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A multi-uncertainty-set based two-stage robust optimization to defender-attacker-defender model for power system protection

机译:基于多不确定性集的两阶段鲁棒优化防御系统-防御者-防御者模型,用于电力系统保护

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摘要

To handle rapidly growing threats from deliberate attacks, the critical components in power grid should be identified and protected. This paper proposed a defender-attacker-defender model to deal with power grid protection problem, in which the uncertain attacks and load types are considered. Furthermore, multiple uncertainty sets are introduced to characterize the possible realizations of disruptions caused by attackers, and the probabilities of the multiple uncertainty sets are estimated using analytic hierarchy process. Then, the problem is formulated as a multi-uncertainty-set based two-stage robust optimization model which can be termed as a mixed-integer tri-level programming and solved by column-and-constrains generation algorithm with a master-subproblem framework. The test results on a standard IEEE RTS 24-bus system show the effectiveness of the proposed model by considering multiple uncertainty sets and load types. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了应对来自蓄意攻击的迅速增长的威胁,应识别并保护电网中的关键组件。针对电网保护问题,提出了考虑不确定性攻击和负荷类型的防御者-防御者-防御者模型。此外,引入了多个不确定性集来表征攻击者可能造成的破坏,并使用层次分析法估算了多个不确定性集的概率。然后,将该问题表述为基于多不确定性集的两阶段鲁棒优化模型,该模型可以称为混合整数三级编程,并可以通过具有主子问题框架的列约束生成算法来解决。通过考虑多个不确定性集和负载类型,在标准IEEE RTS 24总线系统上的测试结果表明了该模型的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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