Ultimate bounds and robust invariant sets for linear systems with state-dependent disturbances

Conference Paper (2015)
Author(s)

Sorin Olaru (CentraleSupélec - Paris-Saclay)

Vasso Reppa (CentraleSupélec - Paris-Saclay)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1007/978-3-319-26687-9_16
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Publication Year
2015
Language
English
Affiliation
External organisation
Pages (from-to)
339-359
ISBN (print)
9783319266855

Abstract

The objective of this chapter is to present a methodology for computing robust positively invariant sets for linear, discrete time-invariant systems that are affected by additive disturbances, with the particularity that these disturbances are subject to state-dependent bounds. The proposed methodology requires less restrictive assumptions compared to similar established techniques, while it provides the framework for determining the state-dependent (parameterized) ultimate bounds for several classes of disturbances. The added value of the proposed approach is illustrated by an optimization-based problem for detecting the mode of functioning of a switching system.

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