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Day-ahead operation planning for microgrids embedding Battery Energy Storage Systems. A case study on the PrInCE Lab microgrid

机译:用于嵌入电池储能系统的微电网的前一天的操作规划。实验室微电网的案例研究

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This paper deals with the day-ahead operation planning strategy aimed at optimally dispatch a microgrid embedding a Battery Energy Storage System (BESS). The proposed Economic Dispatch method has been solved by implementing the classical conditions of Karush-Kuhn-Tucker. Particular attention has been paid on the role of the BESS by adopting a general cost function aimed at minimizing its power converter losses while maximizing its life duration. Moreover, in order to always preserve the availability of the BESS during the daily cycle, an integral constraint has been adopted for the State-Of-Charge (SOC). The derived algorithm has been tested on the PrInCE experimental microgrid located at the Polytechnic University of Bari.
机译:本文涉及旨在最佳地调度嵌入电池储能系统(BESS)的微电网的日期运营规划战略。通过实施Karush-Kuhn-Tucker的经典条件来解决拟议的经济派遣方法。通过采用一般成本函数,通过采用旨在最大限度地减少其电力转换器损耗,同时最大限度地提高其寿命持续时间。此外,为了始终在日常周期期间保持寿命的可用性,已经采用了对充电状态(SOC)的积分约束。衍生的算法已经在位于尔尼·巴里理工学院的实验微电网上进行了测试。

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