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      Using firefly algorithm to optimally size a hybrid renewable energy system constrained by battery degradation and considering uncertainties of power sources and loads

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          Abstract

          In this paper, the planning of a hybrid system of wind turbine units, photovoltaic panels, and battery storage is presented by taking into account the limitation of the storage degradation. The scheme minimizes the construction and maintenance cost of power sources and storage equipment. The constraints of the problem include the operating model of the mentioned elements, the limitation of the number of the mentioned elements, the limitation of the storage degradation, and the power balance in the hybrid system. This scheme is subject to uncertainties of the demand and output power generation of wind turbines and photovoltaics, which are modeled using a scenario-based stochastic optimization. The problem has a mixed-integer non-linear structure, and the paper adopts the firefly algorithm to solve the problem. The contributions of the paper include considering the degradation model of the battery, presenting a stochastic modelling for planning the islanded system, and taking into account the uncertainties of load and renewable power. Finally, based on the numerical results, a low planning cost is obtained for the hybrid system in the case of using renewable resources. Batteries are capable of providing flexibility for the hybrid system so that they can cover oscillations of renewable power with respect to the load. The firefly algorithm can find a reliable optimal solution. Stochastic modeling raises the planning cost of the islanded system in comparison to the deterministic model, but it yields a more reliable solution. The battery degradation model incurs no additional costs in system planning, although it offers a far more precise representation of the battery's behavior.

          Highlights

          • Planning of the hybrid PV/WT/batteries system based on stochastic optimization.

          • Considering the limitation of battery degradation on battery operation during consecutive charge/discharge operation.

          • Modeling the uncertainties of the demand and output power of PVs and WTs.

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          Optimal sizing and location based on economic parameters for an off-grid application of a hybrid system with photovoltaic, battery and diesel technology

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            Optimal economic study of hybrid PV-wind-fuel cell system integrated to unreliable electric utility using hybrid search optimization technique

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              An initialization-free distributed algorithm for dynamic economic dispatch problems in microgrid: Modeling, optimization and analysis

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                Author and article information

                Contributors
                Journal
                Heliyon
                Heliyon
                Heliyon
                Elsevier
                2405-8440
                28 February 2024
                15 April 2024
                28 February 2024
                : 10
                : 7
                : e26961
                Affiliations
                [a ]Tangshan Power Supply Company State Grid Jibei Electric Power Co.Ltd, Tangshan, 063000, Hebei, China
                [b ]Department of Engineering, Semirom Branch, Islamic Azad University, Semirom, Iran
                Author notes
                [* ]Corresponding author. a.pirouzi69@ 123456yahoo.com
                [** ]Corresponding author. tianmeng1230@ 123456outlook.com
                Article
                S2405-8440(24)02992-X e26961
                10.1016/j.heliyon.2024.e26961
                10999815
                38590876
                fa988916-2c7b-455f-8cca-dff2ff98d1a1
                © 2024 The Authors

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 15 August 2023
                : 3 February 2024
                : 22 February 2024
                Categories
                Research Article

                optimal sizing,renewable energy sources,uncertainty,battery degradation,firefly algorithm

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