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Generalized Locally Toeplitz Sequences: Theory and Applications - Volume I (Hardcover, 1st ed. 2017): Carlo Garoni, Stefano... Generalized Locally Toeplitz Sequences: Theory and Applications - Volume I (Hardcover, 1st ed. 2017)
Carlo Garoni, Stefano Serra Capizzano
R4,136 Discovery Miles 41 360 Ships in 12 - 17 working days

Based on their research experience, the authors propose a reference textbook in two volumes on the theory of generalized locally Toeplitz sequences and their applications. This first volume focuses on the univariate version of the theory and the related applications in the unidimensional setting, while the second volume, which addresses the multivariate case, is mainly devoted to concrete PDE applications. This book systematically develops the theory of generalized locally Toeplitz (GLT) sequences and presents some of its main applications, with a particular focus on the numerical discretization of differential equations (DEs). It is the first book to address the relatively new field of GLT sequences, which occur in numerous scientific applications and are especially dominant in the context of DE discretizations. Written for applied mathematicians, engineers, physicists, and scientists who (perhaps unknowingly) encounter GLT sequences in their research, it is also of interest to those working in the fields of Fourier and functional analysis, spectral analysis of DE discretization matrices, matrix analysis, measure and operator theory, numerical analysis and linear algebra. Further, it can be used as a textbook for a graduate or advanced undergraduate course in numerical analysis.

Computational Methods for Inverse Problems in Imaging (Hardcover, 1st ed. 2019): Marco Donatelli, Stefano Serra Capizzano Computational Methods for Inverse Problems in Imaging (Hardcover, 1st ed. 2019)
Marco Donatelli, Stefano Serra Capizzano
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book presents recent mathematical methods in the area of inverse problems in imaging with a particular focus on the computational aspects and applications. The formulation of inverse problems in imaging requires accurate mathematical modeling in order to preserve the significant features of the image. The book describes computational methods to efficiently address these problems based on new optimization algorithms for smooth and nonsmooth convex minimization, on the use of structured (numerical) linear algebra, and on multilevel techniques. It also discusses various current and challenging applications in fields such as astronomy, microscopy, and biomedical imaging. The book is intended for researchers and advanced graduate students interested in inverse problems and imaging.

Generalized Locally Toeplitz Sequences: Theory and Applications - Volume I (Paperback, Softcover reprint of the original 1st... Generalized Locally Toeplitz Sequences: Theory and Applications - Volume I (Paperback, Softcover reprint of the original 1st ed. 2017)
Carlo Garoni, Stefano Serra Capizzano
R3,277 Discovery Miles 32 770 Ships in 10 - 15 working days

Based on their research experience, the authors propose a reference textbook in two volumes on the theory of generalized locally Toeplitz sequences and their applications. This first volume focuses on the univariate version of the theory and the related applications in the unidimensional setting, while the second volume, which addresses the multivariate case, is mainly devoted to concrete PDE applications. This book systematically develops the theory of generalized locally Toeplitz (GLT) sequences and presents some of its main applications, with a particular focus on the numerical discretization of differential equations (DEs). It is the first book to address the relatively new field of GLT sequences, which occur in numerous scientific applications and are especially dominant in the context of DE discretizations. Written for applied mathematicians, engineers, physicists, and scientists who (perhaps unknowingly) encounter GLT sequences in their research, it is also of interest to those working in the fields of Fourier and functional analysis, spectral analysis of DE discretization matrices, matrix analysis, measure and operator theory, numerical analysis and linear algebra. Further, it can be used as a textbook for a graduate or advanced undergraduate course in numerical analysis.

Computational Methods for Inverse Problems in Imaging (Paperback, 1st ed. 2019): Marco Donatelli, Stefano Serra Capizzano Computational Methods for Inverse Problems in Imaging (Paperback, 1st ed. 2019)
Marco Donatelli, Stefano Serra Capizzano
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book presents recent mathematical methods in the area of inverse problems in imaging with a particular focus on the computational aspects and applications. The formulation of inverse problems in imaging requires accurate mathematical modeling in order to preserve the significant features of the image. The book describes computational methods to efficiently address these problems based on new optimization algorithms for smooth and nonsmooth convex minimization, on the use of structured (numerical) linear algebra, and on multilevel techniques. It also discusses various current and challenging applications in fields such as astronomy, microscopy, and biomedical imaging. The book is intended for researchers and advanced graduate students interested in inverse problems and imaging.

Splines and PDEs: From Approximation Theory to Numerical Linear Algebra - Cetraro, Italy 2017 (Paperback, 1st ed. 2018): Angela... Splines and PDEs: From Approximation Theory to Numerical Linear Algebra - Cetraro, Italy 2017 (Paperback, 1st ed. 2018)
Angela Kunoth, Tom Lyche, Giancarlo Sangalli, Stefano Serra Capizzano; Edited by Tom Lyche, …
R2,078 Discovery Miles 20 780 Ships in 10 - 15 working days

This book takes readers on a multi-perspective tour through state-of-the-art mathematical developments related to the numerical treatment of PDEs based on splines, and in particular isogeometric methods. A wide variety of research topics are covered, ranging from approximation theory to structured numerical linear algebra. More precisely, the book provides (i) a self-contained introduction to B-splines, with special focus on approximation and hierarchical refinement, (ii) a broad survey of numerical schemes for control problems based on B-splines and B-spline-type wavelets, (iii) an exhaustive description of methods for computing and analyzing the spectral distribution of discretization matrices, and (iv) a detailed overview of the mathematical and implementational aspects of isogeometric analysis. The text is the outcome of a C.I.M.E. summer school held in Cetraro (Italy), July 2017, featuring four prominent lecturers with different theoretical and application perspectives. The book may serve both as a reference and an entry point into further research.

Sequences of Structured Matrices (Paperback): Debora Sesana, Stefano Serra Capizzano Sequences of Structured Matrices (Paperback)
Debora Sesana, Stefano Serra Capizzano
R1,952 Discovery Miles 19 520 Ships in 10 - 15 working days

This book provides a systematic and unifying treatment of the spectral analysis of matrix sequences collecting the state of the art of the research in this field and providing new advanced results which are interesting both from the theoretical and from the algorithmic point of view. The first part concerns the description and analysis of the available tools, together with their generalization including the development of new effective tools of analysis. The basic concept of "approximating class of sequences" is introduced and analyzed in depth. Some new results of great interest have been obtained and applied to Toeplitz sequences. The classes of g-circulant and g-Toeplitz matrix sequences are introduced as well, and their spectral analysis is carried out. The second part is addressed to applications. It contains new and interesting results. A relevant role is played by the preconditioning of g-Toeplitz matrix sequences by means of g-circulant matrices with a specific attention to the regularizing properties which take their importance in the applications concerning image processing, filtering and restoration. Another application concerns two-grid and multi-grid techniques.

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