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An Optimal Design of a Moving Target Defense for Attack Detection in Control Systems

机译:控制系统中用于攻击检测的移动目标防御系统的优化设计

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In this paper, we consider the problem of designing system parameters to improve detection of attacks in control systems. Specifically, we study control systems which are vulnerable to integrity attacks on sensors and actuators. We aim to defend against strong model aware adversaries that can read and modify all sensors and actuators. Previous work has proposed a moving target defense for detecting integrity attacks on control systems. Here, an authenticating subsystem with time-varying dynamics coupled to the original plant is introduced. Due to this coupling, an attack on the original system will affect the authenticating subsystem and in turn be revealed by a set of sensors measuring the extended plant. Moreover, the time-varying dynamics of the extended plant act as a moving target, preventing an adversary from developing an effective adaptive attack strategy. Previous work has failed to consider the design of the time-varying system matrices and as such provides little in terms of guidelines for implementation in real systems. This paper proposes two optimization problems for designing these matrices. The first designs the auxiliary actuators to maximize detection performance while the second designs the coupling matrices to maximize system estimation performance. Numerical examples are presented that validate our approach.
机译:在本文中,我们考虑了设计系统参数以改善对控制系统中攻击的检测的问题。具体来说,我们研究容易受到传感器和执行器完整性攻击的控制系统。我们的目标是抵御可读取和修改所有传感器和执行器的强大的模型感知对手。先前的工作提出了一种移动目标防御,用于检测控制系统上的完整性攻击。在这里,介绍了一个具有随时间变化的动力学的验证子系统,该子系统与原始工厂耦合。由于这种耦合,对原始系统的攻击将影响身份验证子系统,并进而由一组测量扩展工厂的传感器来揭示。此外,扩展工厂的时变动态充当了移动目标,从而阻止了对手开发有效的自适应攻击策略。先前的工作未能考虑时变系统矩阵的设计,因此,在实际系统中的实施准则方面几乎没有提供。本文提出了用于设计这些矩阵的两个优化问题。第一种设计辅助致动器以使检测性能最大化,而第二种设计耦合矩阵以使系统估计性能最大化。数值例子验证了我们的方法。

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