Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University

University campuses accommodate large numbers of people and are suitable places to organize a microgrid. The solar potential in the university area is estimated and the optimal orientation of solar panels is presented in this study. The optimal orientation is analyzed considering temporal volatility...

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Main Authors: Myeongchan Oh, Hyeong-Dong Park
Format: Article
Language:English
Published: MDPI AG 2019-08-01
Series:Energies
Subjects:
GIS
Online Access:https://www.mdpi.com/1996-1073/12/17/3262
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spelling doaj-b6c21b6dc2514a7a9aefd1ad6eb3f7dc2020-11-25T02:29:25ZengMDPI AGEnergies1996-10732019-08-011217326210.3390/en12173262en12173262Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National UniversityMyeongchan Oh0Hyeong-Dong Park1Department of Energy Systems Engineering, Seoul National University, Seoul 08826, KoreaDepartment of Energy Systems Engineering, Seoul National University, Seoul 08826, KoreaUniversity campuses accommodate large numbers of people and are suitable places to organize a microgrid. The solar potential in the university area is estimated and the optimal orientation of solar panels is presented in this study. The optimal orientation is analyzed considering temporal volatility to increase the stability of the grid. Several variables are selected and scenarios are designed to consider various investments and technologies. Scenario-specific photovoltaic potentials were estimated using Geographic Information Systems analysis technology. Analysis of temporal volatility was conducted based on the difference between demand and supply of electricity. Optimal panel orientations were presented according to project objectives, such as highest efficiency or low volatility. As a result, the total potential of the study area was tens to hundreds of GWh/year depending on the scenario. The university has an advantage in hourly volatility, but has some problems in monthly volatility. The optimal orientation varies according to objectives and solar power supply ratio. The results of this study are expected to help researchers and technicians in the solar energy industry and assist in urban planning.https://www.mdpi.com/1996-1073/12/17/3262solar potentialtemporal volatilityoptimal panel orientationuniversityGISscenario
collection DOAJ
language English
format Article
sources DOAJ
author Myeongchan Oh
Hyeong-Dong Park
spellingShingle Myeongchan Oh
Hyeong-Dong Park
Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
Energies
solar potential
temporal volatility
optimal panel orientation
university
GIS
scenario
author_facet Myeongchan Oh
Hyeong-Dong Park
author_sort Myeongchan Oh
title Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
title_short Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
title_full Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
title_fullStr Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
title_full_unstemmed Optimization of Solar Panel Orientation Considering Temporal Volatility and Scenario-Based Photovoltaic Potential: A Case Study in Seoul National University
title_sort optimization of solar panel orientation considering temporal volatility and scenario-based photovoltaic potential: a case study in seoul national university
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-08-01
description University campuses accommodate large numbers of people and are suitable places to organize a microgrid. The solar potential in the university area is estimated and the optimal orientation of solar panels is presented in this study. The optimal orientation is analyzed considering temporal volatility to increase the stability of the grid. Several variables are selected and scenarios are designed to consider various investments and technologies. Scenario-specific photovoltaic potentials were estimated using Geographic Information Systems analysis technology. Analysis of temporal volatility was conducted based on the difference between demand and supply of electricity. Optimal panel orientations were presented according to project objectives, such as highest efficiency or low volatility. As a result, the total potential of the study area was tens to hundreds of GWh/year depending on the scenario. The university has an advantage in hourly volatility, but has some problems in monthly volatility. The optimal orientation varies according to objectives and solar power supply ratio. The results of this study are expected to help researchers and technicians in the solar energy industry and assist in urban planning.
topic solar potential
temporal volatility
optimal panel orientation
university
GIS
scenario
url https://www.mdpi.com/1996-1073/12/17/3262
work_keys_str_mv AT myeongchanoh optimizationofsolarpanelorientationconsideringtemporalvolatilityandscenariobasedphotovoltaicpotentialacasestudyinseoulnationaluniversity
AT hyeongdongpark optimizationofsolarpanelorientationconsideringtemporalvolatilityandscenariobasedphotovoltaicpotentialacasestudyinseoulnationaluniversity
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