Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency

Indonesia has the potential for large solar power plants. It has relatively constant solar radiation because it is close to the equator. Besides, solar energy includes renewable energy that is more environmentally friendly and easier to apply in office areas, especially Wonogiri. However, it turns...

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Main Authors: Etika Nur’Aini, Rachmawan Budiarto, Bakti Setiawan, Alfian Ma'arif
Format: Article
Language:Indonesian
Published: Department of Electrical Engineering, Faculty of Engineering, Tanjungpura University 2021-04-01
Series:Elkha: Jurnal Teknik Elektro
Subjects:
Online Access:https://jurnal.untan.ac.id/index.php/Elkha/article/view/46011
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author Etika Nur’Aini
Rachmawan Budiarto
Bakti Setiawan
Alfian Ma'arif
author_facet Etika Nur’Aini
Rachmawan Budiarto
Bakti Setiawan
Alfian Ma'arif
author_sort Etika Nur’Aini
collection DOAJ
description Indonesia has the potential for large solar power plants. It has relatively constant solar radiation because it is close to the equator. Besides, solar energy includes renewable energy that is more environmentally friendly and easier to apply in office areas, especially Wonogiri. However, it turns out that the solar power plant projects that have been built are not yet fully functional, and some have even failed. A lack of responsibility and maintenance causes this carried out after the project is complete. For this reason, it is necessary to estimate the reliability of these components and determine the maintenance schedule before the project is carried out. So that later they have a picture and be better prepared when this project is already underway. The fault tree method's failure factors are expected to create a picture to maintain reliability and determine the prioritized components for maintainability. For the results obtained to be more appropriate, apart from seeing the quantitative analysis output, the fault tree also needs to be adjusted to the component manual or datasheet to determine the replacement of spare parts and their maintenance. So that the resulting schedule for maintenance and replacement of spare parts. Thus, the solar power plant project that has been built will be more reliable and can be appropriately utilized.
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spelling doaj.art-ee4c092fc0ce4396abf39d516776d09d2022-12-21T22:12:22ZindDepartment of Electrical Engineering, Faculty of Engineering, Tanjungpura UniversityElkha: Jurnal Teknik Elektro1858-14632580-68072021-04-01131778310.26418/elkha.v13i1.4601132151Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri RegencyEtika Nur’Aini0Rachmawan Budiarto1Bakti Setiawan2Alfian Ma'arif3Universitas Gadjah MadaUniversitas Gadjah MadaUniversitas Gadjah MadaUniversitas Ahmad DahlanIndonesia has the potential for large solar power plants. It has relatively constant solar radiation because it is close to the equator. Besides, solar energy includes renewable energy that is more environmentally friendly and easier to apply in office areas, especially Wonogiri. However, it turns out that the solar power plant projects that have been built are not yet fully functional, and some have even failed. A lack of responsibility and maintenance causes this carried out after the project is complete. For this reason, it is necessary to estimate the reliability of these components and determine the maintenance schedule before the project is carried out. So that later they have a picture and be better prepared when this project is already underway. The fault tree method's failure factors are expected to create a picture to maintain reliability and determine the prioritized components for maintainability. For the results obtained to be more appropriate, apart from seeing the quantitative analysis output, the fault tree also needs to be adjusted to the component manual or datasheet to determine the replacement of spare parts and their maintenance. So that the resulting schedule for maintenance and replacement of spare parts. Thus, the solar power plant project that has been built will be more reliable and can be appropriately utilized.https://jurnal.untan.ac.id/index.php/Elkha/article/view/46011solar power plantrenewable energyfault treereliabilitymaintainability
spellingShingle Etika Nur’Aini
Rachmawan Budiarto
Bakti Setiawan
Alfian Ma'arif
Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
Elkha: Jurnal Teknik Elektro
solar power plant
renewable energy
fault tree
reliability
maintainability
title Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
title_full Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
title_fullStr Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
title_full_unstemmed Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
title_short Reliability Analysis and Maintainability for the Design of Grid and Hybrid Solar Power Plant Systems in Wonogiri Regency
title_sort reliability analysis and maintainability for the design of grid and hybrid solar power plant systems in wonogiri regency
topic solar power plant
renewable energy
fault tree
reliability
maintainability
url https://jurnal.untan.ac.id/index.php/Elkha/article/view/46011
work_keys_str_mv AT etikanuraini reliabilityanalysisandmaintainabilityforthedesignofgridandhybridsolarpowerplantsystemsinwonogiriregency
AT rachmawanbudiarto reliabilityanalysisandmaintainabilityforthedesignofgridandhybridsolarpowerplantsystemsinwonogiriregency
AT baktisetiawan reliabilityanalysisandmaintainabilityforthedesignofgridandhybridsolarpowerplantsystemsinwonogiriregency
AT alfianmaarif reliabilityanalysisandmaintainabilityforthedesignofgridandhybridsolarpowerplantsystemsinwonogiriregency