## Abstract The problem of robust stabilization for uncertain dynamic timeβdelay systems is considered. Firstly a class of timeβdelay systems with uncertainties bounded by highβorder polynomials and unknown coefficients are considered. The corresponding controller is designed by employing adaptive
Robust adaptive tracking control of uncertain discrete time systems
β Scribed by Shengping Li
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 325 KB
- Volume
- 19
- Category
- Article
- ISSN
- 0890-6327
- DOI
- 10.1002/acs.880
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β¦ Synopsis
In this paper, the problem of robust adaptive tracking for uncertain discrete-time systems is considered from the slowly varying systems point of view. The class of uncertain discrete-time systems considered is subjected to both ' 1 to ' 1 bounded unstructured uncertainty and external additive bounded disturbances. A priori knowledge of the dynamic model of the reference signal to be tracked is not completely known. For such problem, an indirect adaptive tracking controller is obtained by frozen-time controllers that at each time optimally robustly stabilize the estimated models of the plant and minimize the worst-case steady-state absolute value of the tracking error of the estimated model over the model uncertainty. Based on ' 1 to ' 1 stability and performance of slowly varying system found in the literature, the proposed adaptive tracking scheme is shown to have good robust stability. Moreover, a computable upper bound on the size of the unstructured uncertainty permitted by the adaptive system and a computable tight upper bound on asymptotic robust steady-state tracking performance are provided.
π SIMILAR VOLUMES
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In this paper the problem of stabilizing uncertain linear discrete-time systems under state and control linear constraints is studied. Many formulations of this problem have been given in the literature. Here we consider the case of finding a linear state feedback control law making a given polytope