网络约束网络物理系统重放攻击的可行性及检测

M. Hosseinzadeh, B. Sinopoli, E. Garone
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引用次数: 36

摘要

本文分析了受线性概率约束的受限网络物理系统中重播攻击的影响。为了注入外源性控制输入而不被发现,攻击者将劫持传感器,观察并记录一定时间内的读数,然后在执行攻击时重复这些读数。研究了在不被检测到的情况下,攻击者在控制回路中引起扰动的条件。然后,为了使系统能够抵御重放攻击,在控制输入中添加一个随机信号(作为认证信号)。由于该信号会影响系统的性能,最后提出了对认证信号的优化,以最大限度地提高检测率,同时保持进程劣化有界。仿真结果验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility and Detection of Replay Attack in Networked Constrained Cyber-Physical Systems
This paper analyzes the effect of replay attacks on constrained cyber-physical systems which are subject to linear probabilistic constraints. In order to inject an exogenous control input without being detected the attacker will hijack the sensors, observe and record their readings for a certain amount of time and repeat them afterwards while carrying out his attack. The conditions under which the attacker can induce perturbation in the control loop without being detected is studied. Then, in order to make the system resilient to the replay attack, a random signal (serving as the authentication signal) is added to the control input. Since this signal can hamper the performance of the system, finally, the optimization of the authentication signals is proposed to maximize the detection rate while keeping the process deterioration bounded. The effectiveness of the proposed scheme is demonstrated on a simulated case study.
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