Estimator design for discrete-time switched neural networks with asynchronous switching and time-varying delay.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24806131.
- Also identified by DOI 10.1109/TNNLS.2012.2186824.
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Abstract
This brief deals with the estimator design problem for discrete-time switched neural networks with time-varying delay. One main problem is the asynchronous-mode switching between the neuron state and the estimator. Our goal is to design a mode-dependent estimator for the switched neural networks under average dwell time switching such that the estimation error system is exponentially stable with a prescribed l2 gain (in the H∞ sense) from the noise signal to the estimation error. A new Lyapunov functional is constructed that may increase during the mismatched switchings. New results on the stability and l2 gain analysis are then obtained. The admissible estimator gains are computed by solving a set of linear matrix inequalities. The relations among the switching law, the maximal delay upper bound, and the optimal H∞ disturbance attenuation level are established. The effectiveness of the proposed design method is finally illustrated by a numerical example.
Medical subject headings
- Algorithms
- Models, Statistical
- Neural Networks, Computer
- Pattern Recognition, Automated
- Signal Processing, Computer-Assisted