卡尔曼滤波器
零和博弈
控制理论(社会学)
有界函数
随机控制
计算机科学
序贯博弈
动态规划
最优控制
执行机构
数学优化
趋同(经济学)
数学
博弈论
纳什均衡
控制(管理)
数理经济学
人工智能
数学分析
经济
经济增长
作者
Chengwei Wu,Xiaolei Li,Wei Pan,Jianxing Liu,Ligang Wu
标识
DOI:10.1109/tac.2020.3029342
摘要
This article investigates the zero-sum game-based secure control problem for cyber-physical systems (CPS) under the actuator false data injection attacks. The physical process is described as a linear time-invariant discrete-time model. Both the process noise and the measurement noise are addressed in the design process. An optimal Kalman filter is given to estimate the system states. The adversary and the defender are modeled as two players. Under the zero-sum game framework, an optimal infinite-horizon quadratic cost function is defined. Employing the dynamic programming approach, the optimal defending policy and the attack policy are derived. The convergence of the cost function is proved. Moreover, the critical attack probability is derived, beyond which the cost cannot be bounded. Finally, simulation results are provided to validate the proposed secure scheme.
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