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Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system

Globally, the demand for energy from renewable sources is growing due to the increasing electricity consumption and the pollution of fossil fuels. The government has framed various policies to facilitate green energy generation, encouraging renewable energy source usage through PV installations in m...

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Autores principales: A, Lavanya, J, Divya Navamani, A, Geetha, Ganesh, Viswanathan, Sathik, M. Jagabar, K, Vijayakumar, D, Ravichandran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285255/
https://www.ncbi.nlm.nih.gov/pubmed/37360095
http://dx.doi.org/10.1016/j.heliyon.2023.e17274
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author A, Lavanya
J, Divya Navamani
A, Geetha
Ganesh, Viswanathan
Sathik, M. Jagabar
K, Vijayakumar
D, Ravichandran
author_facet A, Lavanya
J, Divya Navamani
A, Geetha
Ganesh, Viswanathan
Sathik, M. Jagabar
K, Vijayakumar
D, Ravichandran
author_sort A, Lavanya
collection PubMed
description Globally, the demand for energy from renewable sources is growing due to the increasing electricity consumption and the pollution of fossil fuels. The government has framed various policies to facilitate green energy generation, encouraging renewable energy source usage through PV installations in multiple sectors, including educational institutions. The primary objective of this paper is to propose a methodological approach for analysing the performance of the installed PV system on the rooftop of a university building in Tamil Nadu, India. The site selected is favourable for electricity generation from PV systems with an average global solar radiation of 5.82 kWh/m(2)day. Solar energy changes periodically with annual and daily variations and is not steady due to seasonal changes. The step-by-step performance assessment and the annual performance of the 100-kW solar PV system, which was instituted in 2019, with the forecasted parameters, are presented in this paper. Therefore, the assessment analysis is carried out in four phases: feasibility assessment, Energy yield assessment, Life cycle assessment, and Power quality assessment. To improve the solar PV output and efficiency, considering the solar irradiation, temperature, wind velocity, etc., PV yield is measured to evaluate the PV system's energy metrics. This paper also considers the carbon credits earned, solar power generated in the location, and the payback period. The power quality assessment is carried out in this paper to test the PV plant's compliance with effective grid integration.
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spelling pubmed-102852552023-06-23 Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system A, Lavanya J, Divya Navamani A, Geetha Ganesh, Viswanathan Sathik, M. Jagabar K, Vijayakumar D, Ravichandran Heliyon Research Article Globally, the demand for energy from renewable sources is growing due to the increasing electricity consumption and the pollution of fossil fuels. The government has framed various policies to facilitate green energy generation, encouraging renewable energy source usage through PV installations in multiple sectors, including educational institutions. The primary objective of this paper is to propose a methodological approach for analysing the performance of the installed PV system on the rooftop of a university building in Tamil Nadu, India. The site selected is favourable for electricity generation from PV systems with an average global solar radiation of 5.82 kWh/m(2)day. Solar energy changes periodically with annual and daily variations and is not steady due to seasonal changes. The step-by-step performance assessment and the annual performance of the 100-kW solar PV system, which was instituted in 2019, with the forecasted parameters, are presented in this paper. Therefore, the assessment analysis is carried out in four phases: feasibility assessment, Energy yield assessment, Life cycle assessment, and Power quality assessment. To improve the solar PV output and efficiency, considering the solar irradiation, temperature, wind velocity, etc., PV yield is measured to evaluate the PV system's energy metrics. This paper also considers the carbon credits earned, solar power generated in the location, and the payback period. The power quality assessment is carried out in this paper to test the PV plant's compliance with effective grid integration. Elsevier 2023-06-14 /pmc/articles/PMC10285255/ /pubmed/37360095 http://dx.doi.org/10.1016/j.heliyon.2023.e17274 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
A, Lavanya
J, Divya Navamani
A, Geetha
Ganesh, Viswanathan
Sathik, M. Jagabar
K, Vijayakumar
D, Ravichandran
Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title_full Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title_fullStr Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title_full_unstemmed Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title_short Smart energy monitoring and power quality performance based evaluation of 100-kW grid tied PV system
title_sort smart energy monitoring and power quality performance based evaluation of 100-kw grid tied pv system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285255/
https://www.ncbi.nlm.nih.gov/pubmed/37360095
http://dx.doi.org/10.1016/j.heliyon.2023.e17274
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