执行器故障和连续DoS攻击下网络化采样数据系统的基于耗散性的输出反馈控制

Dissipativity-Based Output Feedback Control of Networked Sampled-Data Systems Under Actuator Failures and Consecutive DoS Attacks

IEEE Transactions on Cybernetics · 2026
被引 0
ABS 3

中文导读

研究了网络化采样数据系统在执行器故障和连续拒绝服务攻击下的输出反馈控制问题,通过建立数学模型和设计控制器,保证了系统的随机稳定性和严格耗散性。

Abstract

This article investigates the problem of dissipativity-based output feedback control for networked sampled-data systems under actuator failures and consecutive denial-of-service (DoS) attacks. Two distinct sampling periods are considered, each governed by constant occurrence probabilities following a Bernoulli distribution. The communication channel from the sampler to the controller is vulnerable to malicious DoS attacks, with both the maximum number of consecutive occurrences and the attacking rate taken into account. On this basis, a mathematical model is built to characterize the interval between two sequential update instants at the controller side, whose randomness is captured by the probabilistic distributions of the stochastic sampling and consecutive attacks. By developing a sampled-data output feedback controller, an equivalent discrete-time closed-loop system is constructed. Then, two alternative control synthesis conditions are suggested for solving the controller, which can ensure the stochastic stability and strict dissipativity of the system. Finally, simulations are performed on two examples to illustrate the effectiveness of the proposed method.

控制理论网络控制系统采样数据系统网络安全