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A New Interval Observer Design Method with Application to Fault Detection

机译:一种新的间隔观察者设计方法,应用于故障检测

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摘要

This chapter proposes a novel interval observer for continuous-time linear systems with unknown disturbance. Based on the stability criterion of a Metzler matrix, the interval observer design problem is converted into a series of nonlinear inequalities. To attenuate the effect of unknown disturbance on estimation error, an interval observer design method based on constrained optimization is proposed. The proposed interval observer is able to estimate upper and lower bounds of the states in the general assumption that disturbance is unknown but bounded. Thus it is particularly suitable for fault detection for uncertain linear systems. Therefore, the proposed method is further used to generate dynamic thresholds to achieve fault detection. Finally, a flight control system is simulated to demonstrate the effectiveness of the proposed method.
机译:本章提出了一种新的间隔观测器,用于具有未知干扰的连续时间线性系统。基于Metzler矩阵的稳定性标准,间隔观察者设计问题被转换为一系列非线性不等式。为了衰减未知干扰对估计误差的影响,提出了一种基于约束优化的间隔观测器设计方法。所提出的间隔观察者能够在扰乱未知但有界界限的一般假设中估计各州的上限和下限。因此,它特别适用于不确定线性系统的故障检测。因此,所提出的方法还用于产生动态阈值以实现故障检测。最后,模拟飞行控制系统以证明所提出的方法的有效性。

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