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Diagnosis of Actuator Lock-in-place for Flight Control Systems

机译:飞行控制系统执行器锁定到位的诊断

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In this paper, the diagnosis problem of actuator lock-in-place is studied. Based on multiple-model structure, an adaptive unknown input observer (UIO) approach is developed to detect and isolate aircraft actuator faults. Existing multiple-model FDI (fault detection and isolation) approaches assumed that the model for each fault case is known a priori. However, in the cases of lock-in-place, the locked position is unknown and varies in the range of maximum deflections. Thus, there exists an infinite family of models which is impossible to model exhaustively. To solve this problem, we developed an adaptive approach to estimate the unknown parameters on-line. The proposed adaptive algorithms guarantee that both the residual signals and the estimation errors of the unknown parameters converge exponentially when a model matches the system. To the best of our knowledge, this is the first adaptive UIO presented
机译:本文研究了执行器锁定就位的诊断问题。基于多模型结构,开发了一种自适应未知输入观测器(UIO)方法来检测和隔离飞机执行器故障。现有的多模型FDI(故障检测和隔离)方法假定每种故障情况的模型都是先验的。但是,在就地锁定的情况下,锁定位置是未知的,并且在最大挠度范围内变化。因此,存在一个无限的模型族,无法穷尽地进行建模。为了解决这个问题,我们开发了一种自适应方法来在线估计未知参数。所提出的自适应算法可确保模型匹配系统时,残差信号和未知参数的估计误差均呈指数收敛。据我们所知,这是第一个自适应UIO。

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