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Electricity infrastructure enhancement for the security of supply against coordinated malicious attacks

机译:增强电力基础设施,以防止供应商遭受协同恶意攻击

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The impact of coordinated malicious attacks may be dramatically severe and may yield a wide area blackout. A preventive measure is enhancing the infrastructure through investment. Due to limited budget, a decision making is required to select the best possible options, considering cost/benefit ratio. We designed a time-step simulation framework representing the evolution of post-contingency failures and load/system restoration. System unserved energy is translated into economic losses. Different enhancement options can be compared in terms of benefit (reduction in the cost of unserved energy) and of cost (investments needed) to eventually rank them. The simulation framework also provides a way to derive an optimal lost load recovering strategy to accelerate system restoration. In this paper the simulation framework is applied to a real network (Austrian transmission grid) to evaluate the technical and economic impacts of a coordinated malicious attack.
机译:协同恶意攻击的影响可能会非常严重,并且可能会导致大范围的停电。预防措施是通过投资来增强基础设施。由于预算有限,因此需要在考虑成本/收益比的情况下做出决定,以选择最佳的方案。我们设计了一个时步仿真框架,表示事后故障和负载/系统恢复的演变。系统无用的能量转化为经济损失。可以根据收益(减少无用能源的成本)和成本(所需投资)对不同的增强选项进行比较,以最终对它们进行排名。仿真框架还提供了一种方法,可以推导最佳的丢失负载恢复策​​略,从而加快系统恢复速度。本文将仿真框架应用于实际网络(奥地利传输网格),以评估协同恶意攻击的技术和经济影响。

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