Diagnosis of time-delay fractional systems using observer-based methods

IF 0.2 Q4 MATHEMATICS, APPLIED
Halima Atitallah, A. Aribi, M. Aoun
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引用次数: 2

Abstract

In this paper, two model-based methods are considered for the diagnosis of time-delay fractional systems. Time-delay fractional Luenberger observer without unknown input and time-delay fractional unknown input observer are developed and used for fault detection and isolation. A single observer scheme is needed for fault detection and a bank of generalized (respectively dedicated) observers is required for fault isolation. A theoretical study investigating the convergence condition for each observer-based method in terms of matrix inequalities is presented. Residual sensitivities to faults and to disturbances are studied. Time-delay fractional unknown input observer parameters are computed to obtain structured residuals. This observer ensures unknown input decoupling from the state which results residual insensitive to unknown inputs. Two numerical examples to validate the efficiency of the proposed approaches are given.
基于观测器的时滞分数系统诊断方法
本文考虑了两种基于模型的时滞分数系统诊断方法。开发了无未知输入的时滞分数阶Luenberger观测器和用于故障检测和隔离的时滞分数未知输入观测器。故障检测需要单个观测器方案,故障隔离需要一组广义(分别专用)观测器。从矩阵不等式的角度研究了每种基于观测器的方法的收敛条件。研究了剩余灵敏度对故障和扰动的影响。计算时间延迟分数未知输入观测器参数以获得结构化残差。该观测器确保未知输入与状态解耦,从而导致对未知输入的残差不敏感。给出了两个数值算例来验证所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
16
期刊介绍: IJDSDE is a quarterly international journal that publishes original research papers of high quality in all areas related to dynamical systems and differential equations and their applications in biology, economics, engineering, physics, and other related areas of science. Manuscripts concerned with the development and application innovative mathematical tools and methods from dynamical systems and differential equations, are encouraged.
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