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Coordinated Variable Structure Switching in Smart Power Systems: Attacks and Mitigation

机译:智能电力系统中协调变量结构:攻击和缓解

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Recently, a class of cyber-physical attacks termed coordinated variable structure switching attacks has been identified for future smart grid systems. Here, an attacker who has remotely gained access to a circuit breaker or switch is able to disrupt power system operation by applying a state-dependent switching sequence. The sequence can be effectively designed employing variable structure systems theory. In this work, we extend this research to demonstrate an approach to mitigation within this variable structure system framework. Specifically, we study strategies employed by a power system operator in the face of a switching attack to steer the system to a stable equilibrium through persistent co-switching and by leveraging the existence of a stable sliding mode. We demonstrate how such co-switching can be designed for a variant of the WECC 3-machine. 9-bus system using linearized models and then employ simulations in MATLAB/Simulink and PSCAD to demonstrate its potential in practice.
机译:最近,已经识别了一类称为协调变量结构切换攻击的网络物理攻击,用于将来的智能电网系统识别。这里,通过应用状态相关的切换顺序,能够远程获得对断路器或交换机访问的攻击者能够破坏电力系统操作。可以有效地设计采用可变结构系统理论的序列。在这项工作中,我们扩展了这项研究,以展示这种可变结构系统框架内的缓解方法。具体而言,我们在面对切换攻击方面研究电力系统操作员采用的策略,以通过持续的协同切换将系统转向稳定的平衡,并通过利用稳定的滑动模式的存在来研究稳定的平衡。我们展示了如何为WECC 3机器的变型设计这种共切换。 9-Bus系统使用线性化模型,然后在Matlab / Simulink和PSCAD中使用模拟,以展示其实践中的潜力。

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