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Proof-of-concept of a two-stage approach for selecting suitable slopes on a highway network for solar photovoltaic systems: A case study in South Korea

DOI:10.1016/j.renene.2019.11.021 期刊:Renewable Energy 出版年份:2019 更新时间:2025-09-12 10:27:22
摘要: The economics of photovoltaic systems are closely associated with the geographical locations of the sites. To identify appropriate land for photovoltaic systems, previous studies have mainly used geographic-information-system-based solar energy models capable of estimating spatial and temporal availability of solar energy. The models often require handling large and computationally challenging datasets to cover vast areas. In this study, we proposed and assessed the concept of a two-stage approach that sequentially searches and prioritizes suitable sites of photovoltaic panels using low- and high-resolution maps to reduce computational burdens and increase estimation accuracy. Resolutions at raster-cell sizes of 30 × 30 m and 5 × 5 m were selected to study the South Korean national highway network. Selected candidate sites in the 10th-percentile for low- and high-resolution cases produced 1,097 and 721 clusters with calculated solar energy potentials of 19,510,115 and 4,186,935 MWh, respectively. Approximately 90% of the edge-based distances between two adjacent potential sites for photovoltaic panels from the low- and high-resolution maps were found to be within 240 m. This result shows that although the low-resolution maps may not provide precise locations for prospective solar photovoltaic sites, they may help to identify potentially suitable areas for further investigation.
作者: Byungil Kim,SangUk Han,Jae Heo,Jaehoon Jung
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To introduce a two-stage approach that sequentially searches and prioritizes suitable sites of PV panels using low- and high-resolution maps to reduce computational burdens and increase estimation accuracy.

The two-stage approach using low- and high-resolution maps can efficiently identify suitable PV sites with reduced computational burdens. High-resolution maps provide more precise locations, while low-resolution maps can help identify potentially suitable areas for further investigation.

The study is limited to areas with similar terrains, mostly hilly or mountainous terrains with variable undulations. Differences in solar irradiation estimations can be less significant for flat or smooth regions. Only solar irradiation was used as a criterion, excluding other socio-economic factors.

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