Aging and Rejuvenation Models of Load Changing Attacks in Micro-Grids

R. Czekster, Alberto Avritzer, D. Menasché
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引用次数: 1

Abstract

Recent cyber-attacks in critical infrastructures have highlighted the importance of investigating how to improve Smart-Grids (SG) resiliency. In the future, it is envisioned that grid connected micro-grids would have the ability of operating in 'islanded mode’ in the event of a grid-level failure. In this work, we propose a method for unfolding aging and rejuvenation models into their sequential counterparts to enable the computation of transient state probabilities in the proposed models. We have applied our methodology to one specific security attack scenario and four large campus micro-grids case studies. We have shown how to convert the software aging and rejuvenation, with cycles, to its unfolded counterpart. We then used the unfolded counterpart to support the survivability computation. We were able to analytically evaluate the transient failure probability and the associated Instantaneous Expected Energy Not Supplied metric, for each of the four case studies, from one specific attack. We envision several practical applications of the proposed methodology. First, because the micro-grid model is solved analytically, the approach can be used to support micro-grid engineering optimizations accounting for security intrusions. Second, micro-grid engineers could use the approach to detect security attacks by monitoring for unexpected deviations of the Energy Not Supplied metric.
微电网负荷变化攻击的老化与恢复模型
最近针对关键基础设施的网络攻击凸显了研究如何提高智能电网(SG)弹性的重要性。在未来,人们设想,在电网级故障的情况下,并网微电网将具有以“孤岛模式”运行的能力。在这项工作中,我们提出了一种将衰老和恢复模型展开为顺序对应模型的方法,以便在所提出的模型中计算瞬态概率。我们已经将我们的方法应用于一个特定的安全攻击场景和四个大型校园微电网案例研究。我们已经展示了如何将软件的老化和再生,用周期,转换成它的未展开的对应物。然后,我们使用未折叠的对应物来支持生存性计算。我们能够分析评估瞬时故障概率和相关的瞬时预期能量未供应度量,对于四个案例研究中的每一个,从一个特定的攻击。我们设想了提出的方法的几个实际应用。首先,由于微电网模型是解析求解的,因此该方法可用于支持考虑安全入侵的微电网工程优化。其次,微电网工程师可以使用该方法通过监测未供应能源度量的意外偏差来检测安全攻击。
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