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Using software-defined networking to build modern, secure IEC 61850-based substation automation systems

机译:使用软件定义的网络构建现代安全IEC 61850的变电站自动化系统

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Substation automation systems (SASs) are an essential part of smart grid systems. They consist of intelligent electronic devices (IEDs) communicating using digital communications protocols over a secure local-area network. Today, SASs can support multiple protection, monitoring, and control applications over the same network, allowing real-time decision making by various devices and fast reactions to ever-changing power system states, within a few milliseconds. Additionally, large amounts of data exchanged by devices in an SAS enable smart decision making by stakeholders and improve overall system performance and efficiency. To ensure reliable operation of SASs, a highly secure and resilient communications network backbone is a must. Traditional Ethernet technology was not designed to meet the performance and reliability requirements that are essential for SASs. Moreover, an electric power system is an attractive target for cyber attacks, so modern operational technology (OT) Ethernet networks must be designed with security in mind to protect against cyber threats. In this paper, we discuss an application of software-defined networking (SDN) to meet stringent network performance and cybersecurity requirements. We compare this application to traditional spanning-tree-based networks to show SDN's ability to meet and exceed those requirements.
机译:变电站自动化系统(SASS)是智能电网系统的重要组成部分。它们由智能电子设备(IED)包括在安全的局域网上使用数字通信协议进行通信。如今,SASS可以通过同一网络支持多种保护,监控和控制应用,允许各种设备的实时决策和对不断变化的电力系统状态的快速反应,在几毫秒内。此外,SAS中的设备交换的大量数据能够通过利益相关者实现智能决策,并提高整体系统性能和效率。为确保SASS可靠运行,必须具有高度安全和有弹性的通信网络骨干。传统的以太网技术尚未旨在满足SASS至关重要的性能和可靠性要求。此外,电力系统是网络攻击的吸引力目标,因此必须考虑到现代操作技术(OT)以太网网络以防止网络威胁。在本文中,我们讨论了软件定义网络(SDN)的应用,以满足严格的网络性能和网络安全要求。我们将此应用程序与传统的生成树为基础的网络进行比较,以显示SDN的满足和超过这些要求的能力。

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