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Intermittent fault detection for discrete- time linear stochastic systems with time delay

机译:具有时间延迟的离散时间线性随机系统的间歇故障检测

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This study investigates the problem of intermittent fault (IF) detection for a class of discrete-time linear stochastic systems (LSSs) with time delay. The IF has the characteristics of intermittency, randomness and uncertainty, and the time delay is constant. By using the lifting method and a reduced-order observer, the truncated residual over a sliding-time window is presented for the IF detection of discrete-time LSSs with time delay. Two hypothesis tests are proposed to set the thresholds for detecting the appearing (disappearing) time of IF. Moreover, the magnitude of IF is estimated and the detectability of IF is analysed based on the analysis of statistical characteristics of the truncated residual. The efficacy and practicality of the derived detection scheme are verified via a numerical simulation of the Williams-Otto process.
机译:本研究研究了一类具有时间延迟的离散时间线性随机系统(LSS)的间歇故障(IF)检测问题。中频具有间歇性,随机性和不确定性的特征,并且时间延迟是恒定的。通过使用提升方法和降阶观测器,提出了滑动时间窗上的截断残差,用于具有时间延迟的离散时间LSS的IF检测。提出了两个假设检验来设置检测IF出现(消失)时间的阈值。此外,基于截断残差的统计特性分析,估计了IF的大小并分析了IF的可检测性。通过威廉姆斯-奥托过程的数值模拟,验证了导出检测方案的有效性和实用性。

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