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Day-Ahead Optimal Scheduling for Grid-Connected Microgrid with Energy Storage Systems

机译:储能系统网格连接的微电网的前方最佳调度

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Nowadays, the operation of a microgrid (MG) with minimized operating cost and high employment of renewable energy sources, has become a head corner of the MG operation system. This paper proposes an optimized approach for energy scheduling of grid-connected MG that includes a battery energy storage system (BESS) and different distributed generators as micro-turbines, fuel cells, wind turbines, and photovoltaic units, where the optimal hourly generation scheduling is needed to get the minimum MG’s operating cost. The general algebraic modeling system (GAMS) is used in modelling of the studied system and solving the constrained optimization problem. The optimal hourly generation scheduling of the MG is investigated in three different scenarios. In the first scenario, no BESS is connected to the system, while in the second scenario, the BESS is connected to the system, and in the third scenario, the optimal generation scheduling of the MG is investigated with BESS considered while considering increased limits of the power imported from or exported to the main grid. The results obtained validate the effectiveness of the proposed algorithm compared to the results obtained by other algorithms presented in the literature.
机译:如今,具有最小化的经营成本和可再生能源的高效性的微电网(MG)的操作已成为MG操作系统的头角。本文提出了一种优化方法,用于电池连接的MG的能量调度,包括电池储能系统(BESS)和不同分布发电机作为微涡轮机,燃料电池,风力涡轮机和光伏单元,其中最佳每小时发电量程需要获得最低MG的运营成本。一般代数建模系统(GAMS)用于学习系统的建模和解决受约束优化问题。在三种不同的场景中研究了MG的最佳每小时发电调度。在第一场景中,在第二场景中没有连接到系统,而BESS连接到系统,并且在第三场景中,在考虑增加的限制的同时,使用BESS考虑的BESS考虑了MG的最佳产生调度。从导入或导出到主电网的电源。与文献中呈现的其他算法获得的结果相比,得到的结果验证了所提出的算法的有效性。

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