Zhang Tian-Yu, Ye Dan
IEEE Trans Cybern. 2020 Jul;50(7):3094-3103. doi: 10.1109/TCYB.2020.2973303. Epub 2020 Feb 27.
In this article, the security problem in cyber-physical systems (CPSs) against denial-of-service (DoS) attacks is studied from the perspectives of the designs of communication topology and distributed controller. To resist the DoS attacks, a new construction algorithm of the k -connected communication topology is developed based on the proposed necessary and sufficient criteria of the k -connected graph. Furthermore, combined with the k -connected topology, a distributed event-triggered controller is designed to guarantee the consensus of CPSs under mode-switching DoS (MSDoS) attacks. Different from the existing distributed control schemes, a new technology, that is, the extended Laplacian matrix method, is combined to design the distributed controller independent on the knowledge and the dwell time of DoS attack modes. Finally, the simulation example illustrates the superiority and effectiveness of the proposed construction algorithm and a distributed control scheme.
本文从通信拓扑结构和分布式控制器设计的角度,研究了信息物理系统(CPS)中针对拒绝服务(DoS)攻击的安全问题。为抵御DoS攻击,基于所提出的k连通图的充要条件,开发了一种新的k连通通信拓扑结构构建算法。此外,结合k连通拓扑结构,设计了一种分布式事件触发控制器,以保证在模式切换DoS(MSDoS)攻击下CPS的一致性。与现有的分布式控制方案不同,结合了一种新技术,即扩展拉普拉斯矩阵方法,来设计独立于DoS攻击模式的知识和驻留时间的分布式控制器。最后,仿真示例说明了所提出的构建算法和分布式控制方案的优越性和有效性。