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Ultimate bound minimisation by state feedback in discrete-time switched linear systems under arbitrary switching

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posted on 2025-05-10, 12:40 authored by Rahmat Heidari, Julio BraslavskyJulio Braslavsky, Maria M. Seron, Hernan Haimovich
We present a novel state feedback design method for perturbed discrete-time switched linear systems. The method aims at achieving (a) closed-loop stability under arbitrary switching and (b) minimisation of ultimate bounds for specific state components. Objective (a) is achieved by computing state feedback matrices so that the closed-loop subsystem evolution matrices generate a solvable Lie algebra (namely, they are all upper triangular in a common coordinate basis). Previous results derived an iterative algorithm that computes the required feedback matrices, and established conditions under which this procedure is possible. Based on these conditions, objective (b) is achieved by exploiting available degrees of freedom in the iterative algorithm.

History

Journal title

Nonlinear Analysis: Hybrid Systems

Volume

21

Issue

August

Pagination

84-102

Publisher

Elsevier

Place published

Amsterdam, Netherlands

Language

  • en, English

College/Research Centre

Faculty of Engineering and Built Environment

School

School of Electrical Engineering and Computer Science

Rights statement

© 2016. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/.

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