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Fault-tolerant Control for Nonlinear Systems with Multiple Intermittent Faults and Time-varying Delays

机译:具有多种间歇性故障的非线性系统的容错控制和时变延迟

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摘要

This study investigates a new fault-tolerant control method for uncertain nonlinear systems with multiple intermittent faults and time-varying delays. The considered intermittent faults appear in sensors and actuators simultaneously. A Markov chain is used to describe the random occurrence and disappearance of intermittent faults. The uncertain nonlinear system with intermittent faults is augmented as a Markovian jump system. By using H-infinity control theory and linear matrix inequality (LMI), we design fault tolerant controllers to make augmented Markovian jump system work steadily. Several sufficient conditions for stochastic stability with given H-infinity performance index and the existence of output-feedback controllers are derived. The effectiveness of the proposed fault-tolerant method is validated by a continuously stirred tank reactor (CSTR).
机译:本研究研究了具有多个间歇性故障的不确定非线性系统的新容错控制方法和时变延迟。 考虑的间歇性故障同时出现在传感器和执行器中。 马尔可夫链用于描述间歇性故障的随机发生和消失。 具有间歇性故障的不确定非线性系统被添加为Markovian跳转系统。 通过使用H-Infinity控制理论和线性矩阵不等式(LMI),我们设计容错控制器以使增强的Markovian跳转系统工作稳步。 推导出几种充分的随机稳定性条件,具有给定的H-Infinity性能指标和输出反馈控制器的存在。 所提出的容错方法的有效性由连续搅拌的釜反应器(CSTR)验证。

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