有界函数
序列(生物学)
模型预测控制
理论(学习稳定性)
控制理论(社会学)
计算机科学
方案(数学)
频道(广播)
控制(管理)
缓冲区溢出
数学优化
算法
数据丢失
控制系统
统计假设检验
探测器
序贯概率比检验
数学
零(语言学)
序贯分析
组分(热力学)
最优控制
作者
Yuzhou Xiao,Senchun Chai,Li Dai,Yuanqing Xia,Runqi Chai
标识
DOI:10.1109/tsmc.2025.3612216
摘要
This article addresses the challenge of amplitude-unbounded false data injection (FDI) attacks targeting the sensor-to-controller (S–C) channel in cyber-physical systems (CPSs). We introduce a resilient tube-based model predictive control (MPC) scheme. This scheme incorporates a threshold-based attack detector and a control sequence buffer to enhance system security. We mathematically model the common FDI attacks and derive the maximum duration of such attacks based on the hypothesis testing principle. Following this, the minimum feasible sequence length of the control sequence buffer is obtained. The system is proven to remain input-to-state stability (ISS) under bounded external disturbances and amplitude-unbounded FDI attacks. Moreover, the feasible region under this scenario is provided in this article. Finally, the proposed algorithm is validated by numerical simulations and shows superior control performance compared to the existing methods.
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