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Control design with guaranteed ultimate bound for feedback linearizable systems

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conference contribution
posted on 2025-05-10, 22:11 authored by Ernesto Kofman, Fernando Fontenla, Haimovich Hernan, Maria SeronMaria Seron
For a class of perturbed feedback linearizable nonlinear systems, we consider the computation and assignment of prescribed ultimate bounds on the system states. We employ a recently proposed componentwise bound computation procedure, which directly takes into account both the system and perturbation structures by performing componentwise analysis. We first derive sufficient conditions to ensure that the trajectories originating from initial conditions in an appropriate set are ultimately bounded. Secondly, and most importantly, for statefeedback - linearizable nonlinear systems with matched perturbations, we provide a systematic design procedure to compute a state feedback control that ensures a prescribed ultimate bound for the closed-loop system states. The procedure combines nonlinear state-feedbacklinearizing control with a state-feedback matrix computed via an eigenstructure assignment method previously reported by the authors. A simulation example illustrates the simplicity and systematicity of the proposed design method.

History

Source title

Proceedings of the 17th World Congress of the International Federation of Automatic Control

Name of conference

17th World Congress of the International Federation of Automatic Control

Location

Seoul, Korea

Start date

2008-07-06

End date

2008-07-11

Pagination

242-247

Editors

Jin Chung, M. & Misra, P.

Publisher

International Federation of Automatic Control (IFAC)

Place published

Laxenburg, Austria

Language

  • en, English

College/Research Centre

Faculty of Engineering and Built Environment

School

School of Electrical Engineering and Computer Science

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