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Tube-based Robust Fault Estimation Integrating Unknown Inputs Decoupling and Set-membership Approach

机译:集成未知输入解耦和集合成员方法的基于管的鲁棒故障估计

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This paper proposes a novel tube-based robust fault estimation (FE) method for dynamic systems by decoupling unknown inputs and using set-membership approach. FE problems are considered in a novel prospective in this paper. Instead of estimating a specific fault value like most of FE methods, in order to guarantee the FE robustness, we compute a fault tube to contain the real fault at each time instant under an assumption that the system uncertainties (i.e., modeling errors, process disturbances and measurement noises) are bounded. Theoretically, any trajectory in the fault tube can be used as an estimation of the real fault. The size of the tube indicates the performance of FE. That is, the smaller the tube is, the better the obtained FE results are. At the end of this paper, a numerical example is used to show the effectiveness of the proposed robust FE approach.
机译:本文提出了一种新颖的基于管的鲁棒故障估计(FE)的动态系统方法,该方法通过去耦未知输入并使用集成员方法进行。本文在新颖的前景中考虑了有限元问题。为了保证有限元的鲁棒性,我们没有像大多数有限元方法那样估计特定的故障值,而是在假设系统不确定性(即建模误差,过程扰动)的前提下,计算了一个故障管以在每个时刻包含实际故障。和测量噪声)。从理论上讲,故障管中的任何轨迹都可以用作实际故障的估计。管子的尺寸表示FE的性能。即,管子越小,获得的有限元结果越好。在本文的最后,通过一个数值例子来说明所提出的鲁棒有限元方法的有效性。

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