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F-DETA: A Framework for Detecting Electricity Theft Attacks in Smart Grids

机译:F-DETA:智能电网中检测电盗窃攻击的框架

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Electricity theft is a major concern for utilities all over the world, and leads to billions of dollars in losses every year. Although improving the communication capabilities between consumer smart meters and utilities can enable many smart grid features, these communications can be compromised in ways that allow an attacker to steal electricity. Such attacks have recently begun to occur, so there is a real and urgent need for a framework to defend against them. In this paper, we make three major contributions. First, we develop what is, to our knowledge, the most comprehensive classification of electricity theft attacks in the literature. These attacks are classified based on whether they can circumvent security measures currently used in industry, and whether they are possible under different electricity pricing schemes. Second, we propose a theft detector based on Kullback-Leibler (KL) divergence to detect cleverly-crafted electricity theft attacks that circumvent detectors proposed in related work. Finally, we evaluate our detector using false data injections based on real smart meter data. For the different attack classes, we show that our detector dramatically mitigates electricity theft in comparison to detectors in prior work.
机译:窃电是全世界公用事业的主要关注点,每年造成数十亿美元的损失。尽管提高消费者智能电表和公用事业之间的通信功能可以启用许多智能电网功能,但是可以以允许攻击者窃电的方式破坏这些通信。这种攻击最近已经开始发生,因此迫切需要一个框架来防御它们。在本文中,我们做出了三点主要贡献。首先,据我们所知,我们开发了文献中最全面的电盗窃攻击分类。根据这些攻击是否可以规避当前工业上使用的安全措施以及在不同的电价计划下是否可能进行攻击,将其分类。其次,我们提出了一种基于Kullback-Leibler(KL)散度的盗窃检测器,以检测巧妙制作的电力盗窃攻击,从而绕过相关工作中提出的检测器。最后,我们根据真实的智能电表数据使用错误的数据注入来评估检测器。对于不同的攻击类别,我们证明与以前的工作相比,我们的探测器可以大大减轻窃电现象。

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