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Analysis of the stochastic stability for fault tolerant control systems

机译:容错控制系统的随机稳定性分析

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The analysis of the stochastic stability of fault tolerant control systems (FTCS) has been considered using Lyapunov function approach. A new dynamical model is developed to overcome the limitations of the existing results. In this model, two independent failure processes with Markovian transition probabilities are considered: one for plant components and the other for control actuators. Moreover, the proposed model takes into consideration failures in control actuators with internal dynamics. It is shown that the exponential stability in the mean square is sufficient for the almost sure asymptotic stability, and a necessary and sufficient condition for the exponential stability in the mean square for linear FTCS is derived. Some previously known results are shown to be special cases of these new results. A numerical example is included to demonstrate the theoretical analysis.
机译:使用李雅普诺夫函数法已经考虑了对容错控制系统(FTCS)的随机稳定性的分析。开发了一种新的动力学模型来克服现有结果的局限性。在此模型中,考虑了两个具有马尔可夫转移概率的独立故障过程:一个用于工厂组件,另一个用于控制执行器。此外,提出的模型考虑了具有内部动力学的控制执行器的故障。结果表明,均方的指数稳定性足以满足几乎确定的渐近稳定性,并推导了线性FTCS均方指数稳定性的充要条件。一些先前已知的结果显示为这些新结果的特殊情况。包括一个数值例子来说明理论分析。

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