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Secure Sensor Design for Resiliency of Control Systems Prior to Attack Detection

机译:检测攻击之前控制系统的弹性的安全传感器设计

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We introduce a new defense mechanism for stochastic control systems with control objectives, to enhance their resilience before the detection of any attacks. To this end, we cautiously design the outputs of the sensors that monitor the state of the system since the attackers need the sensor outputs for their malicious objectives in stochastic control scenarios. Different from the defense mechanisms that seek to detect infiltration or to improve detectability of the attacks, the proposed approach seeks to minimize the damage of possible attacks before they actually have even been detected. We, specifically, consider a controlled Gauss-Markov process, where the controller could have been infiltrated into at any time within the system's operation. Within the framework of game-theoretic hierarchical equilibrium, we provide a semi-definite programming based algorithm to compute the optimal linear secure sensor outputs that enhance the resiliency of control systems prior to attack detection.
机译:我们针对具有控制目标的随机控制系统引入了一种新的防御机制,以在检测到任何攻击之前增强其弹性。为此,我们谨慎地设计用于监视系统状态的传感器的输出,因为在随机控制方案中,攻击者需要传感器输出来实现其恶意目标。与试图检测渗透或提高攻击的可检测性的防御机制不同,所提出的方法试图在实际检测到可能的攻击之前将其破坏降至最低。具体来说,我们考虑一个受控的高斯-马尔可夫过程,该控制器可能在系统运行的任何时间都已渗透到该控制器中。在博弈论层次均衡的框架内,我们提供了一种基于半定规划的算法,以计算最优的线性安全传感器输出,从而增强了攻击检测之前控制系统的弹性。

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