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Fault-tolerant control for T-S fuzzy systems with actuator faults: A fault partitioning approach

机译:具有执行器故障的T-S模糊系统的容错控制:故障分区方法

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This paper proposes a new approach to investigate the fault-tolerant control problem for Takagi-Sugeno fuzzy systems with actuator faults. The fault is considered to be time-varying and has a lower and upper bounds. By using the fault partitioning idea, a new fuzzy fault-tolerant control model is formulated, in which the actuator faults has several fault modes with fault parameters, and the switching among them is governed by a finite-state Markov chain with partly unknown transition probabilities. Then a fault-partitioning-dependent stability criterion is derived by combining the stability theory of Markov jump systems and the convex combination technique. The fault tolerant controller is designed in terms of linear matrix inequalities, which guarantees the faulty system is stochastically stable. A numerical example is given to illustrate the effectiveness of the proposed methods.
机译:本文提出了一种新方法来研究具有执行器故障的Takagi-Sugeno模糊系统的容错控制问题。故障被认为是时变的,并且具有下限和上限。通过使用故障分区思路,配制了一个新的模糊容错控制模型,其中执行器故障有几种故障参数的故障模式,其中切换由有限状态马尔可夫链控制,其中包括部分未知的过渡概率。然后通过组合马尔可夫跳跃系统和凸组合技术的稳定性理论来导出故障划分依赖性稳定性标准。故障耐受控制器在线性矩阵不等式设计,保证故障系统是随机稳定的。给出了数值例子来说明所提出的方法的有效性。

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