Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature

In this paper, a 5000 kW grid-connected photovoltaic system of Haft-Hoze Natural Park, 7 km southeast of Mashhad City, has been designed and simulated. This power plant is for two monofacial and bifacial systems in both fixed and tilted planes and trackers modes in PVSYST software. It is simulated a...

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Published in:2024 28th International Electrical Power Distribution Conference, EPDC 2024
Main Author: Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
Format: Conference paper
Language:English
Published: Institute of Electrical and Electronics Engineers Inc. 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85198225751&doi=10.1109%2fEPDC62178.2024.10571696&partnerID=40&md5=7da803c9011b00e2b499f68e01069583
id 2-s2.0-85198225751
spelling 2-s2.0-85198225751
Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
2024
2024 28th International Electrical Power Distribution Conference, EPDC 2024


10.1109/EPDC62178.2024.10571696
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85198225751&doi=10.1109%2fEPDC62178.2024.10571696&partnerID=40&md5=7da803c9011b00e2b499f68e01069583
In this paper, a 5000 kW grid-connected photovoltaic system of Haft-Hoze Natural Park, 7 km southeast of Mashhad City, has been designed and simulated. This power plant is for two monofacial and bifacial systems in both fixed and tilted planes and trackers modes in PVSYST software. It is simulated and designed and the simulation data is compared in both cases. In this paper, the effect of temperature on solar panel performance is investigated first. This work has been done in three stages. At first, by keeping the solar radiation constant, the effect of temperature on the output performance of the panel. In the next step, the P-V curves at different ambient temperatures and changes in solar radiation have been investigated. In the following, it shows the effect of PV panel temperature on PV panel output performance at different intensities of solar radiation. The simulation results of the 5000 kW solar power plant, in a fixed tilted plane for the monofacial system, energy injected into the grid and performance ratio are 8291 MWh and 0.850. The bifacial system, energy injected into the grid, and performance ratio are 8730 MWh and 0.896. In the Trackers mode, for the monofacial system, energy injected to the grid and performance ratio are 9558 MWh and 0.838. For the bifacial system, energy injected into the grid and performance ratio are 10025 MWh and 0.880. © 2024 IEEE.
Institute of Electrical and Electronics Engineers Inc.

English
Conference paper

author Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
spellingShingle Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
author_facet Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
author_sort Eidiani M.; Ghavami A.; Zeynal H.; Zakaria Z.
title Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
title_short Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
title_full Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
title_fullStr Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
title_full_unstemmed Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
title_sort Performance of Monofacial and Bifacial Solar System for 5MW grid-connected solar power plant with Fixed Tilt and Tracking: Design, Simulation and investigating the effect of temperature
publishDate 2024
container_title 2024 28th International Electrical Power Distribution Conference, EPDC 2024
container_volume
container_issue
doi_str_mv 10.1109/EPDC62178.2024.10571696
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85198225751&doi=10.1109%2fEPDC62178.2024.10571696&partnerID=40&md5=7da803c9011b00e2b499f68e01069583
description In this paper, a 5000 kW grid-connected photovoltaic system of Haft-Hoze Natural Park, 7 km southeast of Mashhad City, has been designed and simulated. This power plant is for two monofacial and bifacial systems in both fixed and tilted planes and trackers modes in PVSYST software. It is simulated and designed and the simulation data is compared in both cases. In this paper, the effect of temperature on solar panel performance is investigated first. This work has been done in three stages. At first, by keeping the solar radiation constant, the effect of temperature on the output performance of the panel. In the next step, the P-V curves at different ambient temperatures and changes in solar radiation have been investigated. In the following, it shows the effect of PV panel temperature on PV panel output performance at different intensities of solar radiation. The simulation results of the 5000 kW solar power plant, in a fixed tilted plane for the monofacial system, energy injected into the grid and performance ratio are 8291 MWh and 0.850. The bifacial system, energy injected into the grid, and performance ratio are 8730 MWh and 0.896. In the Trackers mode, for the monofacial system, energy injected to the grid and performance ratio are 9558 MWh and 0.838. For the bifacial system, energy injected into the grid and performance ratio are 10025 MWh and 0.880. © 2024 IEEE.
publisher Institute of Electrical and Electronics Engineers Inc.
issn
language English
format Conference paper
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