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Zonotopic Unknown Input Observer of Discrete-time Descriptor Systems for State Estimation and Robust Fault Detection ?

机译:离散描述符系统的Zonotopic未知输入观察器,用于状态估计和鲁棒故障检测

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This paper studies a set-based unknown input observer based on zonotopes for discrete-time descriptor systems affected by uncertainties with application to state estimation and robust fault detection. In this paper, two types of uncertainties are considered: (i) disturbances and noise both bounded by zonotopes; (ii) unknown inputs that can be decoupled. In terms of different applications, the observer gain for state estimation is designed to minimize the effects of unknown-but-bounded disturbances and noise as well as state estimation errors. On the other hand, for robust fault detection, in addition to attenuating uncertainties, the designed observer gain is also expected to be sensitive to faults. To achieve this goal, we propose an iterative algorithm to design the fault detection gain. Finally, some illustrative results in an application example show the effectiveness of the proposed algorithms.
机译:本文针对不确定性影响的离散时间描述符系统,研究了一种基于分区的基于集合的未知输入观测器,并将其应用于状态估计和鲁棒故障检测。在本文中,考虑了两种类型的不确定性:(i)干扰和噪声都受区域同位素限制。 (ii)可以解耦的未知输入。在不同的应用中,用于状态估计的观察者增益旨在最大程度地减少未知但有界的干扰和噪声以及状态估计误差的影响。另一方面,对于鲁棒的故障检测,除了减弱不确定性外,还预期设计的观察者增益对故障敏感。为了实现这一目标,我们提出了一种迭代算法来设计故障检测增益。最后,在一个应用实例中的一些说明性结果表明了所提出算法的有效性。

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