Numerical Approximation Of Exact Controls For Waves


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Numerical Approximation of Exact Controls for Waves


Numerical Approximation of Exact Controls for Waves

Author: Sylvain Ervedoza

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-02-17


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​​​​​​This book is devoted to fully developing and comparing the two main approaches to the numerical approximation of controls for wave propagation phenomena: the continuous and the discrete. This is accomplished in the abstract functional setting of conservative semigroups.The main results of the work unify, to a large extent, these two approaches, which yield similaralgorithms and convergence rates. The discrete approach, however, gives not only efficient numerical approximations of the continuous controls, but also ensures some partial controllability properties of the finite-dimensional approximated dynamics. Moreover, it has the advantage of leading to iterative approximation processes that converge without a limiting threshold in the number of iterations. Such a threshold, which is hard to compute and estimate in practice, is a drawback of the methods emanating from the continuous approach. To complement this theory, the book provides convergence results for the discrete wave equation when discretized using finite differences and proves the convergence of the discrete wave equation with non-homogeneous Dirichlet conditions. The first book to explore these topics in depth, "On the Numerical Approximations of Controls for Waves" has rich applications to data assimilation problems and will be of interest to researchers who deal with wave approximations.​

Numerical Approximation of Exact Controls for Waves


Numerical Approximation of Exact Controls for Waves

Author: Springer

language: en

Publisher:

Release Date: 2013-02-01


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Exact Controllability and Stabilization of the Wave Equation


Exact Controllability and Stabilization of the Wave Equation

Author: Enrique Zuazua

language: en

Publisher: Springer Nature

Release Date: 2024-08-23


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This comprehensive monograph illustrates the intricate realm of controllability and stabilization of wave phenomena. Authored by an expert in the field, this book integrates J. L. Lion's renowned HUM method, multiplier techniques, and the construction of Lyapunov functionals. Through meticulous analysis and practical applications, this book provides invaluable insights for researchers seeking to navigate the expansive domain of wave-like equations and their control. Whether you are a seasoned mathematician or a newcomer to the field, this book serves as an indispensable guide, offering a thorough introduction and essential tools for understanding and controlling wave phenomena.