Cyber-secure communication architecture for active power distribution networks

T. Tesfay, J. Hubaux, J. Boudec, P. Oechslin
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引用次数: 19

Abstract

Active power distribution networks require sophisticated monitoring and control strategies for efficient energy management and automatic adaptive reconfiguration of the power infrastructure. Such requirements are realised by deploying a large number of various electronic automation and communication field devices, such as Phasor Measurement Units (PMUs) or Intelligent Electronic Devices (IEDs), and a reliable two-way communication infrastructure that facilitates transfer of sensor data and control signals. In this paper, we perform a detailed threat analysis in a typical active distribution network's automation system. We also propose mechanisms by which we can design a secure and reliable communication network for an active distribution network that is resilient to insider and outsider malicious attacks, natural disasters, and other unintended failure. The proposed security solution also guarantees that an attacker is not able to install a rogue field device by exploiting an emergency situation during islanding.
有功配电网的网络安全通信体系结构
有功配电网需要复杂的监测和控制策略,以实现高效的能源管理和电力基础设施的自动自适应重构。这些要求是通过部署大量各种电子自动化和通信现场设备来实现的,例如相量测量单元(pmu)或智能电子设备(ied),以及可靠的双向通信基础设施,促进传感器数据和控制信号的传输。本文对一个典型的有源配电网自动化系统进行了详细的威胁分析。我们还提出了一种机制,通过这种机制,我们可以为主动配电网络设计一个安全可靠的通信网络,该网络可以抵御内部和外部的恶意攻击、自然灾害和其他意外故障。所提出的安全解决方案还保证攻击者无法利用孤岛期间的紧急情况安装恶意现场设备。
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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