智能电网系统的威胁态势

Christos-Minas Mathas, Konstantinos-Panagiotis Grammatikakis, C. Vassilakis, N. Kolokotronis, Vasiliki-Georgia Bilali, D. Kavallieros
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引用次数: 11

摘要

智能电网是一种能源输送网络,它构成了电网的一种演变,在这种网络中,电力供应商和消费者之间建立了双向流动。这些流支持电力和信息的传输,以支持能源输送网络背景下的自动化操作。到目前为止,已经出现了许多智能电网实现和实现建议,具有不同程度的功能交付和复杂程度。虽然智能电网提供了许多优势,但其分布式特性和能源生产者和消费者之间的信息流使得针对智能电网基础设施的一系列攻击成为可能,其相关后果可能从经济损失到智能电网的完全故障。在本文中,我们调查了智能电网的威胁情况,确定了特定于该基础设施的威胁,提供了每种攻击类型后果严重程度的评估,识别可用于检测攻击的特征,并列出可用于减轻攻击的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Threat landscape for smart grid systems
Smart Grids are energy delivery networks, constituting an evolution of power grids, in which a bidirectional flow between power providers and consumers is established. These flows support the transfer of electricity and information, in order to support automation actions in the context of the energy delivery network. Insofar, many smart grid implementations and implementation proposals have emerged, with varying degrees of feature delivery and sophistication. While smart grids offer many advantages, their distributed nature and information flow streams between energy producers and consumers enable the launching of a number of attacks against the smart grid infrastructure, where the related consequences may range from economic loss to complete failure of the smart grid. In this paper, we survey the threat landscape of smart grids, identifying threats that are specific to this infrastructure, providing an assessment of the severity of the consequences of each attack type, discerning features that can be utilized to detect attacks and listing methods that can be used to mitigate them.
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