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A Coordinated Multi-Switch Attack for Cascading Failures in Smart Grid

机译:智能电网连锁故障的协调多开关攻击

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摘要

This paper explores distributed smart grid attack strategies to destabilize power system components using variable structure system theory. Here, an opponent is able to remotely control multiple circuit breakers within a power system, say through data corruption or communication network attack, to destabilize target synchronous generators through application of state-dependent breaker switching. In contrast to attack via a single breaker, the multi-switch case provides additional degrees of freedom that can lead to stealthier and wide-scale cascading failures. We provide a dynamical systems context for formulating distributed multi-switch strategies and execute such attacks on the New England 10-generator 39-bus test system.
机译:本文探讨了使用可变结构系统理论的分布式智能电网攻击策略,以破坏电力系统组件的稳定性。在这里,对手能够远程控制电力系统中的多个断路器,例如通过数据损坏或通信网络攻击,从而通过应用状态相关的断路器开关来破坏目标同步发电机的稳定性。与通过单个断路器进行攻击相比,多开关情况提供了更多的自由度,这可能导致更隐秘的大规模级联故障。我们为制定分布式多开关策略提供了动态系统环境,并在新英格兰10发电机39总线测试系统上执行了此类攻击。

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