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Vulnerability analysis for simultaneous attack in smart grid security

机译:智能电网安全中同时攻击的漏洞分析

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Power grid infrastructures have been exposed to several terrorists and cyber attacks from different perspectives and have resulted in critical system failures. Among different attack strategies, simultaneous attack is feasible for the attacker if enough resources are available at the moment. In this paper, vulnerability analysis for simultaneous attack is investigated, using a modified cascading failure simulator with reduced calculation time than the existing methods. A new damage measurement matrix is proposed with the loss of generation power and time to reach the steady-state condition. The combination of attacks that can result in a total blackout in the shortest time are considered as the strongest simultaneous attack for the system from attacker's viewpoint. The proposed approach can be used for general power system test cases. In this paper, we conducted the experiments on W&W 6 bus system and IEEE 30 bus system for demonstration of the result. The modified simulator can automatically find the strongest attack combinations for reaching maximum damage in terms of generation power loss and time to reach black-out.
机译:电网基础设施从不同的角度受到了数种恐怖分子和网络攻击的威胁,并导致了严重的系统故障。在不同的攻击策略中,如果当前有足够的资源可用,则同时攻击对于攻击者是可行的。本文使用改进的级联故障模拟器,比现有方法减少了计算时间,对同时攻击的漏洞分析进行了研究。提出了一种新的损伤测量矩阵,该模型具有发电功率和达到稳态条件所需的时间损失。从攻击者的角度来看,可以在最短时间内导致完全中断的攻击组合被认为是系统中最强的同时攻击。所提出的方法可以用于一般的电力系统测试案例。在本文中,我们在W&W 6总线系统和IEEE 30总线系统上进行了实验,以证明结果。修改后的模拟器可以自动找到最强大的攻击组合,以根据发电功率损耗和停电时间达到最大的破坏。

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