Approximate Boundary Conditions In Electromagnetics

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Approximate Boundary Conditions in Electromagnetics

Author : Thomas B. A. Senior,John Leonidas Volakis
Publisher : IET
Page : 372 pages
File Size : 47,6 Mb
Release : 1995
Category : Mathematics
ISBN : 0852968493

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Approximate Boundary Conditions in Electromagnetics by Thomas B. A. Senior,John Leonidas Volakis Pdf

This book comprehensively describes a variety of methods for the approximate simulation of material surfaces.

Impedance Boundary Conditions In Electromagnetics

Author : Daniel J. Hoppe
Publisher : CRC Press
Page : 262 pages
File Size : 42,6 Mb
Release : 2018-10-08
Category : Technology & Engineering
ISBN : 9781482227840

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Impedance Boundary Conditions In Electromagnetics by Daniel J. Hoppe Pdf

Electromagnetic scattering from complex objects has been an area of in-depth research for many years. A variety of solution methodologies have been developed and utilised for the solution of ever increasingly complex problems. Among these methodologies, the subject of impedance boundary conditions has interested the authors for some time. In short, impedance boundary conditions allow one to replace a complex structure with an appropriate impedance relationship between the electric and magnetic fields on the surface of the object. This simplifies the solution of the problem considerably, allowing one to ignore the complexity of the internal structure beneath the surface. This book examines impedance boundary conditions in electromagnetics. The introductory chapter provides a presentation of the role of the impedance boundary conditions in solving practical electromagnetic problems and some historical background. One of the main objectives of this book is to present a unified and thorough discussion of this important subject. A method based on a spectral domain approach is presented to derive the Higher Order Impedance Boundary Conditions (HOIBC). The method includes all of the existing approximate boundary conditions, such as the Standard Impedence Boundary Condition, the Tensor Impedence Boundary Condition and the Generalised Impedance Boundary Conditions, as special cases. The special domain approach is applicable to complex coatings and surface treatments as well as simple dielectric coatings. The spectral domain approach is employed to determine the appropriate boundary conditions for planar dielectric coatings, chiral coatings and corregated conductors. The accuracy of the proposal boundary conditions is discussed. The approach is then extended to include the effects of curvature and is applied to curved dielectric and chiral coatings. Numerical data is presented to critically assess the accuracy of the results obtained using various forms of the impedence boundary conditions. A number of appendices that provide more detail on some of the topics addressed in the main body of the book and a selective list of references directly related to the topics addressed in this book are also included.

Boundary Conditions in Electromagnetics

Author : Ismo V. Lindell,Ari Sihvola
Publisher : John Wiley & Sons
Page : 272 pages
File Size : 49,7 Mb
Release : 2019-11-26
Category : Science
ISBN : 9781119632368

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Boundary Conditions in Electromagnetics by Ismo V. Lindell,Ari Sihvola Pdf

A comprehensive survey of boundary conditions as applied in antenna and microwave engineering, material physics, optics, and general electromagnetics research. Boundary conditions are essential for determining electromagnetic problems. Working with engineering problems, they provide analytic assistance in mathematical handling of electromagnetic structures, and offer synthetic help for designing new electromagnetic structures. Boundary Conditions in Electromagnetics describes the most-general boundary conditions restricted by linearity and locality, and analyzes basic plane-wave reflection and matching problems associated to a planar boundary in a simple-isotropic medium. This comprehensive text first introduces known special cases of particular familiar forms of boundary conditions — perfect electromagnetic conductor, impedance, and DB boundaries — and then examines various general forms of boundary conditions. Subsequent chapters discuss sesquilinear boundary conditions and practical computations on wave scattering by objects defined by various boundary conditions. The practical applications of less-common boundary conditions, such as for metamaterial and metasurface engineering, are referred to throughout the text. This book: Describes the mathematical analysis of fields associated to given boundary conditions Provides examples of how boundary conditions affect the scattering properties of a particle Contains ample in-chapter exercises and solutions, complete references, and a detailed index Includes appendices containing electromagnetic formulas, Gibbsian 3D dyadics, and four-dimensional formalism Boundary Conditions in Electromagnetics is an authoritative text for electrical engineers and physicists working in electromagnetics research, graduate or post-graduate students studying electromagnetics, and advanced readers interested in electromagnetic theory.

