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Optimum Economic Dispatch of Interconnected Microgrid with Energy Storage System

机译:具有储能系统互联微电网的最佳经济调度

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Interconnected microgrid system enhance reliability and reduce spinning reserve due to higher redundancy. It is useful for areas where conventional power grid cannot be connected. This paper presents optimal economic dispatch strategy of distributed generation where two microgrids and a single energy storage system (ESS) are interconnected together. Genetic algorithm is used to minimize the operating cost of the proposed system and to find out the optimum value of the output power produced by distributed generator. The objective function comprises of fuel cost, operation and maintenance cost, as well as cost of emissions. One of the microgrids consists of diesel engine generator, microturbine generator, solar PV and another with fuel cell and wind turbine generator. The ESS is charged from the interconnected microgrids and can be used for load frequency regulation and spinning reserve of the system.
机译:相互连接的微电网系统提高可靠性,由于更高的冗余导致纺纱储备。它对于无法连接传统电网的区域是有用的。本文提出了分布式发电的最佳经济调度策略,其中两个微电网和单个能量存储系统(ESS)在一起相互连接。遗传算法用于最小化所提出的系统的运营成本,并找出分布式发电机产生的输出功率的最佳值。目标函数包括燃料成本,操作和维护成本以及排放的成本。其中一个微电普林由柴油发动机发电机,微电流发电机,太阳能光伏和另一个用燃料电池和风力涡轮发电机组成。 ESS从互连的微电网充电,可用于系统的负载频率调节和纺纱储备。

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