ON THE POSSIBILITY OF CREATING EFFICIENT SOLAR POWER PLANTS ON THE TERRITORY OF IN-DUSTRIAL ENTERPRISES

The aim of the study is to develop a methodology and algorithm for determining the set of all possible variants for the placement of selected types of solar panels on the territory of industrial enterprises. The choice of locations for solar panels on the territory of industrial enterprises is compl...

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Збережено в:
Бібліографічні деталі
Дата:2024
Автори: Kachan, Yu., Shram , O.
Формат: Стаття
Мова:Ukrainian
Опубліковано: Institute of Renewable Energy National Academy of Sciences of Ukraine 2024
Теми:
Онлайн доступ:https://ve.org.ua/index.php/journal/article/view/438
Теги: Додати тег
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Назва журналу:Vidnovluvana energetika

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Vidnovluvana energetika
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Резюме:The aim of the study is to develop a methodology and algorithm for determining the set of all possible variants for the placement of selected types of solar panels on the territory of industrial enterprises. The choice of locations for solar panels on the territory of industrial enterprises is complicated by the shape of the roofs of buildings with steep slopes and the significant impact of the shading effect on power generation, etc. The criteria for the optimal location of solar panels in the case under consideration may also vary. These are the maximum electricity generation of a solar power plant, the minimum fluctuations in its power during the day, the cost of generated electricity, etc. To solve such an optimization problem, it is proposed to first determine the set of all acceptable variants of the location of the selected types of solar panels at the allocated locations. Such a set can be represented as a branched graph, each branch of which is one of the possible options for the location of the panels. For this purpose, it is suggested to use an algorithm based on a recursive function, which is best suited for working with such structures. The article describes an example of the proposed algorithm for a variant with a specific number of available sites and types of solar panels used. As a result of the proposed algorithm, a matrix of sets of panel types and their locations is formed. The proposed methodology and algorithm for determining the array of all possible combinations of solar panel locations can significantly simplify the process of implementing a solar power plant at an industrial enterprise and significantly increase its efficiency. Bible 7, fig. 4, tab. 2.