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Impact of electrical storage and grid upgrade on the optimal design and operation of a microgrid

机译:电气存储和电网升级对微电网的最优设计和操作的影响

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The aim of this paper is to analyse how electrical storage and grid upgrades influence the optimal design and operation of a microgrid. A multi-objective (cost versus carbon emissions) mixed integer linear programming model is developed and applied to a microgrid case study. The optimisation model is based on the coupling of an energy hub modelling approach for system design and operation, and a linearized electrical grid model for steady-state power flow calculation in order to optimize the overall design and operation of a microgrid. The trade-off between electrical storage (ES) and grid upgrade options is examined and performance is compared to a reference case. Additionally, the optimal locations, capacities and charging power of an electrical storage are determined. The results showed that the grid upgrade is only viable in the lowest carbon emissions after the installation of the electrical storage.
机译:本文的目的是分析蓄电和电网升级如何影响微电网的最佳设计和操作。多目标(成本与碳排放)混合整数线性规划模型进行了开发并应用于微电网案例研究。优化模型基于系统设计和操作的能量集线器建模方法的耦合,以及用于稳态功率流量计算的线性化电网模型,以优化微电网的整体设计和操作。检查电气存储和电网升级选项之间的权衡,并将性能与参考情况进行比较。另外,确定电存储的最佳位置,容量和充电功率。结果表明,电网升级仅在安装蓄电池后的最低碳排放中的可行性。

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