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Proactive Intrusion Detection and Mitigation System: Case Study on Packet Replay Attacks in Distributed Energy Resource Systems

机译:主动入侵检测和缓解系统:分布式能源系统中数据包重播攻击案例研究

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摘要

The electric grid is rapidly being modernized with novel technologies, adaptive and automated grid-support functions, and added connectivity with internet-based communications and remote interfaces. These advancements render the grid increasingly “smart” and cyber-physical, but also broaden the vulnerability landscape and potential for malicious, cascading disturbances. The grid must be properly defended with security mechanisms such as intrusion detection systems (IDSs), but these tools must account for power system behavior as well as network traffic to be effective. In this paper, we present a cyber-physical IDS, the proactive intrusion detection and mitigation system (PIDMS), that analyzes both cyber and physical data streams in parallel, detects intrusion, and deploys proactive response. We demonstrate the PIDMS with an exemplar case study exploring a packet replay attack scenario focused on photovoltaic inverter communications; the scenario is tested with an emulated, cyber-physical grid environment with hardware-in-the-loop inverters.
机译:电网迅速以新颖的技术,自适应和自动化网格支持功能迅速现代化,并与基于因特网的通信和远程接口添加了连接。这些进步使网格越来越“聪明”和网络身体,而且还扩大了恶意,级联障碍的脆弱景观和潜力。网格必须使用诸如入侵检测系统(IDS)等安全机制进行适当辩护,但这些工具必须考虑电力系统行为以及网络流量有效。在本文中,我们提出了一个网络物理ID,主动入侵检测和缓解系统(PIDMS),其并行地分析了两个网络和物理数据流,检测入侵,并部署主动响应。我们通过示例案例研究展示了PIDMS探索了专注于光伏逆变器通信的数据包重播攻击情景;使用具有硬件in--in--in-in-in-Worders的模拟的网络物理电网环境进行测试。

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