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Simultaneous Finite-Time Control and Fault Detection for Singular Markovian Jump Delay Systems with Average Dwell Time Constraint

机译:具有平均停留时间约束的奇异马尔可夫跳跃时滞系统的同时有限时间控制和故障检测

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摘要

Finite-time control and fault detection are treated simultaneously as a single problem for a class of continuous-time singular Markovian jump delay systems. To develop the objectives for both control and detection, mode-dependent fault detection filters and dynamic feedback controllers were designed for a certain set of performance indices. Based on the average dwell time approach and using some novel integral inequalities, new sufficient conditions for the presence of a fault detection/controller unit are presented as a set of linear matrix inequalities. This problem is formulated as a finite-time H-infinity optimization problem, and both the stochastic finite-time stability and fault detection filter are analyzed, employing a switching control approach. Finally, a numerical example is provided to illustrate the effectiveness of the proposed method.
机译:对于一类连续时间奇异马尔可夫跳跃延迟系统,有限时间控制和故障检测被同时视为一个问题。为了制定控制和检测的目标,针对一组性能指标设计了与模式有关的故障检测滤波器和动态反馈控制器。基于平均停留时间方法并使用一些新颖的积分不等式,将故障检测/控制器单元的存在的新的充分条件表示为一组线性矩阵不等式。将该问题表述为有限时间H无限优化问题,并采用切换控制方法对随机有限时间稳定性和故障检测滤波器进行了分析。最后,通过数值算例说明了该方法的有效性。

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