具有未知输入的确定性和随机系统的检测时间

Marwa Houiji, R. Hamdaoui, M. Aoun
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引用次数: 2

摘要

研究了基于未知输入观测器(UIO)的执行器故障检测与诊断。所提出的UIO设计通过将干扰效应与故障效应解耦来保证鲁棒残差的产生。故障与不确定信号和扰动对残差的影响的区分,使确定性系统的故障检测时间最小化。然后将这些结果推广到具有未知干扰和噪声的随机线性系统的一般情况下,使用最优观测器。在航空模型上进行了仿真,以说明理论的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection time for deterministic and stochastic systems with unknown inputs
This paper investigates the detection and diagnosis of actuator faults by using an Unknown Input Observer (UIO).The proposed UIO design guarantees robust residual generation through decoupling the disturbances effects from the faults ones. The discrimination between the faults and the effects of uncertain signals and perturbations on the residues minimizes the duration of fault detection for deterministic systems. Then these results were extended to the general case of stochastic linear systems by using an optimal observers for systems with unknown disturbances and noise. A simulation is done on an aeronautic model to illustrate the theoretical development.
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