Detection and prevention of actuator enablement attacks in supervisory control systems

L. K. Carvalho, Yi-Chin Wu, R. Kwong, S. Lafortune
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引用次数: 40

Abstract

The deployment of control systems with network-connected components nowadays has made feedback control systems vulnerable to attacks over the network. This paper considers the problem of intrusion detection and prevention in supervisory control systems, where the attacker has the ability to enable vulnerable actuator events that are disabled by the supervisor. We present a mathematical model for the system under such actuator enablement attacks and propose a defense strategy that detects attacks online and disables all controllable events after an attack is detected. We develop an algorithm for verifying whether the system can prevent damage from attacks with the proposed defense strategy, where damage is modeled as the reachability of a pre-defined set of “unsafe” states. The technical condition of interest that is necessary and sufficient in this context is characterized; it is termed “AE-safe controllability”. Finally, we illustrate the methodology with a traffic system example.
监控系统中致动器使能攻击的检测和预防
随着控制系统的网络化部署,反馈控制系统极易受到网络攻击。本文研究了监控系统中的入侵检测和防御问题,其中攻击者有能力启用被监控者禁用的易受攻击的执行器事件。我们提出了系统在这种致动器使能攻击下的数学模型,并提出了一种在线检测攻击并在检测到攻击后禁用所有可控事件的防御策略。我们开发了一种算法,用于验证系统是否可以使用所提出的防御策略来防止攻击造成的损害,其中损害被建模为预定义的一组“不安全”状态的可达性。描述了在这种情况下必要和充分的感兴趣的技术条件;它被称为“ae安全可控性”。最后,我们用一个交通系统的例子来说明该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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