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Robust fault detection of singular LPV systems with multiple time-varying delays

机译:具有多个时变时滞的奇异LpV系统的鲁棒故障检测

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摘要

In this paper, the robust fault detection problem for LPV singular delayed systems in the presence of disturbances and actuator faults is considered. For both disturbance decoupling and actuator fault detection, an unknown input observer (UIO) is proposed. The aim is to compute a residual signal which has minimum sensitivity to disturbances while having maximum sensitivity to faults. Robustness to unknown inputs is formulated in the sense of the H-infinity-norm by means of the bounded real lemma (BRL) for LPV delayed systems. In order to formulate fault sensitivity conditions, a reference model which characterizes the ideal residual behavior in a faulty situation is considered. The residual error with respect to this reference model is computed. Then, the maximization of the residual fault effect is converted to minimization of its effect on the residual error and is addressed by using the BRL. The compromise between the unknown input effect and the fault effect on the residual is translated into a multi-objective optimization problem with some LMI constraints. In order to show the efficiency and applicability of the proposed method, a part of the Barcelona sewer system is considered.
机译:本文考虑了存在扰动和执行器故障的LPV奇异时滞系统的鲁棒故障检测问题。对于干扰解耦和执行器故障检测,都提出了一个未知的输入观测器(UIO)。目的是计算对干扰具有最小敏感性而对故障具有最大敏感性的残留信号。通过LPV时滞系统的有界实引理(BRL),在H-无穷范数的意义上确定了对未知输入的鲁棒性。为了制定故障敏感性条件,考虑了一个表征故障情况下理想残余行为的参考模型。计算该参考模型的残留误差。然后,将残余故障效应的最大化转换为对残余误差的影响的最小化,并通过使用BRL解决。未知输入效应和故障效应对残差之间的折衷被转化为具有一些LMI约束的多目标优化问题。为了显示该方法的效率和适用性,考虑了巴塞罗那下水道系统的一部分。

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