Mitigating IoT-based Cyberattacks on the Smart Grid

Y. Yilmaz, S. Uludag
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引用次数: 15

Abstract

The impact of cybersecurity attacks on the Smart Grid may cause cyber as well as physical damages, as clearly shown in the recent attacks on the power grid in Ukraine where consumers were left without power. A set of recent successful Distributed Denial-of-Service (DDoS) attacks on the Internet, facilitated by the proliferation of the Internet-of-Things powered botnets, shows that it is just a matter of time before the Smart Grid, as one of the most attractive critical infrastructure systems, becomes the target and likely victim of similar attacks, potentially leaving catastrophic disruption of power service to millions of people. It is in this context that we propose a scalable mitigation approach, referred to as Minimally Invasive Attack Mitigation via Detection Isolation and Localization (MIAMI-DIL), under a hierarchical data collection infrastructure. We provide a proofof- concept by means of simulations which show the efficacy and scalability of the proposed approach.
缓解基于物联网的智能电网网络攻击
网络安全攻击对智能电网的影响可能会造成网络和物理损害,最近乌克兰电网遭受的攻击清楚地表明了这一点,消费者无法用电。最近互联网上一系列成功的分布式拒绝服务(DDoS)攻击,由物联网驱动的僵尸网络的扩散推动,表明智能电网作为最具吸引力的关键基础设施系统之一,成为类似攻击的目标和可能的受害者只是时间问题,可能给数百万人的电力服务造成灾难性的中断。正是在这种背景下,我们提出了一种可扩展的缓解方法,称为通过检测隔离和定位的微创攻击缓解(MIAMI-DIL),在分层数据收集基础设施下。通过仿真验证了该方法的有效性和可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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