Robust satisfactory fault-tolerant control of uncertain linear discrete-time systems: an LMI approach |
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Authors: | Dengfeng Zhang Zhiquan Wang Shousong Hu |
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Affiliation: | 1. School of Mechanical Engineering, Nanjing University of Science and Technology , Nanjing, 210094, PR China zhangdf73@yahoo.com;3. School of Automation, Nanjing University of Science and Technology , Nanjing, 210094, PR China;4. College of Automation Engineering, Nanjing University of Aeronautics and Astronautics , Nanjing, 210016, PR China |
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Abstract: | Fault-tolerant control is an important issue in practical systems. Based on satisfactory control and estimation theory, a passive fault-tolerant control strategy is proposed for a class of uncertain linear discrete-time systems in this article. Manipulating linear matrix inequality (LMI) technique, robust fault-tolerant state-feedback controllers are designed which take the possible actuator faults and sensor faults into consideration, respectively. The closed-loop systems are guaranteed by the designed controllers to meet the required constraints on regional pole index φ(q, r), steady-state variance matrix X index and control-cost function V 2(u) index simultaneously. Then, whether possible faults occur or not, the closed-loop systems would maintain the three desirable performance indices accordingly. Meanwhile, the consistency of the performance indices mentioned earlier is also discussed for fault-tolerant control. |
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Keywords: | Consistency Fault tolerance LMI Satisfactory control and estimation Uncertain linear discrete-time systems |
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