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Application of a game-theoretic multi-loop control system design with robust performance
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Veröffentlicht in: | IFAC Proceedings Volumes 41(2008), 2, Seite 10039-10044 |
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Personen und Körperschaften: | , , |
Titel: | Application of a game-theoretic multi-loop control system design with robust performance/ A. Wellenreuther, A. Gambier, E. Badreddin |
Format: | E-Book-Kapitel |
Sprache: | Englisch |
veröffentlicht: |
2008
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Gesamtaufnahme: |
Internationale Förderung für Automatische Lenkung: IFAC Proceedings Volumes, 41(2008), 2, Seite 10039-10044
, volume:41 |
Quelle: | Verbunddaten SWB Lizenzfreie Online-Ressourcen |
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author | Wellenreuther, Andrea, Gambier, Adrián, Badreddin, Essameddin |
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contents | Abstract:The game-theoretic view of control system design for multi-loop systems is extended in this work to ensure a closed-loop system with robust stability. The control system design is modeled as a differential cooperative game to incorporate interactions between the multiple loops of the control system. A robust stability indicator is formulated as an additional cost function. The developed approach is applied to a reverse osmosis desalination plant with different constraint settings on the control signals. The solution of the game provides Pareto-optimal sets, depending on the control signal constraints. Single points are chosen from the Pareto-optimal sets resulting in controller parameters leading to a reverse osmosis system with optimal performance concerning the error convergence, control effort and robust stability. |
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spelling | Wellenreuther, Andrea VerfasserIn (DE-588)1181134404 (DE-627)1662647565 aut, Application of a game-theoretic multi-loop control system design with robust performance A. Wellenreuther, A. Gambier, E. Badreddin, 2008, 6, Text txt rdacontent, Computermedien c rdamedia, Online-Ressource cr rdacarrier, Gesehen am 24.04.2019, Abstract:The game-theoretic view of control system design for multi-loop systems is extended in this work to ensure a closed-loop system with robust stability. The control system design is modeled as a differential cooperative game to incorporate interactions between the multiple loops of the control system. A robust stability indicator is formulated as an additional cost function. The developed approach is applied to a reverse osmosis desalination plant with different constraint settings on the control signals. The solution of the game provides Pareto-optimal sets, depending on the control signal constraints. Single points are chosen from the Pareto-optimal sets resulting in controller parameters leading to a reverse osmosis system with optimal performance concerning the error convergence, control effort and robust stability., Gambier, Adrián 1958- VerfasserIn (DE-588)172984882 (DE-627)697910717 (DE-576)133838315 aut, Badreddin, Essameddin VerfasserIn (DE-588)1136732853 (DE-627)893510246 (DE-576)490797644 aut, Enthalten in Internationale Förderung für Automatische Lenkung IFAC Proceedings Volumes Amsterdam : Elsevier, 2019 41(2008), 2, Seite 10039-10044 Online-Ressource (DE-627)1668469197 (DE-600)2976778-7 1474-6670 nnns, volume:41 year:2008 number:2 pages:10039-10044 extent:6, https://www.sciencedirect.com/science/article/pii/S1474667016405756 Verlag kostenfrei Volltext, https://www.sciencedirect.com/science/article/pii/S1474667016405756 LFER, LFER 2019-07-22T00:00:00Z |
spellingShingle | Wellenreuther, Andrea, Gambier, Adrián, Badreddin, Essameddin, Application of a game-theoretic multi-loop control system design with robust performance, Abstract:The game-theoretic view of control system design for multi-loop systems is extended in this work to ensure a closed-loop system with robust stability. The control system design is modeled as a differential cooperative game to incorporate interactions between the multiple loops of the control system. A robust stability indicator is formulated as an additional cost function. The developed approach is applied to a reverse osmosis desalination plant with different constraint settings on the control signals. The solution of the game provides Pareto-optimal sets, depending on the control signal constraints. Single points are chosen from the Pareto-optimal sets resulting in controller parameters leading to a reverse osmosis system with optimal performance concerning the error convergence, control effort and robust stability. |
title | Application of a game-theoretic multi-loop control system design with robust performance |
title_auth | Application of a game-theoretic multi-loop control system design with robust performance |
title_full | Application of a game-theoretic multi-loop control system design with robust performance A. Wellenreuther, A. Gambier, E. Badreddin |
title_fullStr | Application of a game-theoretic multi-loop control system design with robust performance A. Wellenreuther, A. Gambier, E. Badreddin |
title_full_unstemmed | Application of a game-theoretic multi-loop control system design with robust performance A. Wellenreuther, A. Gambier, E. Badreddin |
title_in_hierarchy | Application of a game-theoretic multi-loop control system design with robust performance / A. Wellenreuther, A. Gambier, E. Badreddin, |
title_short | Application of a game-theoretic multi-loop control system design with robust performance |
title_sort | application of a game theoretic multi loop control system design with robust performance |
url | https://www.sciencedirect.com/science/article/pii/S1474667016405756 |