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首页> 外文期刊>Signal and Information Processing over Networks, IEEE Transactions on >A Game-Theoretic Approach to Fake-Acknowledgment Attack on Cyber-Physical Systems
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A Game-Theoretic Approach to Fake-Acknowledgment Attack on Cyber-Physical Systems

机译:博弈论方法对网络物理系统的虚假确认攻击

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摘要

A class of malicious attacks against remote state estimation in cyber-physical systems is considered. A sensor adopts an acknowledgement (ACK)-based online power schedule to improve the remote state estimation performance under limited resources. To launch malicious attacks, the attacker can modify the ACKs from the remote estimator and convey fake information to the sensor, thereby misleading the sensor with subsequent performance degradation. One feasible attack pattern is proposed and the corresponding effect on the estimation performance is derived analytically. Due to the ACKs being unreliable, the sensor needs to decide at each instant, whether to trust the ACK information or not and adapt the transmission schedule accordingly. In the meanwhile, there is also a tradeoff for the attacker between attacking and not attacking when the modification of ACKs is costly. To investigate the optimal strategies for both the sensor and the attacker, a game-theoretic framework is built and the equilibrium for both sides is studied.
机译:考虑了一种针对电子物理系统中针对远程状态估计的恶意攻击。传感器采用基于确认(ACK)的在线电源计划,以提高有限资源下的远程状态估计性能。为了发动恶意攻击,攻击者可以修改来自远程估计器的ACK并将虚假信息传递给传感器,从而误导传感器,从而降低性能。提出了一种可行的攻击方式,并通过分析得出了其对估计性能的影响。由于ACK不可靠,因此传感器需要在每个时刻决定是否信任ACK信息并相应地调整传输时间表。同时,当ACK的修改成本很高时,攻击者在攻击与不攻击之间也有一个权衡。为了研究传感器和攻击者的最佳策略,建立了博弈论框架并研究了双方的平衡。

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