基于鲁棒离散解耦状态多观测器的扰动非线性系统故障诊断

Sondess Mejdi, Anis Messaoud, Mouhib Allaoui, R. Abdennour
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引用次数: 0

摘要

针对存在干扰的非线性系统,基于离散解耦合状态多模型,设计了鲁棒未知输入多服务器。诊断是在执行器和传感器故障的情况下进行的。首先,研究了对干扰的鲁棒检测。然后,设计了一个新的umo库,利用生成的结构化残差完成隔离任务。利用带等式约束的线性矩阵不等式,给出了计算解耦状态多观测器增益的充分条件。仿真结果证明了所提故障检测与隔离方案的有效性,并表明所提故障检测与隔离技术适用于受干扰的多输入多输出非线性系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault diagnosis for disturbed nonlinear systems based on robust discrete uncoupled state multiobservers
In this paper, robust Unknown Input MultiOb-servers (UIMOs) are designed, in the presence of disturbances, for nonlinear systems based on a discrete uncoupled state mul-timodel. The diagnosis is conducted in the presence of actuator and sensor faults. Firstly, a robust detection against disturbances is investigated. Then, a new bank of UIMOs is designed to accomplish the isolation task using generated structured residuals. Sufficient conditions are developed and given in terms of linear matrix inequalities with equality constraints to compute the uncoupled state multiobserver gains. The simulation results prove the efficiency of the proposed scheme of fault detection and isolation and show that the proposed fault detection and isolation technique is suitable for the disturbed Multiple-Input Multiple-Output (MIMO) nonlinear systems.
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