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Fault detection for discrete-time switched systems with intermittent measurements

机译:具有间歇测量的离散时间切换系统的故障检测

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This article deals with the problem of fault detection for discrete-time switched systems with intermittent measurements. The stochastic variable is assumed to be a Bernoulli distributed white sequence appearing in measured output. Attention is focused on designing a fault detection filter such that, for any control input and unknown inputs, the estimation error between the residual and the fault is minimised in the sense of H -norm. By employing a Lyapunov-like function and average dwell-time technique, a sufficient condition for the existence of such a filter is exploited in terms of certain linear matrix inequality. Finally, an example is provided to illustrate the effectiveness of the proposed approach.
机译:本文涉及具有间歇测量的离散时间切换系统的故障检测问题。假定随机变量是出现在测量输出中的伯努利分布的白色序列。注意集中在设计故障检测滤波器上,使得对于任何控制输入和未知输入,在H范数的意义上最小化残余和故障之间的估计误差。通过采用类Lyapunov函数和平均驻留时间技术,就某些线性矩阵不等式而言,充分利用了存在这种滤波器的条件。最后,提供了一个示例来说明所提出方法的有效性。

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