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A Blended Active Detection Strategy for False Data Injection Attacks in Cyber-Physical Systems

机译:网络 - 物理系统中假数据注射攻击的混合主动检测策略

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摘要

In recent years, different solutions have been proposed to detect advanced stealthy cyber-attacks against networked control systems. In this article, we propose a blended detection scheme that properly leverages and combines two existing detection ideas, namely, watermarking and moving target. In particular, a watermarked signal and a nonlinear static auxiliary function are combined to both limit the attacker's disclosure resources and obtain an unidentifiable moving target. The proposed scheme is capable of detecting a broad class of false data injection attacks, including zero-dynamics, replay, and covert attacks. Moreover, it is shown that the proposed approach mitigates the drawbacks of standard moving target and watermarking defense strategies. Finally, an extensive simulation study is reported to contrast the proposed detector with recent competitor schemes and provide tangible evidence of the effectiveness of the proposed solution.
机译:近年来,已经提出了不同的解决方案来检测对网络控制系统的先进隐秘的网络攻击。在本文中,我们提出了一种混合的检测方案,可妥善利用并结合两个现有的检测思路,即水印和移动目标。特别地,将水印信号和非线性静态辅助功能组合到限制攻击者的公开资源,并获得不识别的移动目标。所提出的方案能够检测广泛的虚假数据注入攻击,包括零动态,重放和隐蔽攻击。此外,结果表明,所提出的方法减轻了标准移动目标和水印防御策略的缺点。最后,据报道,近期竞争对手方案对拟议的探测器进行了综合仿真研究,并提供了所提出的解决方案的有效性的切实证据。

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