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首页> 外文期刊>Soft computing: A fusion of foundations, methodologies and applications >A new robust H-infinity sliding mode observer-based state estimation and fault reconstruction for nonlinear uncertain boiler system
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A new robust H-infinity sliding mode observer-based state estimation and fault reconstruction for nonlinear uncertain boiler system

机译:非线性不确定锅炉系统的基于鲁棒H-Infinity滑动模式观察者的状态估计和故障重构

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摘要

In this paper, a new robust H-infinity sliding mode observer is proposed for state estimation and fault reconstruction in the presence of uncertainties and disturbances. In the proposed method, the well-known H-infinity concepts are used for minimizing the effects of the uncertainty on the estimation of the states and reconstruction of the faults using linear matrix inequalities (LMIs). Also LMIs are developed for providing a sufficient condition for the stability of the observer. As the case study, an industrial boiler is considered as a nonlinear system and the proposed robust observer illustrates robust performance on estimation of its states and reconstruction of its fault in the presence of uncertainties. The resulting outcomes demonstrate promising capabilities of the proposed methodology.
机译:本文提出了一种新的鲁棒H-Infinity滑动模式观察者,用于存在不确定性和干扰的状态估计和故障重建。 在所提出的方法中,众所周知的H-Infinity概念用于最小化不确定性对使用线性矩阵不等式(LMI)的估计的不确定性和重建故障的影响。 还开发了LMI,用于为观察者提供足够的条件。 如案例研究,工业锅炉被认为是非线性系统,所提出的鲁棒观察者说明了对其状态的估计和在存在不确定因素的情况下重建其故障的稳健性能。 由此产生的结果表明了提出的方法的有希望的能力。

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