Payback calculation system of introduction network solar power plants in private households
The article describes the payback calculation system of introduction a network solar power plants in private households that are locating in Ukraine. The system takes into account such parameters as beam, ground-reflected and diffuse solar radiation with atmospheric attenuation, the angle and the or...
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V. N. Karazin Kharkiv National University
2019-09-01
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doaj-cbd79133e3464d308b69ccf855e508652020-11-25T03:47:14ZengV. N. Karazin Kharkiv National UniversityВісник Харківського національного університету імені В.Н. Каразіна. Серія: Математичне моделювання, інформаційні технології, автоматизовані системи управління2304-62012524-26012019-09-014210.26565/2304-6201-2019-42-03Payback calculation system of introduction network solar power plants in private householdsGaryachevskaya Irina V.Ivaniushchenko Viktoriia V .Protektor Denys O.The article describes the payback calculation system of introduction a network solar power plants in private households that are locating in Ukraine. The system takes into account such parameters as beam, ground-reflected and diffuse solar radiation with atmospheric attenuation, the angle and the orientation roof, the daily average temperature of photovoltaic cells and the temperature coefficient of solar panels, when calculating the generation of a network solar power plant. The flux of solar radiation that falls on the surface of the photovoltaic cells is determined of the Hay-Davis model. When calculating the payback solar power plant takes into account such parameters as annual electricity consumption, current electricity price, feed-in tariff and annual electricity price increase. The average market price of a network solar power plant is taken at the rate of 1 dollar per 1 watt of installed capacity. Based on these parameters, the system calculates a monthly, daily average and annual generation of a network solar power plant, calculates the relative cost of a network solar power plant, calculates of electricity costs forecast over twenty years and calculates a payback period of a network solar power plant. The monthly and daily average generation of a network solar power plant, electricity costs forecast over twenty years and payback period of a network solar power plant displayed in the system in the form of corresponding graphs and diagrams. In the case if investments necessary for the construction and commissioning of a network solar power plant don’t pay off within twenty years, the system will display this information in the corresponding field. |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Garyachevskaya Irina V. Ivaniushchenko Viktoriia V . Protektor Denys O. |
spellingShingle |
Garyachevskaya Irina V. Ivaniushchenko Viktoriia V . Protektor Denys O. Payback calculation system of introduction network solar power plants in private households Вісник Харківського національного університету імені В.Н. Каразіна. Серія: Математичне моделювання, інформаційні технології, автоматизовані системи управління |
author_facet |
Garyachevskaya Irina V. Ivaniushchenko Viktoriia V . Protektor Denys O. |
author_sort |
Garyachevskaya Irina V. |
title |
Payback calculation system of introduction network solar power plants in private households |
title_short |
Payback calculation system of introduction network solar power plants in private households |
title_full |
Payback calculation system of introduction network solar power plants in private households |
title_fullStr |
Payback calculation system of introduction network solar power plants in private households |
title_full_unstemmed |
Payback calculation system of introduction network solar power plants in private households |
title_sort |
payback calculation system of introduction network solar power plants in private households |
publisher |
V. N. Karazin Kharkiv National University |
series |
Вісник Харківського національного університету імені В.Н. Каразіна. Серія: Математичне моделювання, інформаційні технології, автоматизовані системи управління |
issn |
2304-6201 2524-2601 |
publishDate |
2019-09-01 |
description |
The article describes the payback calculation system of introduction a network solar power plants in private households that are locating in Ukraine. The system takes into account such parameters as beam, ground-reflected and diffuse solar radiation with atmospheric attenuation, the angle and the orientation roof, the daily average temperature of photovoltaic cells and the temperature coefficient of solar panels, when calculating the generation of a network solar power plant. The flux of solar radiation that falls on the surface of the photovoltaic cells is determined of the Hay-Davis model. When calculating the payback solar power plant takes into account such parameters as annual electricity consumption, current electricity price, feed-in tariff and annual electricity price increase. The average market price of a network solar power plant is taken at the rate of 1 dollar per 1 watt of installed capacity. Based on these parameters, the system calculates a monthly, daily average and annual generation of a network solar power plant, calculates the relative cost of a network solar power plant, calculates of electricity costs forecast over twenty years and calculates a payback period of a network solar power plant. The monthly and daily average generation of a network solar power plant, electricity costs forecast over twenty years and payback period of a network solar power plant displayed in the system in the form of corresponding graphs and diagrams. In the case if investments necessary for the construction and commissioning of a network solar power plant don’t pay off within twenty years, the system will display this information in the corresponding field. |
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