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Performance Analysis of a Stand-Alone PV/WT/Biomass/Bat System in Alrashda Village in Egypt

dc.contributor.authorEl-Sattar, Hoda Abd
dc.contributor.authorKamel, Salah
dc.contributor.authorSultan, Hamdy
dc.contributor.authorTostado-Véliz, Marcos
dc.contributor.authorElTamaly, Ali M.
dc.contributor.authorJurado-Melguizo, Francisco
dc.date.accessioned2024-06-25T10:55:11Z
dc.date.available2024-06-25T10:55:11Z
dc.date.issued2021-10
dc.description.abstractThis paper presents an analysis and optimization of an isolated hybrid renewable power system to operate in the Alrashda village in the Dakhla Oasis, which is situated in the New Valley Governorate in Egypt. The proposed hybrid system is designed to integrate a biomass system with a photovoltaic (PV), wind turbine (WT) and battery storage system (Bat). Four different cases are proposed and compared for analyzing and optimizing. The first case is a configuration of PV and WT with a biomass system and battery bank. The second case is the integration of PV with a biomass system and battery bank. The third case is WT integrated with biomass and a battery bank, and the fourth case is a conventional PV, WT, and battery bank as the main storage unit. The optimization is designed to reduce component oversizing and ensure the dependable control of power supplies with the objective function of reducing the levelized cost of energy and loss of power supply probability. Four optimization algorithms, namely Heap-based optimizer (HBO), Franklin’s and Coulomb’s algorithm (CFA), the Sooty Tern Optimization Algorithm (STOA), and Grey Wolf Optimizer (GWO) are utilized and compared with each other to ensure that all load demand is met at the lowest energy cost (COE) for the proposed hybrid system. The obtained results revealed that the HBO has achieved the best optimal solution for the suggested hybrid system for case one and two, with the minimum COE 0.121171 and 0.1311804 $/kWh, respectively, and with net present cost (NPC) of $3,559,143 and $3,853,160, respectively. Conversely, STOA has achieved the best optimal solution for case three and four, with a COE of 0.105673 and 0.332497 $/kWh, and an NPC of $3,103,938 and $9,766,441, respectively.es_ES
dc.identifier.citationEl-Sattar, H.A.; Kamel, S.; Sultan, H.; Tostado-Véliz, M.; Eltamaly, A.M.; Jurado, F. Performance Analysis of a Stand-Alone PV/WT/Biomass/Bat System in Alrashda Village in Egypt. Appl. Sci. 2021, 11, 10191. https://doi.org/10.3390/app112110191es_ES
dc.identifier.issn2076-3417es_ES
dc.identifier.other10.3390/app112110191es_ES
dc.identifier.urihttps://www.mdpi.com/2076-3417/11/21/10191es_ES
dc.identifier.urihttps://hdl.handle.net/10953/2929
dc.language.isoenges_ES
dc.publisherMDPIes_ES
dc.relation.ispartofApplied Sciences [2021]; [11]: [10191]es_ES
dc.rightsAtribución-NoComercial-SinDerivadas 3.0 España*
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses_ES
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/*
dc.subjectPVes_ES
dc.subjectWind turbinees_ES
dc.subjectBiomass systemes_ES
dc.subjectHeap-based optimizeres_ES
dc.subjectFranklin's and Coulomb's algorithmes_ES
dc.subjectSooty tern optimizationes_ES
dc.subjectEnergy costes_ES
dc.titlePerformance Analysis of a Stand-Alone PV/WT/Biomass/Bat System in Alrashda Village in Egyptes_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.type.versioninfo:eu-repo/semantics/acceptedVersiones_ES

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