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Sizing and Placement of Community Energy Storage Systems using Multi-Period Optimal Power Flow

机译:使用多周期最佳功率流量的社区能量存储系统的大小和放置

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In this paper, sizing and placement of a community storage at a district level using Multi-Period Power Flow is analyzed. A case study including high shares of photovoltaics in the low voltage CIGRÉ residential subnetwork is taken as reference. The optimum storage capacity allocation in a time-resolved manner taking into account photovoltaics sizing and power flow conditions is a central part of this work. In addition, conditions for self-sufficiency have been integrated into the model and different location for allocation of the storage device will be analyzed. Simulation results are investigated with three cost scenarios using synthetic loads and photovoltaic profiles. The results show that different places can be found for the community storage due to different degrees of self-sufficiency in the scenarios. When determining the perfect place for central stationary electrical storages, the central node with minimum total impedance represents a good option. Economic benefits of installing a community storage can be demonstrated for two scenarios, while power export dominates another one.
机译:在本文中,分析了使用多周期电流在地区级的社区存储的大小和放置。一种案例研究包括低压CIGRÉ住宅子网中的高光伏光伏的案例研究作为参考。考虑到光伏尺寸和功率流动条件的时间解决方式的最佳存储容量分配是这项工作的中心部分。此外,将对自给自足的条件集成到模型中,并分析了用于分配存储设备的不同位置。使用合成负载和光伏型材的三种成本场景研究了仿真结果。结果表明,由于场景中的自给自足程度不同,可以找到社区存储的不同地方。在确定中央固定电气存储的完美位置时,具有最小总阻抗的中央节点代表了一个好的选择。安装社区存储的经济效益可以展示两种情况,而电力出口占据了另一个方案。

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