Computational electromagnetics

Computational Electromagnetics is a young and growing discipline, expanding as a result of the steadily increasing demand for software for the design and analysis of electrical devices. This book introduces three of the most popular numerical methods for simulating electromagnetic fields: the finite...

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Détails bibliographiques
Auteurs principaux: Rylander, Thomas, Ingelström, Pär (Auteur), Bondeson, Anders (Auteur)
Format: Livre numérique
Langue:Anglais
Publié: New York, NY : Springer New York [20..].
Cham : Springer Nature
Édition:2nd ed. 2013.
Collection:Texts in Applied Mathematics
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Edition sous un autre format:• Computational electromagnetics, Thomas Rylander, Pär Ingelström, Anders Bondeson, Second edition, New York, Springer, 2013, 1 vol. (XIX-286 p.), Texts in applied mathematics, 978-1-4614-5350-5
• Computational Electromagnetics, Texte imprimé, 9781461453529
• Computational Electromagnetics, Texte imprimé, 9781489986023
• Computational electromagnetics, Thomas Rylander, Pär Ingelström, Anders Bondeson, Second edition, New York, Springer, 2013, 1 vol. (XIX-286 p.), Texts in applied mathematics, 978-1-4614-5350-5
Description
Résumé:Computational Electromagnetics is a young and growing discipline, expanding as a result of the steadily increasing demand for software for the design and analysis of electrical devices. This book introduces three of the most popular numerical methods for simulating electromagnetic fields: the finite difference method, the finite element method and the method of moments. In particular it focuses on how these methods are used to obtain valid approximations to the solutions of Maxwell's equations, using, for example, "staggered grids" and "edge elements." The main goal of the book is to make the reader aware of different sources of errors in numerical computations, and also to provide the tools for assessing the accuracy of numerical methods and their solutions. To reach this goal, convergence analysis, extrapolation, von Neumann stability analysis, and dispersion analysis are introduced and used frequently throughout the book. Another major goal of the book is to provide studentswith enough practical understanding of the methods so they are able to write simple programs on their own. To achieve this, the book contains several MATLAB programs and detailed description of practical issues such as assembly of finite element matrices and handling of unstructured meshes. Finally, the book summarizes  the strengths and weaknessesof the different methods to help the student decide which method may be best for each problem.In this second edition the book was updated throughout and  extensive computer projects are included.Reviews of previous edition:"This well-written monograph is devoted to students at the undergraduatelevel, but is also useful for practising engineers." (Zentralblatt MATH, 2007)
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Archives Springer e-books (Licence nationale)
ISBN:9781461453512
ISSN:2196-9949
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