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Reliable Control for Uncertain Singular Systems with Randomly Occurring Time-Varying Delay and Actuator Faults

机译:具有随机发生的时变时滞和执行器故障的不确定奇异系统的可靠控制

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The problem of reliable control is investigated for uncertain continuous singular systems with randomly occurring time-varying delay and actuator faults in this work. The delay occurs in a random way, and such randomly occurring delay obeys certain mutually uncorrelated Bernoulli distributed white noise sequences. The uncertainties under consideration are norm-bounded, and may vary with time. Then, with the constructed Lyapunov function, a sufficient condition is given to ensure the unforced system is mean-square exponentially stable and the corresponding controller can be derived from such condition, and the actuator faults problem is guaranteed. A numerical example is provided to show the effectiveness of the methods.
机译:研究了不确定随机连续系统的随机时变时滞和执行器故障的可靠控制问题。该延迟以随机的方式发生,并且这种随机发生的延迟服从某些相互不相关的伯努利分布的白噪声序列。所考虑的不确定性是有界限的,并且可能随时间而变化。然后,利用构造的Lyapunov函数,给出了充分的条件以确保无力系统是均方指数稳定的,并且可以从该条件导出相应的控制器,从而确保了执行器故障问题。数值例子表明了该方法的有效性。

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