Robust Fault Detection based on Zonotopic Observers for Linear Parameter Varying Systems

R. Lamouchi, M. Amairi, T. Raïssi, M. Aoun
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引用次数: 1

Abstract

In this paper, zonotopic fault detection methodology is proposed for a class of discrete-time Linear Parameter Varying (LPV) systems with sensor faults. The disturbances and measurement noise are assumed to be unknown but bounded by zonotope. First, a fault detection observer is designed based on L∞ performance to attenuate the effects of the uncertainties and to improve the accuracy of the proposed residual framers. Then, the fault sensitivity is taken into account by measuring $\mathcal{H}\_$ performance and zonotopic residual evaluation is presented. Finally, the effectiveness of the proposed method is demonstrated by a numerical example.
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基于分区观测器的线性变参数系统鲁棒故障检测
针对一类具有传感器故障的离散线性变参数系统,提出了分区故障检测方法。假设扰动和测量噪声是未知的,但受带体的限制。首先,设计了基于L∞性能的故障检测观测器,以减弱不确定性的影响,提高残差帧的精度;然后,通过测量$\mathcal{H}\_$性能来考虑故障灵敏度,并提出分区残差评价。最后,通过数值算例验证了该方法的有效性。
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