International Journal of Control, Automation and Systems 2017; 15(2): 537-546
Published online February 11, 2017
https://doi.org/10.1007/s12555-015-0307-5
© The International Journal of Control, Automation, and Systems
This paper discusses the problem of fault-tolerant control against actuator fault, derives the time spent at each steps in fault diagnosis which is called as the time delay due to fault diagnosis and quantitatively analyzes its effect on the faulty system’s performance. A fault diagnosis algorithm is first proposed. The proposed fault tolerant controller is designed to guarantees that all signals in the closed-loop system are semi-globally uniformly ultimately bounded, where the controller singularity is avoided without projection algorithm. What’s more, the analytical expression of the time delay is derived strictly. Further, the quantitative analysis of system performance which is degraded by the time delay is developed, and the conditions that the magnitudes of the faults should be satisfied such that the faulty system controlled by the normal controller remains bounded even stable during the time delay are derived. In addition, the corresponding solution to the adverse effect of the time delay is proposed. Finally, an experimental test shows that the proposed control algorithm has a very reliable efficiency."
Keywords Fault-tolerant control, fault diagnosis, fault estimation, performance analysis
International Journal of Control, Automation and Systems 2017; 15(2): 537-546
Published online April 1, 2017 https://doi.org/10.1007/s12555-015-0307-5
Copyright © The International Journal of Control, Automation, and Systems.
Qikun Shen, Bin Jiang*, and Peng Shi
Nanjing University of Aeronautics and Astronautics
This paper discusses the problem of fault-tolerant control against actuator fault, derives the time spent at each steps in fault diagnosis which is called as the time delay due to fault diagnosis and quantitatively analyzes its effect on the faulty system’s performance. A fault diagnosis algorithm is first proposed. The proposed fault tolerant controller is designed to guarantees that all signals in the closed-loop system are semi-globally uniformly ultimately bounded, where the controller singularity is avoided without projection algorithm. What’s more, the analytical expression of the time delay is derived strictly. Further, the quantitative analysis of system performance which is degraded by the time delay is developed, and the conditions that the magnitudes of the faults should be satisfied such that the faulty system controlled by the normal controller remains bounded even stable during the time delay are derived. In addition, the corresponding solution to the adverse effect of the time delay is proposed. Finally, an experimental test shows that the proposed control algorithm has a very reliable efficiency."
Keywords: Fault-tolerant control, fault diagnosis, fault estimation, performance analysis
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