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Centralized Fault Detection of Complex Uncertain Hybrid Systems

机译:复杂不确定混合系统的集中故障检测

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This paper presents a centralized fault detection scheme for hybrid systems with nonlinear uncertain continuous dynamics and measurement noise. The scheme features a modular observer based on a modified hybrid automaton framework, that models each subsystem individually and the whole system as a composition of these models. The fault detection scheme employs a filtering approach, that attenuates the effect of measurement noise and allows tighter detection thresholds, and also an algorithm that handles autonomous mode transitions. As a result, the proposed approach can detect both discrete and parametric faults and guarantees no false alarms under all circumstances. Simulation results from a two-tank hybrid system example illustrate the effectiveness of the proposed scheme.
机译:本文介绍了具有非线性不确定连续动态和测量噪声的混合系统的集中故障检测方案。该方案具有基于修改的混合自动机构框架的模块化观察者,该框架将每个子系统单独和整个系统作为这些模型的组成。故障检测方案采用过滤方法,其衰减测量噪声的效果并允许更严格的检测阈值,以及处理自主模式转换的算法。因此,所提出的方法可以检测离散和参数故障,并保证在所有情况下都没有误报。两个坦克混合系统示例的仿真结果说明了所提出的方案的有效性。

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