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Optimal Planning of Storage in Power Systems Integrated With Wind Power Generation

机译:结合风力发电的电力系统存储优化规划

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This paper proposes an approach for determining the optimal location and size of an energy storage system (ESS) in a power system network integrated with uncertain wind power generation. The uncertainty of wind power output is represented by a scenario tree model, so that the nonanticipative behavior of operating decisions under system uncertainties can be properly addressed. The proposed formulation is too huge to be solved directly, so a Benders decomposition algorithm is applied to reduce the computational burden. Case studies are conducted to illustrate the influence of ESS on power system operation. It is shown that increasing the capital investment on ESS can reduce the daily operating cost of the power system. A capital/operating cost frontier is presented in this paper to demonstrate the tradeoff between ESS capital investment and daily operating cost, and to show how ESS planning decisions are affected by the budget for investment.
机译:本文提出了一种方法,用于确定集成了不确定风力发电的电力系统网络中能量存储系统(ESS)的最佳位置和大小。风电输出的不确定性由情景树模型表示,因此可以适当地解决系统不确定性下运行决策的非预期行为。所提出的公式太大而无法直接求解,因此应用Benders分解算法来减轻计算负担。进行案例研究以说明ESS对电力系统运行的影响。结果表明,增加对ESS的资本投入可以降低电力系统的日常运行成本。本文提出了一项资本/运营成本前沿,以证明ESS资本投资与每日运营成本之间的平衡,并展示ESS规划决策如何受到投资预算的影响。

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