The Variational Method for Evaluation of Scattering of Electromagnetic Waves by Obstacles
Author | : Richard B. Kieburtz |
Publisher | : |
Total Pages | : 68 |
Release | : 1960 |
Genre | : Boundary value problems |
ISBN | : |
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Author | : Richard B. Kieburtz |
Publisher | : |
Total Pages | : 68 |
Release | : 1960 |
Genre | : Boundary value problems |
ISBN | : |
Author | : Richard B. Kieburtz |
Publisher | : |
Total Pages | : 53 |
Release | : 1961 |
Genre | : Boundary value problems |
ISBN | : |
Author | : Hyo J. Eom |
Publisher | : Springer Science & Business Media |
Total Pages | : 251 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 3642594875 |
The Fourier transform technique has been widely used in electrical engineer ing, which covers signal processing, communication, system control, electro magnetics, and optics. The Fourier transform-technique is particularly useful in electromagnetics and optics since it provides a convenient mathematical representation for wave scattering, diffraction, and propagation. Thus the Fourier transform technique has been long applied to the wave scattering problems that are often encountered in microwave antenna, radiation, diffrac tion, and electromagnetic interference. In order to u~derstand wave scattering in general, it is necessary to solve the wave equation subject to the prescribed boundary conditions. The purpose of this monograph is to present rigorous so lutions to the boundary-value problems by solving the wave equation based on the Fourier transform. In this monograph the technique of separation of vari ables is used to solve the wave equation for canonical scattering geometries such as conducting waveguide structures and rectangular/circular apertures. The Fourier transform, mode-matching, and residue calculus techniques are applied to obtain simple, analytic, and rapidly-convergent series solutions. The residue calculus technique is particularly instrumental in converting the solutions into series representations that are efficient and amenable to nu merical analysis. We next summarize the steps of analysis method for the scattering problems considered in this book. 1. Divide the scattering domain into closed and open regions. 2. Represent the scattered fields in the closed and open regions in terms of the Fourier series and transform, respectively. 3.
Author | : Ahmed Kishk |
Publisher | : BoD – Books on Demand |
Total Pages | : 362 |
Release | : 2012-11-14 |
Genre | : Technology & Engineering |
ISBN | : 9535108387 |
In this book, a wide range of different topics related to analytical as well as numerical solutions of problems related to scattering, propagation, radiation, and emission in different medium are discussed. Design of several devices and their measurements aspects are introduced. Topics related to microwave region as well as Terahertz and quasi-optical region are considered. Bi-isotropic metamaterial in optical region is investigated. Interesting numerical methods in frequency domain and time domain for scattering, radiation, forward as well as reverse problems and microwave imaging are summarized. Therefore, the book will satisfy different tastes for engineers interested for example in microwave engineering, antennas, and numerical methods.
Author | : Gerhard Kristensson |
Publisher | : |
Total Pages | : 764 |
Release | : 2016 |
Genre | : Electromagnetic waves |
ISBN | : 9781523104802 |
The main purpose of Scattering of Electromagnetic Waves by Obstacles is to give a theoretical treatment of the scattering phenomena, and to illustrate numerical computations of some canonical scattering problems for different geometries and materials.
Author | : Leopold B. Felsen |
Publisher | : John Wiley & Sons |
Total Pages | : 934 |
Release | : 1994-01-15 |
Genre | : Technology & Engineering |
ISBN | : 9780780310889 |
As relevant today as it was when it was first published 20 years ago, this book is a classic in the field. Nowhere else can you find more complete coverage of radiation and scattering of waves. The chapter: Asympotic Evaluation of Integrals is considered the definitive source for asympotic techniques. This book is essential reading for engineers, physicists and others involved in the fields of electromagnetics and acoustics. It is also an indispensable reference for advanced engineering courses.