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Active Distribution Grid Management Based on Robust AC Optimal Power Flow

机译:基于鲁棒交流最优潮流的有源配电网管理

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Further integration of distributed renewable energy sources in distribution systems requires a paradigm change in grid management by the distribution system operators (DSOs). DSOs are currently moving to an operational planning approach based on activating flexibility from distributed energy resources in day/hour-ahead stages. This paper follows the DSO trends by proposing a methodology for active grid management by which robust optimization is applied to accommodate spatial-temporal uncertainty. The proposed method entails the use of a multi-period AC-OPF, ensuring a reliable solution for the DSO. Wind and PV uncertainty is modeled based on spatial-temporal trajectories, while a convex hull technique to define uncertainty sets for the model is used. A case study based on real generation data allows illustration and discussion of the properties of the model. An important conclusion is that the method allows the DSO to increase system reliability in the real-time operation. However, the computational effort grows with increases in system robustness.
机译:分布式可再生能源在配电系统中的进一步集成要求配电系统运营商(DSO)改变电网管理模式。 DSO目前正在基于在日/小时前阶段激活分布式能源的灵活性来采用运营计划方法。本文通过提出一种用于主动网格管理的方法来遵循DSO趋势,通过该方法可以应用鲁棒优化来适应时空不确定性。提出的方法需要使用多周期AC-OPF,以确保DSO的可靠解决方案。基于时空轨迹对风和光伏不确定性进行建模,同时使用凸包技术为模型定义不确定性集。基于实际生成数据的案例研究可以说明和讨论模型的属性。一个重要的结论是,该方法允许DSO在实时操作中提高系统可靠性。但是,随着系统健壮性的提高,计算工作也随之增加。

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