A method is presented to construct the largest set of parameter variations for any asymptotically stable (convergent) matrix, whose corresponding set of perturbed matrices remains stable.
Robust stability analysis of time-delay systems using parameter-plane and parameter-space methods
โ Scribed by Gong-Liang Chao; Jau-Woei Perng; Kuang-Wei Han
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 533 KB
- Volume
- 335
- Category
- Article
- ISSN
- 0016-0032
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โฆ Synopsis
In thb paper, parameter-plane and parameter-space methods" are appfied Jbr robust stability analysis of time-delay systems expressed by time-domain models. The relations among the parameters in time-domain matrices and those in s-domain characteristic equations are analyzed. A general rule .for choosing the desirable elements in matrices as parameters is proposed. The advantayes of the methods are illustrated by examples, and comparisons with two other methods" in the current literature are made.
๐ SIMILAR VOLUMES
A convex approach to robust regional stability analysis of a class of nonlinear state-delayed systems subject to convex-bounded parameter uncertainty is proposed. Delay-dependent conditions are developed to ensure system robust local stability and obtain an estimate of a domain of attraction of the