Optimal Boundary Control and Boundary Stabilization of Hyperbolic Systems

Nonfiction, Science & Nature, Mathematics, Differential Equations, Science, Other Sciences, System Theory, Reference & Language, Reference
Cover of the book Optimal Boundary Control and Boundary Stabilization of Hyperbolic Systems by Martin Gugat, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Martin Gugat ISBN: 9783319188904
Publisher: Springer International Publishing Publication: July 15, 2015
Imprint: Birkhäuser Language: English
Author: Martin Gugat
ISBN: 9783319188904
Publisher: Springer International Publishing
Publication: July 15, 2015
Imprint: Birkhäuser
Language: English

This brief considers recent results on optimal control and stabilization of systems governed by hyperbolic partial differential equations, specifically those in which the control action takes place at the boundary.  The wave equation is used as a typical example of a linear system, through which the author explores initial boundary value problems, concepts of exact controllability, optimal exact control, and boundary stabilization.  Nonlinear systems are also covered, with the Korteweg-de Vries and Burgers Equations serving as standard examples.  To keep the presentation as accessible as possible, the author uses the case of a system with a state that is defined on a finite space interval, so that there are only two boundary points where the system can be controlled.  Graduate and post-graduate students as well as researchers in the field will find this to be an accessible introduction to problems of optimal control and stabilization.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This brief considers recent results on optimal control and stabilization of systems governed by hyperbolic partial differential equations, specifically those in which the control action takes place at the boundary.  The wave equation is used as a typical example of a linear system, through which the author explores initial boundary value problems, concepts of exact controllability, optimal exact control, and boundary stabilization.  Nonlinear systems are also covered, with the Korteweg-de Vries and Burgers Equations serving as standard examples.  To keep the presentation as accessible as possible, the author uses the case of a system with a state that is defined on a finite space interval, so that there are only two boundary points where the system can be controlled.  Graduate and post-graduate students as well as researchers in the field will find this to be an accessible introduction to problems of optimal control and stabilization.

More books from Springer International Publishing

Cover of the book The Cnidaria, Past, Present and Future by Martin Gugat
Cover of the book Issues and Challenges in Artificial Intelligence by Martin Gugat
Cover of the book Epigenetics, the Environment, and Children’s Health Across Lifespans by Martin Gugat
Cover of the book Introduction to Multiphase Flow by Martin Gugat
Cover of the book Deep Learning and Missing Data in Engineering Systems by Martin Gugat
Cover of the book Colon Polypectomy by Martin Gugat
Cover of the book The Discourse of Sensibility by Martin Gugat
Cover of the book 200 Years of Ricardian Trade Theory by Martin Gugat
Cover of the book The Empire’s Patriotic Fund by Martin Gugat
Cover of the book Business Process Management by Martin Gugat
Cover of the book Human Interface and the Management of Information. Information in Intelligent Systems by Martin Gugat
Cover of the book The Mathematics of Medical Imaging by Martin Gugat
Cover of the book The Political Economy of Governance by Martin Gugat
Cover of the book Experimental Stress Analysis for Materials and Structures by Martin Gugat
Cover of the book Neuropharmacology of New Psychoactive Substances (NPS) by Martin Gugat
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy