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Sensor fault estimation in finite-frequency domain for nonlinear time-delayed systems by T-S fuzzy model approach with local nonlinear models

机译:T-S模糊模型方法与局部非线性模型的非线性时延系统有限频域的传感器故障估计

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摘要

This paper investigates the sensor fault estimation problem in finite-frequency domain for nonlinear time-delayed systems via T-S fuzzy approach with local nonlinear models. First, to estimate the fault, an augmented system is constructed, where the auxiliary state vector consists of the states of the system and the auxiliary filter. Second, an unknown input observer with finite-frequency specifications is designed to achieve fault estimation. Then, by utilising the Parseval's theorem, the sufficient conditions of the presented observer are established. Different from some existing methods, the state estimation error dynamics are decoupled from the local nonlinear dynamics via the designed observer such that the observer synthesis is simplified and the conservatism can be reduced. Meanwhile, compared with some conventional methods in the entire-frequency domain, a less restrictive analysis condition could be derived by the developed observer scheme. Finally, simulation results are given to illustrate the merit of the proposed approach.
机译:本文通过与局部非线性模型的T-S模糊方法对非线性时延系统有限频域传感器故障估计问题。首先,为了估计故障,构造了一个增强系统,其中辅助状态向量由系统和辅助滤波器的状态组成。其次,设计了具有有限频率规格的未知输入观察者以实现故障估计。然后,通过利用Parseval的定理,建立了所提出的观察者的充分条件。与一些现有方法不同,状态估计误差动态通过设计的观察者从局部非线性动态解耦,使得简化观察者合成并且可以减少保守主义。同时,与整个频域中的一些传统方法相比,开发的观察者方案可以导出更少的限制性分析条件。最后,给出了模拟结果来说明所提出的方法的优点。

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