Electromagnetic Boundary Problems

Author : Edward F. Kuester,David C. Chang
Publisher : CRC Press
Page : 363 pages
File Size : 43,5 Mb
Release : 2015-10-28
Category : Technology & Engineering
ISBN : 9781498730280

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Electromagnetic Boundary Problems by Edward F. Kuester,David C. Chang Pdf

Electromagnetic Boundary Problems introduces the formulation and solution of Maxwell's equations describing electromagnetism. Based on a one-semester graduate-level course taught by the authors, the text covers material parameters, equivalence principles, field and source (stream) potentials, and uniqueness, as well as:Provides analytical solutions

Surface Impedance Boundary Conditions

Author : Sergey V. Yuferev,Nathan Ida
Publisher : CRC Press
Page : 412 pages
File Size : 55,6 Mb
Release : 2018-09-03
Category : Technology & Engineering
ISBN : 9781420044904

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Surface Impedance Boundary Conditions by Sergey V. Yuferev,Nathan Ida Pdf

Surface Impedance Boundary Conditions is perhaps the first effort to formalize the concept of SIBC or to extend it to higher orders by providing a comprehensive, consistent, and thorough approach to the subject. The product of nearly 12 years of research on surface impedance, this book takes the mystery out of the largely overlooked SIBC. It provides an understanding that will help practitioners select, use, and develop these efficient modeling tools for their own applications. Use of SIBC has often been viewed as an esoteric issue, and they have been applied in a very limited way, incorporated in computation as an ad hoc means of simplifying the treatment for specific problems. Apply a Surface Impedance "Toolbox" to Develop SIBCs for Any Application The book not only outlines the need for SIBC but also offers a simple, systematic method for constructing SIBC of any order based on a perturbation approach. The formulation of the SIBC within common numerical techniques—such as the boundary integral equations method, the finite element method, and the finite difference method—is discussed in detail and elucidated with specific examples. Since SIBC are often shunned because their implementation usually requires extensive modification of existing software, the authors have mitigated this problem by developing SIBCs, which can be incorporated within existing software without system modification. The authors also present: Conditions of applicability, and errors to be expected from SIBC inclusion Analysis of theoretical arguments and mathematical relationships Well-known numerical techniques and formulations of SIBC A practical set of guidelines for evaluating SIBC feasibility and maximum errors their use will produce A careful mix of theory and practical aspects, this is an excellent tool to help anyone acquire a solid grasp of SIBC and maximize their implementation potential.

Electromagnetic Field Near Conducting Half-Space

Author : Yuriy Vasetsky,Artur Zaporozhets
Publisher : Springer Nature
Page : 131 pages
File Size : 50,7 Mb
Release : 2023-09-12
Category : Technology & Engineering
ISBN : 9783031384233

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Electromagnetic Field Near Conducting Half-Space by Yuriy Vasetsky,Artur Zaporozhets Pdf

The book is devoted to the solution of one general problem of the theory of a three-dimensional quasi-stationary sinusoidal and pulse electromagnetic field. These studies, unlike many well-known works, are based on obtained exact analytical solution of the problem for the field, generated by external current sources near the conducting body with plane surface. The solution for the vector and scalar potentials, electric and magnetic intensities in the dielectric and conducting media is found without restrictions on the configuration of current sources, properties of the media and field frequency. Some general properties of field formation for arbitrary field in the considered system are obtained (in particular, full compensation by the field of the electric charge distributed on the interface between the media, the normal component of the induced external electric field and, accordingly, the equality to zero the components both of the current density and the electric field intensity perpendicular to the interface; the non-uniform electromagnetic field decreases in depth of conducting medium faster than uniform field). It is shown that the exact analytical solution depends on the values of the parameter proportional to the ratio of the field penetration depth to the distance between the external field sources and the body. The concept of strong skin effect is extended to the case of small value of the introduced parameter. A significant simplification of the expressions was obtained as an asymptotic expansion on this small parameter. In the case of pulsed fields approximate method gives the highest accuracy during important initial period of pulse time. For asymptotic expansion the approximate impedance boundary condition is generalized to the diffusion of non-uniform field into conducting medium. The book is intended for the researchers, postgraduate students and students specialized in theory and calculations of electromagnetic fields.

