纳什均衡
李普希茨连续性
趋同(经济学)
计算机科学
鉴定(生物学)
钥匙(锁)
分布式算法
数学优化
理论(学习稳定性)
单调多边形
数学
博弈论
标识符
职位(财务)
分布式计算
最佳反应
收敛速度
解决方案概念
一般化
代数数
完整信息
协调博弈
作者
Zhi Feng,Zhexin Shi,Xiwang Dong,Guoqiang Hu,Jinhu Lv
标识
DOI:10.1109/jas.2025.125486
摘要
An attack-resilient distributed Nash equilibrium (NE) seeking problem is addressed for noncooperative games of networked systems under malicious cyber-attacks, i.e., false data injection (FDI) attacks. Different from many existing distributed NE seeking works, it is practical and challenging to get resilient adaptively distributed NE seeking under unknown and unbounded FDI attacks. An attack-resilient NE seeking algorithm that is distributed (i.e., independent of global information on the graph's algebraic connectivity, Lipschitz and monotone constants of pseudo-gradients, or number of players), is presented by means of incorporating the consensus-based gradient play with a distributed attack identifier so as to achieve simultaneous NE seeking and attack identification asymptotically. Another key characteristic is that FDI attacks are allowed to be unknown and unbounded. By exploiting nonsmooth analysis and stability theory, the global asymptotic convergence of the developed algorithm to the NE is ensured. Moreover, we extend this design to further consider the attack-resilient NE seeking of double-integrator players. Lastly, numerical simulation and practical experiment results are presented to validate the developed algorithms' effectiveness.
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