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A Dynamic Robust Restoration Framework for Unbalanced Power Distribution Networks

机译:用于不平衡配电网的动态鲁棒恢复框架

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The increasing penetration of photovoltaic (PV) generators has led to a reduction in the effectiveness of existing strategies for restoring the power distribution network. This article proposes a dynamic robust restoration (DRR) framework for the recovery of outage power considering uncertain PV outputs and demands. This framework is presented in two subsequent steps. In the first step, optimal decisions regarding the network configurations are generated. The second step then computes the modified dynamic Distfiow equations and constraints under consideration of the worst operating conditions over the associated uncertainty sets with the aim of maximizing the recovery of outage power. The DRR model is formulated as a bilevel mixed-integer linear programming problem. A decomposition algorithm in a master-sub structure is used to solve the resulting system. The results of case studies show that the proposed DRR model yields obvious advantages over the existing deterministic dynamic restoration model in terms of robustness against system uncertainties.
机译:光伏(PV)发电机的普及普及导致了恢复配电网络的现有策略的有效性降低。本文提出了一种充满活力的恢复(DRR)框架,用于考虑不确定的PV输出和需求的中断功率。此框架以两个后续步骤呈现。在第一步中,生成关于网络配置的最佳决策。然后,第二步计算经过相关的不确定性集上的最差操作条件的修改动态的DISTFIOW方程和约束,其目的是最大化中断功率的恢复。 DRR模型被制定为彼得混合整数线性编程问题。主子结构中的分解算法用于解决生成的系统。案例研究结果表明,在对系统不确定性的鲁棒性方面,所提出的DRR模型对现有的确定性动态恢复模型产生了明显的优势。

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