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Novel robust fault diagnosis method for flight control systems

机译:飞行控制系统的鲁棒故障诊断新方法

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摘要

A novel robust fault diagnosis scheme, which possesses fault estimate capability as well as fault diagnosis property, is proposed. The scheme is developed based on a suitable combination of the adaptive multiple model (AMM) and unknown input observer (UIO). The main idea of the proposed scheme stems from the fact that the actuator Lock-in-Place fault is unknown (when and where the actuator gets locked are unknown), and multiple models are used to describe different fault scenarios, then a bank of unknown input observers are designed to implement the disturbance de-coupling. According to Lyapunov theory, proof of the robustness of the newly developed scheme in the presence of faults and disturbances is derived. Numerical simulation results on an aircraft example show satisfactory performance of the proposed algorithm.
机译:提出了一种既具有故障估计能力又具有故障诊断特性的鲁棒故障诊断方案。该方案是基于自适应多重模型(AMM)和未知输入观察者(UIO)的适当组合而开发的。提议方案的主要思想源于以下事实:执行器“就地锁定”故障未知(何时以及执行器被锁定的位置未知),并且使用多个模型来描述不同的故障情况,然后是一堆未知的故障输入观察器旨在实现干扰去耦。根据李雅普诺夫理论,推导了新开发方案在存在故障和干扰的情况下的鲁棒性证明。在飞机实例上的数值仿真结果表明,该算法具有令人满意的性能。

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