Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources

A significant component of society’s sustainable development is producing energy from renewable sources. Various energy sources, including solar, biomass, biogas, and wind, must be utilised to their full potential to fulfil current demands. In most nations like Nigeria, there are a lot of rural area...

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Main Authors: Okokpujie Imhade P., Sinebe Jude E., Ughapu Emmanuel I., Ogbodo Nathaniel I.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01209.pdf
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author Okokpujie Imhade P.
Sinebe Jude E.
Ughapu Emmanuel I.
Ogbodo Nathaniel I.
author_facet Okokpujie Imhade P.
Sinebe Jude E.
Ughapu Emmanuel I.
Ogbodo Nathaniel I.
author_sort Okokpujie Imhade P.
collection DOAJ
description A significant component of society’s sustainable development is producing energy from renewable sources. Various energy sources, including solar, biomass, biogas, and wind, must be utilised to their full potential to fulfil current demands. In most nations like Nigeria, there are a lot of rural areas that suffer from energy supply. This has brought up many studies on how optimisation techniques can help manage the sustainability of the supply of this generated energy to such areas. Therefore, this review paper focuses on the performance analysis of several studies on the impact of mathematical modelling and various optimisation techniques on power generation systems via renewable sources. The study review papers from a quality outlet such as Elsevier, Springer, and other quality journals indexed in Scopus databases. On biomass production, wind energy production system, steam and solar energy. The finding from the study showed that the application of real-life engineering optimisation tools and models developed significantly improved the power generation process globally. Therefore, in the study’s conclusion, the authors provided sustainable recommendations on how to apply these models to improve the sustainable power generation process.
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spelling doaj.art-31b6cd668a4d4a81b349f6bf4f36a4a42023-10-17T08:47:20ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014300120910.1051/e3sconf/202343001209e3sconf_icmpc2023_01209Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable SourcesOkokpujie Imhade P.0Sinebe Jude E.1Ughapu Emmanuel I.2Ogbodo Nathaniel I.3Department of Mechanical and Mechatronics Engineering, Afe Babalola UniversityDepartment of Mechanical Engineering, Delta State UniversityDepartment of Mechanical and Mechatronics Engineering, Afe Babalola UniversityDepartment of Agricultural Science Afe Babalola UniversityA significant component of society’s sustainable development is producing energy from renewable sources. Various energy sources, including solar, biomass, biogas, and wind, must be utilised to their full potential to fulfil current demands. In most nations like Nigeria, there are a lot of rural areas that suffer from energy supply. This has brought up many studies on how optimisation techniques can help manage the sustainability of the supply of this generated energy to such areas. Therefore, this review paper focuses on the performance analysis of several studies on the impact of mathematical modelling and various optimisation techniques on power generation systems via renewable sources. The study review papers from a quality outlet such as Elsevier, Springer, and other quality journals indexed in Scopus databases. On biomass production, wind energy production system, steam and solar energy. The finding from the study showed that the application of real-life engineering optimisation tools and models developed significantly improved the power generation process globally. Therefore, in the study’s conclusion, the authors provided sustainable recommendations on how to apply these models to improve the sustainable power generation process.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01209.pdfmathematical modellingoptimisation techniquespower generation systemsrenewable sources
spellingShingle Okokpujie Imhade P.
Sinebe Jude E.
Ughapu Emmanuel I.
Ogbodo Nathaniel I.
Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
E3S Web of Conferences
mathematical modelling
optimisation techniques
power generation systems
renewable sources
title Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
title_full Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
title_fullStr Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
title_full_unstemmed Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
title_short Performance Analysis of the Impact of Mathematical Modelling and Optimisation on Power Generation Systems Via Renewable Sources
title_sort performance analysis of the impact of mathematical modelling and optimisation on power generation systems via renewable sources
topic mathematical modelling
optimisation techniques
power generation systems
renewable sources
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01209.pdf
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AT ughapuemmanueli performanceanalysisoftheimpactofmathematicalmodellingandoptimisationonpowergenerationsystemsviarenewablesources
AT ogbodonathanieli performanceanalysisoftheimpactofmathematicalmodellingandoptimisationonpowergenerationsystemsviarenewablesources