Exponential stability analysis for uncertain switched neutral systems with interval-time-varying state delay
โ Scribed by Chang-Hua Lien; Ker-Wei Yu; Yeong-Jay Chung; Yen-Feng Lin; Long-Yeu Chung; Jenq-Der Chen
- Publisher
- Elsevier
- Year
- 2009
- Tongue
- English
- Weight
- 624 KB
- Volume
- 3
- Category
- Article
- ISSN
- 1751-570X
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โฆ Synopsis
The global exponential stability for a class of switched neutral systems with interval-timevarying state delay and two classes of perturbations is investigated in this paper. LMI-based delay-dependent and delay-independent criteria are proposed to guarantee exponential stability for our considered systems under any switched signal. The Razumikhin-like approach and the Leibniz-Newton formula are used to find the stability conditions. Structured and unstructured uncertainties are studied in this paper. Finally, some numerical examples are illustrated to show the improved results from using this method.
๐ SIMILAR VOLUMES
This paper addresses the exponential stability and estimates the stability degree of discrete systems with a time-varyiny delay and uncertainties. On the basis of the Lyapunov stability theorem together with the improved Razumikhin type theorem and norm techniques, several new delay-independent crit
This paper proposes an approach for the robust stability of uncertain systems with interval time-varying delay. The key features of the approach include the introduction of uncorrelated augmented matrix items into the Lyapunov functional and the use of a tighter bounding technology. Unlike existing