Data-injection Attacks Using Historical Inputs and Outputs

Rijad Alisic, H. Sandberg
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引用次数: 4

Abstract

Data-driven, model-free control has become popular in recent years, due to their ease of implementation and minimal information requirement about the system. In this paper, we investigate whether the same methods could be used by an adversary to synthesize undetectable data-injection attacks on cyber-physical systems using Willems’ Fundamental Lemma. We show that if the adversary is able to upper bound the order of a linear, time-invariant system and read all its inputs and outputs, then the adversary will be able to generate undetectable attack signals in the form of covert attacks. Additionally, we provide conditions on the disclosed data set that enable the adversary to generate zero dynamics attacks. These conditions give operators insights into when enough information about the system has been revealed for an adversary to conduct an undetectable attack. Finally, the different attack strategies are verified through a numerical example.
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使用历史输入和输出的数据注入攻击
数据驱动的无模型控制由于其易于实现和对系统信息的要求最少,近年来变得流行起来。在本文中,我们研究了攻击者是否可以使用相同的方法来利用Willems基本引理对网络物理系统进行不可检测的数据注入攻击。我们表明,如果攻击者能够对线性时不变系统的阶上界并读取其所有输入和输出,那么攻击者将能够以隐蔽攻击的形式产生不可检测的攻击信号。此外,我们提供了公开数据集的条件,使攻击者能够产生零动态攻击。这些条件使操作人员能够了解何时已经泄露了足够的系统信息,以便对手进行无法察觉的攻击。最后,通过一个算例对不同的攻击策略进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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