Electromagnetic Fields and Waves

Author : Eugene I. Nefyodov,Sergey M. Smolskiy
Publisher : Unknown
Page : 315 pages
File Size : 43,6 Mb
Release : 2019
Category : Electromagnetic fields
ISBN : 3319908480

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Electromagnetic Fields and Waves by Eugene I. Nefyodov,Sergey M. Smolskiy Pdf

This textbook is intended for a course in electromagnetism for upper undergraduate and graduate students. The main concepts and laws of classical macroscopic electrodynamics and initial information about generalized laws of modern electromagnetics are discussed, explaining some paradoxes of the modern theory. The reader then gets acquainted with electrodynamics methods of field analysis on the basis of wave equation solution. Emission physics are considered using an example of the Huygens-Fresnel-Kirchhoff canonic principle. The representation about strict electrodynamics task statement on the base of Maxwell equations, boundary conditions, emission conditions and the condition on the edge is given. Different classes of approximate boundary conditions are presented, which essentially simplify understanding of process physics. The canonic Fresnel functions are given and their generalization on the case of anisotropic impedance. The free waves in closed waveguides and in strip-slotted and edge-dielectric transmission lines are described. A large number of Mathcad programs for illustration of field patterns and its properties in different guiding structures are provided. The material is organized for self-study as well as classroom use.

Electromagnetic Fields

Author : István Vágó,Miklós Gyimesi
Publisher : Akademiai Kiads
Page : 440 pages
File Size : 47,7 Mb
Release : 1998
Category : Science
ISBN : UOM:39015043113300

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Electromagnetic Fields by István Vágó,Miklós Gyimesi Pdf

"The book is primarily aimed at experts working in electrical engineering and physics and intends to give an overview of the theory of electromagnetic fields and of the basic principles of their analytical and numerical analysis."--BOOK JACKET.Title Summary field provided by Blackwell North America, Inc. All Rights Reserved

Analytical Modeling in Applied Electromagnetics

Author : Sergei Tretyakov
Publisher : Artech House
Page : 288 pages
File Size : 42,8 Mb
Release : 2003
Category : Science
ISBN : 1580533671

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Analytical Modeling in Applied Electromagnetics by Sergei Tretyakov Pdf

Analytical Modeling in Applied Electromagnets encompasses the most complete treatment on the subject published to date, focusing on the nature of models in radio engineering. This leading-edge resource brings you detailed coverage of the latest topics, including metamaterials, photonic bandgaps and artificial impedance surfaces, and applies these concepts to a wide range of applications. The book provides you with working examples that are mainly directed to antenna applications, but the modeling methods and results can be used for other practical devices as well.

Surface Electromagnetics

Author : Fan Yang,Yahya Rahmat-Samii
Publisher : Cambridge University Press
Page : 489 pages
File Size : 47,5 Mb
Release : 2019-06-20
Category : Science
ISBN : 9781108470261

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Surface Electromagnetics by Fan Yang,Yahya Rahmat-Samii Pdf

Provides systematic coverage of the theory, physics, functional designs, and engineering applications of advanced electromagnetic surfaces.

Finite Element Method Electromagnetics

Author : John L. Volakis,Arindam Chatterjee,Leo C. Kempel
Publisher : John Wiley & Sons
Page : 364 pages
File Size : 46,8 Mb
Release : 1998-06-15
Category : Science
ISBN : 0780334256

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Finite Element Method Electromagnetics by John L. Volakis,Arindam Chatterjee,Leo C. Kempel Pdf

Employed in a large number of commercial electromagnetic simulation packages, the finite element method is one of the most popular and well-established numerical techniques in engineering. This book covers the theory, development, implementation, and application of the finite element method and its hybrid versions to electromagnetics. FINITE ELEMENT METHOD FOR ELECTROMAGNETICS begins with a step-by-step textbook presentation of the finite method and its variations then goes on to provide up-to-date coverage of three dimensional formulations and modern applications to open and closed domain problems. Worked out examples are included to aid the reader with the fine features of the method and the implementation of its hybridization with other techniques for a robust simulation of large scale radiation and scattering. The crucial treatment of local boundary conditions is carefully worked out in several stages in the book. Sponsored by: IEEE Antennas and Propagation Society.

