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Optimal Energy Storage Capacity and Power Transfer Limit Planning for Grid-connected Microgrid

机译:网格连接的微电网的最佳储能容量和功率传输限制规划

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Energy Storage System (ESS) in microgrid is receiving more and more attention in recent years because of the great benefits it brings from both security and economy perspectives. Optimal energy storage capacity (ESC) planning is one of the most important requirements of microgrid management. On the other hand, the planning problem of the interval limiting the transfer power between microgrid and the main grid, which is called power transfer limit (PTL), is another significant issue. ESC and PTL are coupled with each other, and jointly determine the optimal operation cost of the microgrid. High investment costs of ESC and capacity costs of PTL necessitate accurate modeling and optimal planning in order to minimize the total cost. In this paper, a bi-level planning method is proposed for optimal ESC and PTL in a grid-connected microgrid with uncertain load demand and photovoltaic (PV) power. The optimal operation cost considering all-scenario- feasibility and nonanticipativity is calculated at the lower level with the trial planning decisions while the planning decisions are updated at the upper level. The proposed method is performed on a real system and the results show the effectiveness.
机译:MicroGrid中的能量存储系统(ESS)近年来越来越多地关注,因为它从安全性和经济角度带来的巨大效益。最佳储能容量(ESC)规划是微电网管理最重要的要求之一。另一方面,限制了微电网和主电网之间传输功率的间隔的规划问题,称为功率传输限制(PTL)是另一个重要问题。 ESC和PTL彼此耦合,并联合确定微电网的最佳运行成本。 ESC的高投资成本和PTL的能力成本需要准确的建模和最佳规划,以最大限度地减少总成本。在本文中,提出了一种具有不确定负载需求和光伏(PV)功率的网格连接的微电网中最佳ESC和PTL的Bi级规划方法。考虑所有情景可行性和非植物的最佳运营成本在较低级别计算了试验规划决策,而规划决策在上层更新。所提出的方法是对真实系统进行的,结果表明了效果。

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