ISBN: 9783540676294
ID: 19230384
treated in more detail. They are just specimen of larger classes of schemes. Es- sentially, we have to distinguish between semi-analytical methods, discretiza- tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They USE a computer only to. treated in more detail. They are just specimen of larger classes of schemes. Es- sentially, we have to distinguish between semi-analytical methods, discretiza- tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They USE a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func- tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi- tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap- plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4). Books, Science and Geography~~Physics~~Electricity, Electromagnetism & Magnetism, Numerical Methods In Computational Electrodynamics~~Book~~9783540676294~~Ursula Van Rienen, , , , , , , , , ,, [PU: Springer, Berlin/Heidelberg]
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Ursula Van Rienen, Ursula Van Rienen, U. Van Rienen:
Numerical Methods in Computational Electrodynamics: Linear Systems in Practical Applications (Lecture Notes in Computational Science and Engineering) - PaperbackISBN: 3540676295
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ISBN: 9783540676294
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Linear Systems in Practical Applications treated in more detail. They are just specimen of larger classes of schemes. Es sentially, we have to distinguish between semi-analytical methods, discretiza tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4). Bücher / Fremdsprachige Bücher / Englische Bücher 978-3-540-67629-4, Springer
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ISBN: 9783540676294
ID: 119657436
treated in more detail. They are just specimen of larger classes of schemes. Es sentially, we have to distinguish between semi-analytical methods, discretiza tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell´s equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens´ function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4). Linear Systems in Practical Applications Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Springer
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ISBN: 9783540676294
Paperback, [PU: Springer-Verlag Berlin and Heidelberg GmbH & Co. KG], Deals with the solution of large linear systems as they arise in computational electrodynamics. The text presents topics important for the solution of real life electromagnetic problems with numerical methods - covering all aspects ranging from numerical mathematics up to measurement techniques., Mathematical Theory Of Computation
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Title: | Numerical Methods in Computational Electrodynamics |
ISBN: | 3540676295 |
Details of the book - Numerical Methods in Computational Electrodynamics
EAN (ISBN-13): 9783540676294
ISBN (ISBN-10): 3540676295
Paperback
Publishing year: 2000
Publisher: Springer-Verlag GmbH
375 Pages
Weight: 0,675 kg
Book in our database since 02.06.2007 17:29:20
Book found last time on 07.03.2016 20:59:58
ISBN/EAN: 3540676295
ISBN - alternate spelling:
3-540-67629-5, 978-3-540-67629-4