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Fault Detection Filter Design of Polytopic Uncertain Continuous-Time Singular Markovian Jump Systems with Time-Varying Delays

机译:多特种不确定连续时间奇异马尔维亚跳跃系统的故障检测滤波器设计,时变延迟

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摘要

This paper investigates the problem of full-order and reduced-order fault detection filter (FDF) design under unified linear matrix inequality (LMI) conditions for a class of continuous-time singular Markovian jump systems (CTSMJSs) with time-varying delays and polytopic uncertain transition rates. By constructing a new Lyapunov function, sufficient conditions are firstly provided for the singular model error augmented system such that the system is stochastically admissible with an H∞ performance level γ. And then, by applying a novel convex polyhedron technique to decoupled linear matrix inequalities, the full-order and reduced-order fault detection filter parameters can be obtained within a convex optimization frame. The reduced-order fault detection filter (FDF) can not only meet the fault detection accuracy requirements of complex systems but also improve the fault detection efficiency. Finally, a DC motor and an illustrative simulation example are given to verify the feasibility and effectiveness of the proposed algorithms.
机译:本文调查了一类连续时间单数马尔维亚跳转系统(CTSMJSS)的统一线性矩阵不等式(LMI)条件下的全令和下降故障检测滤波器(FDF)设计的问题,其具有时变延迟和多种多数不确定的过渡率。通过构建新的Lyapunov函数,首先为奇异模型误差增强系统提供了足够的条件,使得系统随着H∞性能水平γ而随机允许。然后,通过应用新的凸多面体技术来解耦线性矩阵不等式,可以在凸优化帧内获得全阶和减小的故障检测滤波器参数。衰减级故障检测滤波器(FDF)不仅可以满足复杂系统的故障检测精度要求,还可以提高故障检测效率。最后,给出了DC电动机和说明性仿真示例来验证所提出的算法的可行性和有效性。

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