Some Results on Reset Control systems
Hybrid controllers are flexible tools for achieving system stabilization and/or performance improvement tasks. More particularly, hybrid controllers enrich the spectrum of achievable trade-offs. Indeed, the interaction of continuous- and discrete-time dynamics in a hybrid controller leads to rich dy...
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ndltd-univ-toulouse.fr-oai-oatao.univ-toulouse.fr-72242017-10-11T05:08:54Z Some Results on Reset Control systems Loquen, Thomas Hybrid controllers are flexible tools for achieving system stabilization and/or performance improvement tasks. More particularly, hybrid controllers enrich the spectrum of achievable trade-offs. Indeed, the interaction of continuous- and discrete-time dynamics in a hybrid controller leads to rich dynamical behavior and phenomena not encountered in purely continuous-time system. Reset control systems are a class of hybrid controllers whose states are reset depending on an algebraic condition. In this thesis, we propose constructive conditions (Linear Matrix Inequalities) to analyze stability and performance level of a closed-loop system including a reset element. More particularly, we consider a magnitude saturation which could be the source of undesirable effects on these performances, including instability. Proposed results estimate the stability domain and a performance level of such a system, by using Lyapunov-like approaches. Constructive algorithms are obtained by exploiting properties of quadratic - or piecewise quadratic - Lyapunov functions. Beyond analysis results, we propose design methods to obtain a stability domain as large as possible. Design methods are based on both continuous-time approaches (anti-windup compensator) and hybrid-time approaches (design of adapted reset rules). 2010-05-07 PhD Thesis PeerReviewed application/pdf http://oatao.univ-toulouse.fr/7224/1/loquen.pdf info:eu-repo/semantics/doctoralThesis info:eu-repo/semantics/openAccess Loquen, Thomas. Some Results on Reset Control systems. PhD, Institut National Polytechnique de Toulouse, 2010 http://ethesis.inp-toulouse.fr/archive/00001245/ http://oatao.univ-toulouse.fr/7224/ |
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Hybrid controllers are flexible tools for achieving system stabilization and/or performance improvement tasks. More particularly, hybrid controllers enrich the spectrum of achievable trade-offs. Indeed, the interaction of continuous- and discrete-time dynamics in a hybrid controller leads to rich dynamical behavior and phenomena not encountered in purely continuous-time system. Reset control systems are a class of hybrid controllers whose states are reset depending on an algebraic condition. In this thesis, we propose constructive conditions (Linear Matrix Inequalities) to analyze stability and performance level of a closed-loop system including a reset element. More particularly, we consider a magnitude saturation which could be the source of undesirable effects on these performances, including instability. Proposed results estimate the stability domain and a performance level of such a system, by using Lyapunov-like approaches. Constructive algorithms are obtained by exploiting properties of quadratic - or piecewise quadratic - Lyapunov functions. Beyond analysis results, we propose design methods to obtain a stability domain as large as possible. Design methods are based on both continuous-time approaches (anti-windup compensator) and hybrid-time approaches (design of adapted reset rules). |
author |
Loquen, Thomas |
spellingShingle |
Loquen, Thomas Some Results on Reset Control systems |
author_facet |
Loquen, Thomas |
author_sort |
Loquen, Thomas |
title |
Some Results on Reset Control systems |
title_short |
Some Results on Reset Control systems |
title_full |
Some Results on Reset Control systems |
title_fullStr |
Some Results on Reset Control systems |
title_full_unstemmed |
Some Results on Reset Control systems |
title_sort |
some results on reset control systems |
publishDate |
2010 |
url |
http://oatao.univ-toulouse.fr/7224/1/loquen.pdf |
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AT loquenthomas someresultsonresetcontrolsystems |
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1718552997376557056 |