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Game framework for optimal allocation of spinning reserve to confront intelligent physical attacks on power system

机译:优化分配旋转备用容量以应对电力系统智能物理攻击的游戏框架

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摘要

Spinning reserve (SR) serves as an efficient tool to respond to a sudden outage of power system components caused by either natural events or physical attacks. Contrary to natural threats, the intelligent physical attacks are strongly influenced by the measures taken by the system operator to defend the system and exhibit no stochastic behaviour. As a consequence, the probabilistic methods of SR provision and allocation do not prove to be appropriate to confront intelligent attacks. In this study, the interaction between the system operator as the defender and the intelligent attacker is investigated within a game model. In this model, the SR is allocated in such a way that the highest interruption cost that the attacker can impose is minimised. The technical limitations of SR provision together with operational constraints are taken into consideration. The efficacy of the proposed method is examined by conducting case studies of single and multiple-target attacks on components of IEEE 24-bus and IEEE 118-bus test systems. The results show that the proposed scheme produces a considerable reduction in the system interruption cost in comparison with the probabilistic methods.
机译:旋转储备(SR)是一种有效的工具,可以应对自然事件或物理攻击导致的电力系统组件突然中断。与自然威胁相反,智能物理攻击受到系统操作员为保护系统且不表现出随机行为而采取的措施的强烈影响。结果,SR提供和分配的概率方法并不适合应对智能攻击。在这项研究中,在游戏模型中研究了作为防御者的系统操作员与智能攻击者之间的交互作用。在此模型中,SR的分配方式使攻击者可以施加的最高中断成本降至最低。考虑到SR的技术局限性以及运营限制。通过对IEEE 24-bus和IEEE 118-bus测试系统的组件进行单目标和多目标攻击的案例研究,检验了该方法的有效性。结果表明,与概率方法相比,该方案可显着降低系统中断成本。

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