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Network-Cognizant Time-Coupled Aggregate Flexibility of Distribution Systems Under Uncertainties

机译:网络认识到在不确定因素下分配系统的时间耦合集合灵活性

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Increasing integration of distributed energy resources (DERs) within distribution feeders provides unprecedented flexibility at the distribution-transmission interconnection. To exploit this flexibility and to use the capacity potential of aggregate DERs, feasible substation power injection trajectories need to be efficiently characterized. This paper provides an ellipsoidal inner approximation of the set of feasible power injection trajectories at the substation such that for any point in the set, there exists a feasible disaggregation strategy of DERs for any load uncertainty realization. The problem is formulated as one of finding the robust maximum volume ellipsoid inside the flexibility region under uncertainty. Though the problem is NP-hard even in the deterministic case, this paper derives novel approximations of the resulting adaptive robust optimization problem based on optimal second-stage policies. The proposed approach yields less conservative flexibility characterization than existing flexibility region approximation formulations. The efficacy of the proposed method is demonstrated on a realistic distribution feeder.
机译:在分销馈线内增加分布式能源资源(DER)的集成在分销传输互连方面提供了前所未有的灵活性。为了利用这种灵活性并使用聚合DER的容量电位,需要有效地表征可行的变电站的电力注入轨迹。本文提供了变电站的可行功率注射轨迹集中的椭圆形内部近似,使得对于该组中的任何点,存在可行的分解策略,用于任何负载不确定性实现。该问题的制定为在不确定度下在柔韧性区域内找到鲁棒的最大体积椭圆体之一。虽然问题是NP - 即使在确定性情况下,也可以基于最佳第二阶段策略导出所产生的自适应鲁棒优化问题的新颖近似。所提出的方法产生比现有的柔韧性区域近似配方更少保守的灵活性表征。所提出的方法的功效在现实的分布饲养饲料上证明。

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