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Low-complexity controllers for time-delay systems

This volume in the newly established series Advances in Delays and Dynamics (ADD@S) provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems. A widely used indirect method to obtain low order controllers for time delay systems is to desi...

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Detalles Bibliográficos
Autores principales: Seuret, Alexandre, Özbay, Hitay, Bonnet, Catherine, Mounier, Hugues
Lenguaje:eng
Publicado: Springer 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-05576-3
http://cds.cern.ch/record/1702337
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author Seuret, Alexandre
Özbay, Hitay
Bonnet, Catherine
Mounier, Hugues
author_facet Seuret, Alexandre
Özbay, Hitay
Bonnet, Catherine
Mounier, Hugues
author_sort Seuret, Alexandre
collection CERN
description This volume in the newly established series Advances in Delays and Dynamics (ADD@S) provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems. A widely used indirect method to obtain low order controllers for time delay systems is to design a controller for the reduced order model of the plant. In the dual indirect approach, an infinite dimensional controller is designed first for the original plant model; then, the controller is approximated by keeping track of the degradation in performance and stability robustness measures. The present volume includes new techniques used at different stages of the indirect approach. It also includes new direct design methods for fixed structure and low order controllers. On the other hand, what is meant by low complexity controller is not necessarily low order controller. For example, Smith predictor or similar type of controllers include a copy of the plant internally in the controller, so they are technically infinite dimensional. However, they have very nice numerical properties from the point of reliable implementation. Therefore, such predictor-based controllers are considered as low complexity. This book includes new predictor-based design techniques, with several application examples.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2014
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spelling cern-17023372021-04-21T21:01:41Zdoi:10.1007/978-3-319-05576-3http://cds.cern.ch/record/1702337engSeuret, AlexandreÖzbay, HitayBonnet, CatherineMounier, HuguesLow-complexity controllers for time-delay systemsEngineeringThis volume in the newly established series Advances in Delays and Dynamics (ADD@S) provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems. A widely used indirect method to obtain low order controllers for time delay systems is to design a controller for the reduced order model of the plant. In the dual indirect approach, an infinite dimensional controller is designed first for the original plant model; then, the controller is approximated by keeping track of the degradation in performance and stability robustness measures. The present volume includes new techniques used at different stages of the indirect approach. It also includes new direct design methods for fixed structure and low order controllers. On the other hand, what is meant by low complexity controller is not necessarily low order controller. For example, Smith predictor or similar type of controllers include a copy of the plant internally in the controller, so they are technically infinite dimensional. However, they have very nice numerical properties from the point of reliable implementation. Therefore, such predictor-based controllers are considered as low complexity. This book includes new predictor-based design techniques, with several application examples.Springeroai:cds.cern.ch:17023372014
spellingShingle Engineering
Seuret, Alexandre
Özbay, Hitay
Bonnet, Catherine
Mounier, Hugues
Low-complexity controllers for time-delay systems
title Low-complexity controllers for time-delay systems
title_full Low-complexity controllers for time-delay systems
title_fullStr Low-complexity controllers for time-delay systems
title_full_unstemmed Low-complexity controllers for time-delay systems
title_short Low-complexity controllers for time-delay systems
title_sort low-complexity controllers for time-delay systems
topic Engineering
url https://dx.doi.org/10.1007/978-3-319-05576-3
http://cds.cern.ch/record/1702337
work_keys_str_mv AT seuretalexandre lowcomplexitycontrollersfortimedelaysystems
AT ozbayhitay lowcomplexitycontrollersfortimedelaysystems
AT bonnetcatherine lowcomplexitycontrollersfortimedelaysystems
AT mounierhugues lowcomplexitycontrollersfortimedelaysystems