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Real-Time Fault Detection Approach for Nonlinear Systems and its Asynchronous T–S Fuzzy Observer-Based Implementation

机译:非线性系统的实时故障检测方法及其基于异步TS模糊观测器的实现

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摘要

This paper is concerned with a real-time observer-based fault detection (FD) approach for a general type of nonlinear systems in the presence of external disturbances. To this end, in the first part of this paper, we deal with the definition and the design condition for an £∞/£2 type of nonlinear observer-based FD systems. This analytical framework is fundamental for the development of real-time nonlinear FD systems with the aid of some well-established techniques. In the second part, we address the integrated design of the £∞/£2 observer-based FD systems by applying Takagi-Sugeno (T-S) fuzzy dynamic modeling technique as the solution tool. This fuzzy observer-based FD approach is developed via piecewise Lyapunov functions, and can be applied to the case that the premise variables of the FD system is nonsynchronous with the premise variables of the fuzzy model of the plant. In the end, a case study on the laboratory setup of three-tank system is given to show the efficiency of the proposed results.
机译:本文涉及在存在外部干扰的情况下针对一般类型非线性系统的基于观测器的实时故障检测(FD)方法。为此,在本文的第一部分中,我们讨论了£∞/£2类型的基于非线性观测器的FD系统的定义和设计条件。该分析框架是借助一些完善的技术开发实时非线性FD系统的基础。在第二部分中,我们通过使用Takagi-Sugeno(T-S)模糊动态建模技术作为求解工具来解决基于£∞/£2观测器的FD系统的集成设计。这种基于模糊观测器的FD方法是通过分段Lyapunov函数开发的,可以应用于FD系统的前提变量与工厂的模糊模型的前提变量不同步的情况。最后,以三缸系统实验室设置为例,说明了所提出结果的有效性。

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