Fr. 188.00

Control Theory of Infinite-Dimensional Systems

English · Paperback / Softback

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Description

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This book presents novel results by participants of the conference "Control theory of infinite-dimensional systems" that took place in January 2018 at the FernUniversität in Hagen. Topics include well-posedness, controllability, optimal control problems as well as stability of linear and nonlinear systems, and are covered by world-leading experts in these areas.
A distinguishing feature of the contributions in this volume is the particular combination of researchers from different fields in mathematics working in an interdisciplinary fashion on joint projects in mathematical system theory. More explicitly, the fields of partial differential equations, semigroup theory, mathematical physics, graph and network theory as well as numerical analysis are all well-represented.

List of contents

Consensus Dynamics and its Control on Networks with Time Delays.- Stabilization of a Drude-vacuum model.- A distance of operators acting in different Hilbert spaces and operator convergence.- Abstract boundary delay systems and application to flow in a network with memory.- Stabilization of port-Hamiltonian systems by nonlinear dynamic boundary control.- Polynomial stability of two coupled strings.- Towards funnel control of a moving water tank.- Multi-scale unique continuation principle applied to control theory of the heat equation.- The Hamiltonian approach to Riccati equations for infinite-dimensional systems.- Control theory for hyperbolic Maxwell variational inequalities in type-II superconductivity.

Product details

Assisted by Joachim Kerner (Editor), Hafid Laasri (Editor), Hafida Laasri (Editor), Delio Mugnolo (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 10.07.2021
 
EAN 9783030359003
ISBN 978-3-0-3035900-3
No. of pages 194
Dimensions 155 mm x 11 mm x 235 mm
Illustrations VII, 194 p. 7 illus.
Series Operator Theory: Advances and Applications
Linear Operators and Linear Systems
Subject Natural sciences, medicine, IT, technology > Mathematics > Miscellaneous

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