Event-Triggered Fault Estimation and Fault Tolerance for Cyber-Physical Systems with False Data Injection Attacks

Author:

Li Yunji1,Zhou Wenzhuo1,Wu Yajun23

Affiliation:

1. Jiangsu Provincial Sensor Network Engineering Technology Research Center, Wuxi Institute of Technology, Wuxi 214121, China

2. Anhui Institute of Optics and Fine Mechanics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China

3. Science Island Branch, Graduate School of University of Science and Technology of China, Hefei 230026, China

Abstract

This paper investigates an event-triggered framework for addressing fault estimation and fault tolerance issues in discrete-time cyber-physical systems (CPSs) with partial state saturations and random false data injection attacks (FDIAs). A stochastic variable is introduced to characterize the random FDIAs and to establish the corresponding model. A reduced-order fault estimator and an event condition are co-derived to reconstruct system states and actuator faults. The proposed event-triggered transmission scheme helps reduce network utilization in the sensor-to-estimator channel. A sufficient condition for the proposed event-triggered estimator is derived, which minimizes state and fault estimation errors even when the controlled plants are subject to exogenous disturbances, fault signals, and random attacks. Furthermore, a fault-tolerant compensation controller is proposed using the estimated states and faults, ensuring that the considered systems achieve mean-squared stability. Finally, a DC motor platform is developed to further demonstrate the effectiveness of the designed estimator-based fault-tolerant controller.

Funder

Key University Science Research Project of Jiangsu Province

Publisher

MDPI AG

Subject

Control and Optimization,Control and Systems Engineering

Reference34 articles.

1. Recursive Total Principle Component Regression Based Fault Detection and Its Application to Vehicular Cyber-Physical Systems;Jiang;IEEE Trans. Ind. Inform.,2018

2. Performance Supervised Plant-Wide Process Monitoring in Industry 4.0: A Roadmap;Jiang;IEEE Open J. Ind. Electron. Soc.,2021

3. A Review on Soft Sensors for Monitoring, Control, and Optimization of Industrial Processes;Jiang;IEEE Sens. J.,2021

4. Fault Reconstruction and Fault-Tolerant Control via Learning Observers in Takagi–Sugeno Fuzzy Descriptor Systems With Time Delays;Jia;IEEE Trans. Ind. Electron.,2015

5. Data-Driven Monitoring and Safety Control of Industrial Cyber-Physical Systems: Basics and Beyond;Jiang;IEEE Access,2018

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