Forward completeness does not imply bounded reachability sets and global asymptotic stability is not necessarily uniform for time-delay systems

Fuente: arXiv
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Main Authors: Mancilla-Aguilar, Jose L., Haimovich, Hernan
Format: Preprint
Published: 2023
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author Mancilla-Aguilar, Jose L.
Haimovich, Hernan
author_facet Mancilla-Aguilar, Jose L.
Haimovich, Hernan
contents An example of a time-invariant time-delay system that is uniformly globally attractive and exponentially stable, hence forward complete, but whose reachability sets from bounded initial conditions are not bounded over compact time intervals is provided. This gives a negative answer to two current conjectures by showing that (i) forward completeness is not equivalent to robust forward completeness (i.e. boundedness of reachability sets) and (ii) global asymptotic stability is not equivalent to uniform global asymptotic stability. In addition, a novel characterization of robust forward completeness for systems having a finite number of discrete delays is provided. This characterization relates robust forward completeness of the time-delay system with the forward completeness of an associated nondelayed finite-dimensional system.
format Preprint
id arxiv_https___arxiv_org_abs_2308_07130
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Forward completeness does not imply bounded reachability sets and global asymptotic stability is not necessarily uniform for time-delay systems
Mancilla-Aguilar, Jose L.
Haimovich, Hernan
Systems and Control
Dynamical Systems
An example of a time-invariant time-delay system that is uniformly globally attractive and exponentially stable, hence forward complete, but whose reachability sets from bounded initial conditions are not bounded over compact time intervals is provided. This gives a negative answer to two current conjectures by showing that (i) forward completeness is not equivalent to robust forward completeness (i.e. boundedness of reachability sets) and (ii) global asymptotic stability is not equivalent to uniform global asymptotic stability. In addition, a novel characterization of robust forward completeness for systems having a finite number of discrete delays is provided. This characterization relates robust forward completeness of the time-delay system with the forward completeness of an associated nondelayed finite-dimensional system.
title Forward completeness does not imply bounded reachability sets and global asymptotic stability is not necessarily uniform for time-delay systems
topic Systems and Control
Dynamical Systems
url https://arxiv.org/abs/2308.07130