Fault detection filter design of polytopic uncertain continuous-time singular Markovian jump systems with time-varying delays (Q2658450)
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| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Fault detection filter design of polytopic uncertain continuous-time singular Markovian jump systems with time-varying delays |
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Fault detection filter design of polytopic uncertain continuous-time singular Markovian jump systems with time-varying delays (English)
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22 March 2021
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Summary: 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 \(H_\infty\) performance level \(\gamma \). 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.
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