Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method

This study aims to analyze the effect of optimizing the position of solar panels on improving energy production efficiency in a 3 kW solar power plant (PLTS) system. The 3D PVsyst simulation method was used to model the system and predict performance before and after optimization. Simulation results...

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Main Authors: Teguh Mohammad Fiqri, Redi Ratiandi Yacoub, Rudi Kurnianto, Rusman Rusman, Hasan Hasan
Format: Article
Language:Indonesian
Published: Department of Electrical Engineering, Faculty of Engineering, Tanjungpura University 2025-04-01
Series:Elkha: Jurnal Teknik Elektro
Subjects:
Online Access:https://jurnal.untan.ac.id/index.php/Elkha/article/view/89864
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author Teguh Mohammad Fiqri
Redi Ratiandi Yacoub
Rudi Kurnianto
Rusman Rusman
Hasan Hasan
author_facet Teguh Mohammad Fiqri
Redi Ratiandi Yacoub
Rudi Kurnianto
Rusman Rusman
Hasan Hasan
author_sort Teguh Mohammad Fiqri
collection DOAJ
description This study aims to analyze the effect of optimizing the position of solar panels on improving energy production efficiency in a 3 kW solar power plant (PLTS) system. The 3D PVsyst simulation method was used to model the system and predict performance before and after optimization. Simulation results indicate that repositioning the solar panels can increase energy production by 2% (from 0.99 kWh to 1.01 kWh). A comparison between simulation results and actual data shows reasonably good agreement, although some differences require further investigation. Discrepancies between simulation and actual data may be attributed to several factors, such as weather conditions, component efficiency, and other environmental factors. This study concludes that optimizing the position of solar panels is an effective step to enhance the performance of PLTS systems. However, further research is needed to consider additional factors affecting system performance and to develop more accurate simulation models
format Article
id doaj-art-08220577d0d84ce797145b3a338a0c3e
institution OA Journals
issn 1858-1463
2580-6807
language Indonesian
publishDate 2025-04-01
publisher Department of Electrical Engineering, Faculty of Engineering, Tanjungpura University
record_format Article
series Elkha: Jurnal Teknik Elektro
spelling doaj-art-08220577d0d84ce797145b3a338a0c3e2025-08-20T02:18:39ZindDepartment of Electrical Engineering, Faculty of Engineering, Tanjungpura UniversityElkha: Jurnal Teknik Elektro1858-14632580-68072025-04-01171152310.26418/elkha.v17i1.8986446398Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation MethodTeguh Mohammad Fiqri0Redi Ratiandi Yacoub1Rudi Kurnianto2Rusman Rusman3Hasan Hasan4Politeknik Negeri PontianakDept. of Electrical Engineering, Tanjungpura University, IndonesiaDept. of Electrical Engineering, Tanjungpura University, IndonesiaDepartment of Electrical Engineering, Politeknik Negeri Pontianak, IndonesiaDepartment of Electrical Engineering, Politeknik Negeri Pontianak, IndonesiaThis study aims to analyze the effect of optimizing the position of solar panels on improving energy production efficiency in a 3 kW solar power plant (PLTS) system. The 3D PVsyst simulation method was used to model the system and predict performance before and after optimization. Simulation results indicate that repositioning the solar panels can increase energy production by 2% (from 0.99 kWh to 1.01 kWh). A comparison between simulation results and actual data shows reasonably good agreement, although some differences require further investigation. Discrepancies between simulation and actual data may be attributed to several factors, such as weather conditions, component efficiency, and other environmental factors. This study concludes that optimizing the position of solar panels is an effective step to enhance the performance of PLTS systems. However, further research is needed to consider additional factors affecting system performance and to develop more accurate simulation modelshttps://jurnal.untan.ac.id/index.php/Elkha/article/view/89864solar power plant (plts), optimization, pvsyst, simulation, energy efficiency
spellingShingle Teguh Mohammad Fiqri
Redi Ratiandi Yacoub
Rudi Kurnianto
Rusman Rusman
Hasan Hasan
Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
Elkha: Jurnal Teknik Elektro
solar power plant (plts), optimization, pvsyst, simulation, energy efficiency
title Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
title_full Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
title_fullStr Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
title_full_unstemmed Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
title_short Analysis of 3 kW Solar Power Plant Production Optimization by Improving Energy Production Efficiency Using 3d Pvsyst Simulation Method
title_sort analysis of 3 kw solar power plant production optimization by improving energy production efficiency using 3d pvsyst simulation method
topic solar power plant (plts), optimization, pvsyst, simulation, energy efficiency
url https://jurnal.untan.ac.id/index.php/Elkha/article/view/89864
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AT rediratiandiyacoub analysisof3kwsolarpowerplantproductionoptimizationbyimprovingenergyproductionefficiencyusing3dpvsystsimulationmethod
AT rudikurnianto analysisof3kwsolarpowerplantproductionoptimizationbyimprovingenergyproductionefficiencyusing3dpvsystsimulationmethod
AT rusmanrusman analysisof3kwsolarpowerplantproductionoptimizationbyimprovingenergyproductionefficiencyusing3dpvsystsimulationmethod
AT hasanhasan analysisof3kwsolarpowerplantproductionoptimizationbyimprovingenergyproductionefficiencyusing3dpvsystsimulationmethod