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Mid-term vulnerability analysis of power systems under intentional attacks

机译:有意攻击下的电力系统中期脆弱性分析

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摘要

This study addresses the vulnerability analysis of power systems over a time horizon. The authors introduce a model which could be used by system operators to assess where and when, over a specific time horizon, their power systems are most vulnerable to intentional attacks. This new time-phased vulnerability analysis is modelled as a bilevel programming problem in which in the upper level, an attacker determines the best attack plan, including the best locations and the best times over the time horizon, for launching attacks. In the lower level, the system operator minimises the system operation and load shedding costs. Using duality theory, the bilevel optimisation problem is converted into a mathematical programming with equilibrium constraints which is subsequently converted to a single-level mixed integer linear programming problem by means of linearisation techniques. This model is tested on modified Garver 6-bus test system, modified IEEE 24-bus reliability test system, and IEEE 300-bus test system. The results appreciate the capability of the proposed model and show that it is indispensable to consider the time in analysing the vulnerability of power systems.
机译:这项研究解决了一段时间内电力系统的脆弱性分析。作者介绍了一种模型,系统操作员可以使用该模型来评估在特定时间范围内其电源系统最容易受到故意攻击的时间和地点。这种新的按时间分段的漏洞分析被建模为一个双层编程问题,其中,在较高级别,攻击者可以确定最佳的攻击计划,包括时间范围内的最佳位置和最佳时间,以发起攻击。在较低级别,系统操作员将系统操作和减载成本降至最低。使用对偶理论,将双级优化问题转换为具有平衡约束的数学规划,然后通过线性化技术将其转换为单级混合整数线性规划问题。该模型在改进的Garver 6总线测试系统,改进的IEEE 24总线可靠性测试系统和IEEE 300总线测试系统上进行了测试。结果赞赏所提出模型的功能,并表明在分析电力系统的脆弱性时必须考虑时间。

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