |
title_sort | modernisation of dc dc converter topologies for solar energy harvesting applications a review |
topic | TK Electrical engineering. Electronics Nuclear engineering |
url | http://eprints.utm.my/100424/1/AwangJusoh2022_ModernisationofDCDCConverterTopologies.pdf |
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