Numerical Analysis For Electromagnetic Integral Equations
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Numerical Analysis for Electromagnetic Integral Equations
Author | : Karl F. Warnick |
Publsiher | : Artech House |
Total Pages | : 234 |
Release | : 2008 |
Genre | : Mathematics |
ISBN | : 9781596933347 |
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Introduction -- Surface integral equation formulations and the method of moments -- Error analysis of the EFIE / with W.C. Chew -- Error analysis of the MFIE and CFIE / with C.P. Davis -- Geometrical singularities and the flat strip -- Resonant structures -- Error analysis for 3D problems -- Higher-order basis functions / with A.F. Peterson -- Operator spectra and iterative solution methods.
Integral Equation Methods for Electromagnetics
Author | : Nobuaki Kumagai,N. Morita,Joseph R. Mautz |
Publsiher | : Artech House Publishers |
Total Pages | : 368 |
Release | : 1990 |
Genre | : Mathematics |
ISBN | : UCSD:31822007667447 |
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Details the methods for solving electromagnetic wave problems using the integral equation formula. This text limits the use of mathematics to the level of standard undergraduate students and explains all the derivations and transformations of equations in detail.
Integral Equations and Iteration Methods in Electromagnetic Scattering
Author | : A. B. Samokhin |
Publsiher | : Walter de Gruyter |
Total Pages | : 112 |
Release | : 2013-03-12 |
Genre | : Mathematics |
ISBN | : 9783110942040 |
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Numerical Methods in Electromagnetism
Author | : M. V.K. Chari,Sheppard Salon |
Publsiher | : Academic Press |
Total Pages | : 783 |
Release | : 2000 |
Genre | : Mathematics |
ISBN | : 9780126157604 |
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Electromagnetics is the foundation of our electric technology. It describes the fundamental principles upon which electricity is generated and used. This includes electric machines, high voltage transmission, telecommunication, radar, and recording and digital computing. Numerical Methods in Electromagnetism will serve both as an introductory text for graduate students and as a reference book for professional engineers and researchers. This book leads the uninitiated into the realm of numerical methods for solving electromagnetic field problems by examples and illustrations. Detailed descriptions of advanced techniques are also included for the benefit of working engineers and research students. Comprehensive descriptions of numerical methods In-depth introduction to finite differences, finite elements, and integral equations Illustrations and applications of linear and nonlinear solutions for multi-dimensional analysis Numerical examples to facilitate understanding of the methods Appendices for quick reference of mathematical and numerical methods employed
Numerical Analysis of Electromagnetic Fields
Author | : Pei-bai Zhou |
Publsiher | : Springer Science & Business Media |
Total Pages | : 419 |
Release | : 2012-12-06 |
Genre | : Mathematics |
ISBN | : 9783642503191 |
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Numerical methods for solving boundary value problems have developed rapidly. Knowledge of these methods is important both for engineers and scientists. There are many books published that deal with various approximate methods such as the finite element method, the boundary element method and so on. However, there is no textbook that includes all of these methods. This book is intended to fill this gap. The book is designed to be suitable for graduate students in engineering science, for senior undergraduate students as well as for scientists and engineers who are interested in electromagnetic fields. Objective Numerical calculation is the combination of mathematical methods and field theory. A great number of mathematical concepts, principles and techniques are discussed and many computational techniques are considered in dealing with practical problems. The purpose of this book is to provide students with a solid background in numerical analysis of the field problems. The book emphasizes the basic theories and universal principles of different numerical methods and describes why and how different methods work. Readers will then understand any methods which have not been introduced and will be able to develop their own new methods. Organization Many of the most important numerical methods are covered in this book. All of these are discussed and compared with each other so that the reader has a clear picture of their particular advantage, disadvantage and the relation between each of them. The book is divided into four parts and twelve chapters.
Analysis and Numerical Solution of an Integral Equation Method for Electromagnetic Scattering from a Cavity in a Ground Plane
![Analysis and Numerical Solution of an Integral Equation Method for Electromagnetic Scattering from a Cavity in a Ground Plane](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Eric T. Howe |
Publsiher | : Unknown |
Total Pages | : 80 |
Release | : 2001-09-01 |
Genre | : Electromagnetic waves |
ISBN | : 1423525531 |
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In this research the electromagnetic scattering of a plane wave from a two-dimensional cavity embedded in an infinite, perfectly conducting ground plane is investigated. The plane wave is assumed to be under transverse electric (TE) polarization with respect to the x-axis. The cavity may be empty or filled with an arbitrary homogeneous, lossy material. A coupled set of scalar integral equations that govern the electromagnetic scattering is implemented. An approximate solution to the scalar integral equations is found via a Method of Moments (MoM) algorithm. The algorithm is implemented in a computer code, and approximations to the total magnetic field on the cavity surface and aperture as well as the normal derivative of the total magnetic field on the cavity aperture are obtained. These fields are then used to calculate the two-dimensional monostatic RCS signatures of various test cavities. The numerical results from the algorithm are shown to agree well with the RCS signatures calculated by other well-known methods and published results. In addition to being accurate, the algorithm is very computationally efficient. The process results in simply solving a relatively small, well-conditioned matrix system for each incident angle to produce the unknown fields.
Numerical Methods for Engineering
Author | : Karl F. Warnick |
Publsiher | : SciTech Publishing |
Total Pages | : 376 |
Release | : 2020-09-26 |
Genre | : Technology & Engineering |
ISBN | : 1839530731 |
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The revised and updated second edition of this textbook teaches students to create computer codes used to engineer antennas, microwave circuits, and other critical technologies for wireless communications and other applications of electromagnetic fields and waves. Worked code examples are provided for MATLAB technical computing software.
Integral Equation Methods for Electromagnetics
![Integral Equation Methods for Electromagnetics](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Nagayoshi Morita |
Publsiher | : Unknown |
Total Pages | : 354 |
Release | : 1990-01-01 |
Genre | : Electronic Book |
ISBN | : 0608013471 |
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