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Fault estimation for a class of non-linear systems via full-column-rank state variable substitution

机译:通过全列秩状态变量替换估计一类非线性系统的故障

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摘要

The problem of fault estimation for a class of non-linear systems with Lipschitzian non-linearities and faults is studied. In most of the existing fault estimation methods, the coefficient matrix of the fault vector is required to be full column rank, which leads to that the corresponding estimation approaches are conservative and unsuitable commonly for systems with multiple faults or/and subject to disturbances. In this study, this restriction is relaxed. A novel fault estimation method is proposed, where a full-column-rank state variable substitution is introduced so as to meet the requirement of fault estimation. The designed estimation observer guarantees the asymptotic stability of the overall error system with a prescribed H∞ performance. The states and faults can be estimated with good accuracy simultaneously. Then, the proposed estimation approach is further extended to solve the problem of fault estimation for non-linear systems with multiple faults or/and subject to disturbances. Finally, numerical examples illustrate the effectiveness and advantages of the proposed method.
机译:研究了一类具有Lipschitzian非线性和故障的非线性系统的故障估计问题。在大多数现有的故障估计方法中,要求故障向量的系数矩阵为全列秩,这导致相应的估计方法是保守的并且不适用于具有多个故障或/和易受干扰的系统。在这项研究中,这种限制是放松的。提出了一种新的故障估计方法,该方法引入了全列秩状态变量替换以满足故障估计的要求。设计的估计观测器以规定的H∞性能保证了整个误差系统的渐近稳定性。可以同时准确估计状态和故障。然后,所提出的估计方法被进一步扩展以解决具有多个故障或/和受干扰的非线性系统的故障估计问题。最后,数值算例说明了该方法的有效性和优势。

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