IEC 61850变电站的网络系统恢复

Ruoxi Zhu, Junho Hong, Chen-Ching Liu, Jiankang Wang
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引用次数: 2

摘要

当电力系统遭受协同网络攻击时,连锁事件可能导致停电。网络攻击发生后,网络系统和物理系统都需要恢复,因此恢复系统是一个复杂的过程。传统上,电力系统的恢复主要集中在物理电力系统的恢复。为了将恢复方法扩展到作为网络物理系统的电网,本文关注的是基于检测和隔离被攻击设备的网络系统的恢复,以及通过多个设备之间的协作恢复功能。为此,在第一阶段,变电站自动化系统(SAS)独立于任何不可信的远程控制进行恢复。本文提出了一种基于IEC 61850的SAS在网络攻击后网络恢复的新策略。通过软件定义网络(SDN)的集中控制器实现动态网络重构,在变电站局域网(LAN)上隔离被破坏的组件。此外,还部署了建议的协作式智能电子设备(ied),以恢复受损设备的主要功能。已经开发了一个带有SDN控制器和商用级IEC 61850代码的网络电力系统试验台,用于实施和验证所提出的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyber System Recovery for IEC 61850 Substations
When a power system undergoes coordinated cyberattacks, the cascading events could result in a blackout. It is a complex process to restore the system after a cyberattack since both cyber and physical systems need to be restored. Traditionally power system restoration is focused on recovery of the physical power system. To extend the restoration methodology to a power grid as a cyber-physical system, this paper is concerned with the restoration of the cyber system based on detection and isolation of the attacked device and recovery of the functions through collaboration among multiple devices. To this end, at the first stage, the substation automation system (SAS) recovers independently of any untrusted remote control. This paper proposes a new strategy for cyber recovery at an IEC 61850 based SAS following a cyberattack. The compromised components are isolated at the substation Local Area Network (LAN) by dynamic network reconfiguration, which is implemented with the centralized controller of Software Defined Network (SDN). Furthermore, the proposed collaborative Intelligent Electronic Devices (IEDs) are deployed to recover the main functions of the compromised device. A cyber-power system testbed with the SDN controller and commercial grade IEC 61850 code has been developed for implementation and validation of the proposed strategy.
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