Securing the smart grid

John Hastings, D. Laverty, D. Morrow
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引用次数: 9

Abstract

The availability of electricity is fundamental to modern society. It is at the top of the list of critical infrastructures and its interruption can have severe consequences. This highly important system is now evolving to become more reliable, efficient, and clean. This evolving infrastructure has become known as the smart grid; and these future smart grid systems will rely heavily on ICT. This infrastructure will require many servers and due to the nature of the grid, many of these systems will be geographically diverse requiring communication links. At the heart of this ICT infrastructure will be security. At each level of the smart grid from smart metering right through to remote sensing and control networks, security will be a key factor for system design consideration. With an increased number of ICT systems in place the security risk also increases. In this paper the authors discuss the changing nature of security in relation to the smart grid by looking at the move from legacy systems to more modern smart grid systems. The potential planes of attack for future smart grid systems are identified, and the general anatomy of a cyber-attack is presented. The authors then introduce the various threat levels of different types of attack and the mitigation techniques that could be put in place for each. Finally, the authors' introduce a Phasor Measurement Unit (PMU) communication system (operated by the authors) that can be used as a test-bed for some of the proposed future security research.
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保护智能电网
电力的可用性对现代社会至关重要。它位于关键基础设施列表的顶部,它的中断可能会产生严重后果。这个非常重要的系统现在正在发展,变得更加可靠、高效和清洁。这种不断发展的基础设施被称为智能电网;这些未来的智能电网系统将严重依赖信息通信技术。这种基础设施将需要许多服务器,并且由于网格的性质,许多这些系统将在地理上不同,需要通信链路。信息通信技术基础设施的核心将是安全。在智能电网的各个层面,从智能电表一直到遥感和控制网络,安全将是系统设计考虑的关键因素。随着信息通信技术系统数量的增加,安全风险也在增加。在本文中,作者通过观察从遗留系统到更现代的智能电网系统的转变,讨论了与智能电网相关的安全性质的变化。确定了未来智能电网系统的潜在攻击平面,并介绍了网络攻击的一般结构。然后,作者介绍了不同类型攻击的各种威胁级别,以及可以针对每种攻击采取的缓解技术。最后,作者介绍了相量测量单元(PMU)通信系统(由作者操作),该系统可以用作一些拟议的未来安全研究的试验台。
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