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Securing Substations through Command Authentication Using On-the-fly Simulation of Power System Dynamics

机译:通过使用电源系统动态的拍摄模拟来保护变电站通过指令仿真

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There are increasing concerns that cyber attackers may inject malicious remote control commands into smart grid systems, as witnessed in the Ukraine incidents in 2015 and 2016 and the recent CrashOverride malware campaign. To counter such risks, command authentication mechanisms, which evaluate the legitimacy and validity of each remote control command based on the up-to-date power grid status and context, can be deployed near the edge of smart grid infrastructure (e.g., in substations) as an additional line of defense. However, many of the state-of-the-art command authentication schemes only utilize steady-state power flow information, which does not capture all details of power grid behaviors in the transient state as well as cascading effects. Therefore, they may overlook indication of significant grid instability triggered by malicious commands. In this paper, we propose the use of on-the-fly power system dynamics simulation for command authentication to overcome such limitations. We also discuss system architecture and design considerations on longer simulation latency towards the practical deployment of the enhanced command authentication system.
机译:越来越担心网络攻击者可以将恶意遥控命令注入智能电网系统,如2015年和2016年的乌克兰事件中所见证的 crashoverride 恶意软件活动。为了对此类风险,指令认证机制,它可以基于最新的电网状态和上下文评估每个遥控命令的合法性和有效性,可以在智能电网基础架构的边缘附近部署(例如,在变电站)附近作为一系列额外的防御。然而,许多最先进的命令认证方案仅利用稳态功率流信息,该信息不会捕获瞬态状态和级联效果中的电网行为的所有细节。因此,它们可能会阻止由恶意命令触发的显着网格不稳定的指示。在本文中,我们提出了使用现场电力系统动态模拟,以克服这些限制。我们还讨论系统架构和设计注意事项,以更长的模拟延迟,以实现增强型命令认证系统的实际部署。

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