服务拒绝攻击
控制器(灌溉)
模式(计算机接口)
上下界
计算机科学
信息物理系统
控制理论(社会学)
理论(学习稳定性)
样品(材料)
国家(计算机科学)
滑模控制
服务(商务)
计算机安全
控制(管理)
数学
非线性系统
算法
物理
机器学习
数学分析
经济
万维网
人工智能
操作系统
经济
互联网
热力学
生物
量子力学
农学
作者
Renjie Ma,Peng Shi,Ligang Wu
标识
DOI:10.1109/tcyb.2020.2975089
摘要
In this article, we investigate the problem of the dissipativity-based resilient sliding-mode control design of cyber-physical systems with the occurrence of denial-of-service (DoS) attacks. First, we analyze the physical layer operating without DoS attacks to ensure the input-to-state practical stability (ISpS). The upper bound of the sample-data rate in this situation can be identified synchronously. Next, for systems under DoS attacks, we present the following results: 1) combined with reasonable hypotheses of DoS attacks, the ISpS as well as dissipativity of the underlying system can be guaranteed; 2) the upper bound of the sample-data rate in the presence of DoS attacks can be derived; and 3) the sliding-mode controller is synthesized to achieve the desired goals in a finite time. Finally, two examples are given to illustrate the applicability of our theoretical derivation.
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