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Resilience-Oriented Optimal Operation Strategy of Active Distribution Network

机译:面向弹性的主动配电网最优运营策略

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The ability to withstand extreme disasters has a profound impact on the distribution network operation. This paper proposes a novel optimal operation strategy for an active distribution network to enhance system resilience.. The objectives in the proposed optimal strategy include, the resilience, operation cost, and its pollutant emissions. According to the existence of uncontrollable distributed energy resources in the active distribution network, the problem which takes the uncertainty most into account, is this multi-objective optimization problem. Thus, it can be treated as a min-max dual robust optimization problem. Benders decomposition is employed to decouple the problem, then non-dominated sorting genetic algorithm II is applied to search the multi-objective optimal solution which has an extremely low CPU time. The modified standard IEEE 34-node system, with different distributed energy resources types, is employed, as a studied case, to demonstrate the effectiveness of the proposed optimal operation strategy. The simulation results illustrate that, compared to other economic-oriented robust optimal operation models, the proposed strategy can enhance system resilience without a significant increase in the operation cost and pollutant emissions.
机译:承受极端灾难的能力对配电网络的运行产生了深远的影响。本文为主动配电网提出了一种新的最优运行策略,以提高系统的弹性。该最优策略的目标包括:弹性,运营成本及其污染物排放。根据主动配电网中不可控制的分布式能源资源的存在,最需要考虑不确定性的问题就是该多目标优化问题。因此,可以将其视为最小-最大双重鲁棒优化问题。利用Benders分解对问题进行解耦,然后应用非支配排序遗传算法II来搜索CPU时间极短的多目标最优解。作为研究案例,采用了具有不同分布式能源类型的改进标准IEEE 34节点系统,以证明所提出的最佳运行策略的有效性。仿真结果表明,与其他以经济为导向的鲁棒最优运行模型相比,所提出的策略可以在不显着增加运行成本和污染物排放的情况下提高系统的弹性。

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