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- Title
Active Fault-Tolerant/Active Passive Intrusion-Tolerant H∞ Cooperative Control of Discrete NCS under the Background of Big Data.
- Authors
Jun, Wang; Xiao-li, Meng
- Abstract
For the linear discrete networked control system (NCS) which may suffer DoS attack on both sides of the controller, when the actuator has time-varying failure, the intelligent sensor unit uses wireless sensors to collect data. According to the large amount of data collected, the active fault tolerance/active passive capacity of linear discrete NCS under the discrete event-triggered communication mechanism (DETCS) is studied. The problem of cooperative controller design is discussed. Firstly, a linear discrete NCS model integrating DETCS, actuator fault, and network attack is established. Then, based on the idea of integral sliding mode control, an active fault-tolerant/attack active passive intrusion-tolerant cooperative controller is designed, and the actuator attack side network attack and sensor side network attack are extended to the state to obtain a new state vector. Then, an adaptive Kalman filter estimator (AKF) estimates the fault and attack information and then adjusts the initial fault-tolerant/intrusion-tolerant cooperative controller in real time according to the estimated information obtained by the adaptive Kalman filter estimator; finally, the MATLAB simulation example is used to verify the improvement of system performance by the designed control law and the saving of network resources by the introduction of DETCS.
- Subjects
SLIDING mode control; BIG data; INTELLIGENT sensors; SENSOR networks; KALMAN filtering; ADAPTIVE filters
- Publication
Wireless Communications & Mobile Computing, 2021, p1
- ISSN
1530-8669
- Publication type
Article
- DOI
10.1155/2021/9258411