Numerical Analysis of Electromagnetic Fields

Author : Pei-bai Zhou
Publisher : Springer Science & Business Media
Page : 419 pages
File Size : 40,7 Mb
Release : 2012-12-06
Category : Mathematics
ISBN : 9783642503191

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Numerical Analysis of Electromagnetic Fields by Pei-bai Zhou Pdf

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.

Propagation, Scattering and Dissipation of Electromagnetic Waves

Author : A. S. Ilʹinskiĭ,Grigoriĭ I︠A︡kovlevich Slepi︠a︡n,A. Ya Slepyan
Publisher : IET
Page : 292 pages
File Size : 55,5 Mb
Release : 1993
Category : Science
ISBN : 0863412831

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Propagation, Scattering and Dissipation of Electromagnetic Waves by A. S. Ilʹinskiĭ,Grigoriĭ I︠A︡kovlevich Slepi︠a︡n,A. Ya Slepyan Pdf

Aimed at physicists and engineers conducting theoretical research or designing microwave and millimetre-wave devices, this study explores methods of calculating microwave absorption in waveguides, resonators and periodic structures.

Direct and Inverse Electromagnetic Scattering

Author : A H Serbest,S Cloude
Publisher : CRC Press
Page : 292 pages
File Size : 44,7 Mb
Release : 1996-11-29
Category : Science
ISBN : 0582299640

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Direct and Inverse Electromagnetic Scattering by A H Serbest,S Cloude Pdf

Provides a review of developments in the fields of direct and inverse electromagnetic wave scattering. Contributions from leading researchers in these fields from all over the world are gathered in this book to discuss the state of the topic and directions for future research, starting from the fundamental structure of wave scattering problems and finishing with an assessment of the impact of this structure in applications

Electromagnetic Radiation, Scattering, and Diffraction

Author : Prabhakar H. Pathak,Robert J. Burkholder
Publisher : John Wiley & Sons
Page : 1156 pages
File Size : 52,6 Mb
Release : 2021-12-21
Category : Science
ISBN : 9781119810513

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Electromagnetic Radiation, Scattering, and Diffraction by Prabhakar H. Pathak,Robert J. Burkholder Pdf

Electromagnetic Radiation, Scattering, and Diffraction Discover a graduate-level text for students specializing in electromagnetic wave radiation, scattering, and diffraction for engineering applications In Electromagnetic Radiation, Scattering and Diffraction, distinguished authors Drs. Prabhakar H. Pathak and Robert J. Burkholder deliver a thorough exploration of the behavior of electromagnetic fields in radiation, scattering, and guided wave environments. The book tackles its subject from first principles and includes coverage of low and high frequencies. It stresses physical interpretations of the electromagnetic wave phenomena along with their underlying mathematics. The authors emphasize fundamental principles and provide numerous examples to illustrate the concepts contained within. Students with a limited undergraduate electromagnetic background will rapidly and systematically advance their understanding of electromagnetic wave theory until they can complete useful and important graduate-level work on electromagnetic wave problems. Electromagnetic Radiation, Scattering and Diffraction also serves as a practical companion for students trying to simulate problems with commercial EM software and trying to better interpret their results. Readers will also benefit from the breadth and depth of topics, such as: Basic equations governing all electromagnetic (EM) phenomena at macroscopic scales are presented systematically. Stationary and relativistic moving boundary conditions are developed. Waves in planar multilayered isotropic and anisotropic media are analyzed. EM theorems are introduced and applied to a variety of useful antenna problems. Modal techniques are presented for analyzing guided wave and periodic structures. Potential theory and Green's function methods are developed to treat interior and exterior EM problems. Asymptotic High Frequency methods are developed for evaluating radiation Integrals to extract ray fields. Edge and surface diffracted ray fields, as well as surface, leaky and lateral wave fields are obtained. A collective ray analysis for finite conformal antenna phased arrays is developed. EM beams are introduced and provide useful basis functions. Integral equations and their numerical solutions via the method of moments are developed. The fast multipole method is presented. Low frequency breakdown is studied. Characteristic modes are discussed. Perfect for graduate students studying electromagnetic theory, Electromagnetic Radiation, Scattering, and Diffraction is an invaluable resource for professional electromagnetic engineers and researchers working in this area.