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Impact of Malicious SCADA Commands on Power Grids’ Dynamic Responses

机译:恶意SCADA命令对电网动态响应的影响

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Control-related attacks can use malicious commands crafted in legitimate formats to initiate perturbations to power systems. Our previous work used the steady state of power systems (e.g., through power flow analysis) to estimate the consequences of such commands [1]. However, when power systems move from one steady state to another, their physical components go through a transient period, during which the system state can experience oscillations. An anomaly in an oscillation can make power systems lose synchronisms and experience catastrophic consequences. Analysis based on the steady state cannot understand and predict those harmful oscillations. In this paper, we study the impacts of control-related attacks on the dynamic responses of a power grid, by mapping malicious commands (e.g., that disconnect transmission lines) delivered via communication networks to power systems' electromechanical models. Based on theoretical analysis and numerical simulations, we find that it is challenging for attackers to destabilize a power system, but they can introduce large oscillations in the transient period and thereby cause physical damage.
机译:与控制相关的攻击可以使用以合法格式编写的恶意命令来对电源系统造成干扰。我们以前的工作使用电力系统的稳态(例如,通过潮流分析)来估计此类命令的后果[1]。但是,当电力系统从一种稳态转变为另一种稳态时,其物理组件会经过一个过渡周期,在此期间,系统状态可能会经历振荡。振荡异常会导致电力系统失去同步性并遭受灾难性后果。基于稳态的分析无法理解和预测那些有害的振荡。在本文中,我们通过将通过通信网络传递的恶意命令(例如,断开传输线的连接)映射到电力系统的机电模型,研究了与控制有关的攻击对电网动态响应的影响。基于理论分析和数值模拟,我们发现攻击者难以破坏电力系统的稳定性,但是攻击者可能会在瞬态期间引入大的振荡,从而造成物理损坏。

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