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Towards leveraging discrete grid flexibility in chance-constrained power system operation planning

机译:在机会受限的电力系统运行规划中利用离散网格灵活性

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This paper considers the integration of grid flexibility in the chance-constrained power system operation planning framework. The particular challenge addressed comes from the discrete nature of the respective controls, such as breaker positions defining the topology of the network. We consider a template short-term operation planning problem statement, seeking to enable N-1 secure operation over a distribution of power injections. We use a scenario-based approach to determine a planning decision and rely on theoretical results to compute an upper bound on the probability of being able to meet the N-1 criterion in operation. We also estimate the actual value of this probability through Monte Carlo simulation. Our results indicate that both the bound and the actual value consistently decrease when increasing the size of the considered scenario set, even if the bound is quite conservative. Moreover, we showcase that further from economic efficiency, grid flexibility can lead to gains in operational reliability.
机译:本文考虑了网格灵活性在机会约束电力系统运行规划框架中的集成。解决的特殊挑战来自各个控件的离散性,例如定义网络拓扑的断路器位置。我们考虑模板短期操作规划问题陈述,寻求在电力注入的分布上启用N-1安全操作。我们使用基于场景的方法来确定规划决策,并依赖于理论结果来计算能够满足操作中N-1标准的概率上的上限。我们还通过Monte Carlo仿真估计了这种概率的实际价值。我们的结果表明,在增加所考虑的方案集的大小时,界限和实际值均一致减少,即使绑定是非常保守的。此外,我们展示了经济效率的进一步,网格灵活性可能导致运营可靠性的收益。

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