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Annulus-event-based fault detection, isolation and estimation for multirate time-varying systems: Applications to a three-tank system

机译:基于环形事件的故障检测,多型时变系统的隔离和估计:三箱系统的应用

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In this paper, the annulus-event-based fault detection, isolation and estimation (FDIE) problem is examined for a class of multi-rate time-varying systems with sensor degradations as well as unknown but bounded disturbances and faults. A new event-triggered communication mechanism is proposed under which the measurement signal is transmitted to the observer/estimator only when the relative error satisfies certain triggering-annulus. By employing the set-membership estimation method, we design the time-varying annulus-event-based fault detection estimator (AEFDE), fault isolation estimator (AEFIE) as well as fault estimator (AEFE) with the help of recursive matrix inequalities. Based on the obtained AEFDE, AEFIE and AEFE, a residual evaluation function method is first employed to detect the fault, a novel estimation-error-function matching approach is then developed to isolate the fault, and the extended vector technique is finally adopted to estimate the fault. Especially, two subsequent optimization problems are investigated, one is to seek the minimal ellipsoidal region for the best estimation performance, and the other is to minimize the triggering-annulus so as to reduce the triggering frequency with guaranteed estimation performance. A numerical simulation example on a three-tank system is employed to show the effectiveness of FDIE scheme proposed in this paper. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文研究了基于环形事件的故障检测,隔离和估计(FDIE)问题,用于一类具有传感器劣化的多速率时变系统以及未知但有界干扰和故障。提出了一种新的事件触发的通信机制,仅当相对误差满足某些触发环时,才会在其中发送到观察者/估计器的测量信号。通过采用设定隶属估计方法,我们设计了基于时变的环形事件的故障检测估计器(AEFDE),故障隔离估计器(AEFIE)以及故障估计器(AEFE)以及递归矩阵不等式。基于所获得的AEFDE,AEFIE和AEFE,首先采用残余评估功能方法来检测故障,然后开发了一种新颖的估计误差函数匹配方法以隔离故障,并且最终采用扩展的矢量技术来估计错误。特别是,研究了两个随后的优化问题,一个是寻求最佳估计性能的最小椭圆形区域,另一个是最小化触发环,以便减少具有保证估计性能的触发频率。采用三箱系统的数值模拟示例来显示本文提出的FDIE方案的有效性。 (c)2018年elestvier有限公司保留所有权利。

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