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Vulnerability Analysis of Power Grids With Line Switching

机译:带线路切换的电网脆弱性分析

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摘要

Vulnerability analysis of a power grid, especially in its static status, is often performed through solving a bi-level optimization problem, which, if solved to optimality, yields the most destructive interdiction plan with the worst loss. As one of the most effective operations to mitigate deliberate outages or attacks, transmission line switching recently has been included and modeled by a binary variable in the lower level decision model. Because this bi-level (or an equivalent min-max) problem is a challenging nonconvex discrete optimization problem, no exact algorithm has been developed, and only a few recent heuristic procedures are available. In this paper, we present an equivalent single-level reformulation of this problem, and describe a column-and-constraint generation algorithm to derive the global optimal solution. Numerical study confirms the quality of solutions and the computational efficiency of the proposed algorithm. Discussion and analysis of the mitigation effect of line switching are presented.
机译:电网的脆弱性分析(尤其是静态状态)通常是通过解决双层优化问题来进行的,如果将其优化到最佳状态,则将得出破坏性最大,损失最严重的拦截计划。作为缓解故意中断或攻击的最有效操作之一,传输线切换最近已包含在较低层决策模型中,并由二进制变量建模。由于此双级(或等效的最小-最大)问题是具有挑战性的非凸离散优化问题,因此尚未开发出确切的算法,并且仅提供了一些最新的启发式过程。在本文中,我们提出了该问题的等效单级重构,并描述了一种列约束生成算法以导出全局最优解。数值研究证实了所提算法的求解质量和计算效率。对线路切换的缓解效果进行了讨论和分析。

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