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Fault tolerant sliding mode control for T-S fuzzy stochastic time-delay system via a novel sliding mode observer approach
Authors:Min Li  Ming Liu  Yingchun Zhang  Yunhai Geng
Affiliation:1. Research Center of Satellite Technology, Harbin Institute of Technology , Harbin, China;2. Research Center of Satellite Technology, Harbin Institute of Technology , Harbin, China;3. Shenzen Aerospace Dongfanghong HIT Satellite Company Ltd. , Shenzhen, China
Abstract:In this paper, a fault estimation and fault-tolerant control problem for a class of T-S fuzzy stochastic time-delay systems with actuator and sensor faults is investigated. A novel sliding mode observer is proposed, which can simultaneously estimate the system states, actuator and sensor faults with good accuracy. Based on the state and actuator fault estimation, a new sliding mode control scheme is developed, which can effectively eliminate the influence of actuator fault. Sufficient conditions for the existence of the proposed observer and fault-tolerant sliding mode controller are provided in terms of linear matrix inequality, and moreover, the reachability of the sliding mode surface can be guaranteed under the proposed control scheme. The propose sliding mode observer and fault-tolerant sliding mode controller can overcome the restrictive assumption that the input matrix of all local modes is the same. Finally, a numerical example is provided to verify the effectiveness of the proposed sliding mode observer and fault-tolerant sliding mode control technique.
Keywords:Fault estimation  fault sliding mode tolerant control  sliding mode observer  stochastic T-S fuzzy systems
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