Neural network based finite-time stabilization for discrete-time Markov jump nonlinear systems with time delays (Q2015402)
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scientific article; zbMATH DE number 6306689
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| English | Neural network based finite-time stabilization for discrete-time Markov jump nonlinear systems with time delays |
scientific article; zbMATH DE number 6306689 |
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Neural network based finite-time stabilization for discrete-time Markov jump nonlinear systems with time delays (English)
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23 June 2014
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Summary: This paper deals with the finite-time stabilization problem for discrete-time Markov jump nonlinear systems with time delays and norm-bounded exogenous disturbance. The nonlinearities in different jump modes are parameterized by neural networks. Subsequently, a linear difference inclusion state space representation for a class of neural networks is established. Based on this, sufficient conditions are derived in terms of linear matrix inequalities to guarantee stochastic finite-time boundedness and stochastic finite-time stabilization of the closed-loop system. A numerical example is illustrated to verify the efficiency of the proposed technique.
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