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Robust controller design for a nonlinear chemical process
Details
In chemical industry most processes modeled by nonlinear equations, to design high-performance nonlinear controllers for efficient control of nonlinear processes to achieve closed-loop system's stability and high performance. Design procedures proposed in this work rely strongly on the process model, difficulty addressed is identification of relatively simple model of nonlinear processes. The nonlinearity of the processes makes it difficult to obtain first-principles model used for analysis and design of the controller. Simple empirical models are chosen to represent nonlinear process for the design of controllers. The second difficulty is analysis of stability and performance for such models using nonlinear control theory is not straightforward. It is proposed in this study to investigate the stability and performance using a robust control approach. Nonlinear model is approximated by a nominal linear model combined with a mathematical description of model error to be referred to, in this work, as model uncertainty, with respect to the nominal linear model is due to the system nonlinearity. Then robust control theoretical tools applied for the design of controllers.
Autorentext
Siva Dhas a terminé sa maîtrise en contrôle et instrumentation et possède près de 10 ans d'expérience dans l'enseignement dans ce domaine. Il excelle dans la conception de contrôleurs robustes.Dr K.U.Pavitra Krishna est récipiendaire du NSI Young Scientist Award et possède 7 ans d'expérience dans l'enseignement dans le domaine de la science et de la technologie alimentaires.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786200238733
- Genre Electrical Engineering
- Sprache Englisch
- Anzahl Seiten 52
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm x T4mm
- Jahr 2022
- EAN 9786200238733
- Format Kartonierter Einband
- ISBN 6200238731
- Veröffentlichung 18.04.2022
- Titel Robust controller design for a nonlinear chemical process
- Autor Siva Dhas , Pavitra Krishna
- Untertitel Control and Instrumentation Engineering
- Gewicht 96g