智能电网中的变化率攻击

Subhankar Mishra, Xiang Li, Alan Kuhnle, M. Thai, Jungtaek Seo
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引用次数: 24

摘要

智能电网通过双向通信和自动化居民负荷控制等解决了现有电网日益复杂、需求不断增长和可靠性要求更高的问题。这些特点也使智能电网成为许多网络攻击的目标。本文研究了费率变更攻击(rate change attack, RAA)的问题,该攻击通过伪造价格信息引起单个用户的负荷分布变化,最终导致整个网络的负荷分布发生重大变化。结合级联故障,它最终会产生极具破坏性的攻击。我们证明了这个问题是np完全的,并给出了它的不可逼近性。针对这一问题,我们设计了两种方法,第一种方法是在给定资源条件下使线路失效最大化,然后通过级联失效来扩展效果;第二种方法是在选择故障线路时考虑级联电位。为了更深入地了解RAA的影响,我们还扩展了我们的算法,以最大化节点故障的数量。在IEEE总线数据和实际网络上的实证结果帮助我们在不同的网格参数设置下评估我们的方法。
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Rate alteration attacks in smart grid
Smart Grid addresses the problem of existing power grid's increasing complexity, growing demand and requirement for greater reliability, through two-way communication and automated residential load control among others. These features also makes the Smart Grid a target for a number of cyber attacks. In the paper, we study the problem of rate alteration attack (RAA) through fabrication of price messages which induces changes in load profiles of individual users and eventually causes major alteration in the load profile of the entire network. Combining with cascading failure, it ends up with a highly damaging attack. We prove that the problem is NP-Complete and provide its inapproximability. We devise two approaches for the problem, former deals with maximizing failure of lines with the given resource and then extending the effect with cascading failure while the later takes cascading potential into account while choosing the lines to fail. To get more insight into the impact of RAA, we also extend our algorithms to maximize number of node failures. Empirical results on both IEEE Bus data and real network help us evaluate our approaches under various settings of grid parameters.
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