Computational Methods for Electromagnetic and Optical Systems

Computational Methods for Electromagnetic and Optical Systems
Author: John M. Jarem,Partha P. Banerjee
Publsiher: CRC Press
Total Pages: 426
Release: 2016-04-19
Genre: Science
ISBN: 9781439891285

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The current rapid and complex advancement applications of electromagnetic (EM) and optical systems calls for a much needed update on the computational methods currently in use. Completely revised and reflecting ten years of develoments, this second edition of the bestselling Computational Methods for Electromagnetic and Optical Systems provides the

Computational Methods for Electromagnetic and Optical Systems Second Edition Solutions Manual

Computational Methods for Electromagnetic and Optical Systems  Second Edition   Solutions Manual
Author: CRC Press
Publsiher: Unknown
Total Pages: 135
Release: 2010-02-15
Genre: Electronic Book
ISBN: 1439804338

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Computational Methods for Electromagnetic and Optical Systems Second Edition

Computational Methods for Electromagnetic and Optical Systems  Second Edition
Author: John M. Jarem,Partha P. Banerjee
Publsiher: CRC Press
Total Pages: 434
Release: 2011
Genre: Science
ISBN: 9781439804230

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This text examines a variety of spectral computational techniques— including k-space theory, Floquet theory and beam propagation— that are used to analyze electromagnetic and optical problems. The authors tie together different applications in EM and optics in which the state variable method is used. Emphasizing the analysis of planar diffraction gratings using rigorous coupled wave analysis, the book presents many cases that are analyzed using a full-field vector approach to solve Maxwell’s equations in anisotropic media where a standard wave equation approach is intractable.

Computational Methods in Electromagnetic Compatibility

Computational Methods in Electromagnetic Compatibility
Author: Dragan Poljak,Khalil El Khamlichi Drissi
Publsiher: John Wiley & Sons
Total Pages: 428
Release: 2018-04-24
Genre: Science
ISBN: 9781119337171

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Offers a comprehensive overview of the recent advances in the area of computational electromagnetics Computational Method in Electromagnetic Compatibility offers a review of the most recent advances in computational electromagnetics. The authors—noted experts in the field—examine similar problems by taking different approaches related to antenna theory models and transmission line methods. They discuss various solution methods related to boundary integral equation techniques and finite difference techniques. The topics covered are related to realistic antenna systems including antennas for air traffic control or ground penetrating radar antennas; grounding systems (such as grounding systems for wind turbines); biomedical applications of electromagnetic fields (such as transcranial magnetic stimulation); and much more. The text features a number of illustrative computational examples and a reference list at the end of each chapter. The book is grounded in a rigorous theoretical approach and offers mathematical details of the formulations and solution methods. This important text: Provides a trade-off between a highly efficient transmission line approach and antenna theory models providing analysis of high frequency and transient phenomena Contains the newest information on EMC analysis and design principles Discusses electromagnetic field coupling to thin wire configurations and modeling in bioelectromagnetics Written for engineering students, senior researchers and practicing electrical engineers, Computational Method in Electromagnetic Compatibility provides a valuable resource in the design of equipment working in a common electromagnetic environment.

Computational Methods in Electromagnetic Compatibility

Computational Methods in Electromagnetic Compatibility
Author: Dragan Poljak,Khalil El Khamlichi Drissi
Publsiher: John Wiley & Sons
Total Pages: 432
Release: 2018-05-10
Genre: Science
ISBN: 9781119337072

Download Computational Methods in Electromagnetic Compatibility Book in PDF, Epub and Kindle

Offers a comprehensive overview of the recent advances in the area of computational electromagnetics Computational Method in Electromagnetic Compatibility offers a review of the most recent advances in computational electromagnetics. The authors—noted experts in the field—examine similar problems by taking different approaches related to antenna theory models and transmission line methods. They discuss various solution methods related to boundary integral equation techniques and finite difference techniques. The topics covered are related to realistic antenna systems including antennas for air traffic control or ground penetrating radar antennas; grounding systems (such as grounding systems for wind turbines); biomedical applications of electromagnetic fields (such as transcranial magnetic stimulation); and much more. The text features a number of illustrative computational examples and a reference list at the end of each chapter. The book is grounded in a rigorous theoretical approach and offers mathematical details of the formulations and solution methods. This important text: Provides a trade-off between a highly efficient transmission line approach and antenna theory models providing analysis of high frequency and transient phenomena Contains the newest information on EMC analysis and design principles Discusses electromagnetic field coupling to thin wire configurations and modeling in bioelectromagnetics Written for engineering students, senior researchers and practicing electrical engineers, Computational Method in Electromagnetic Compatibility provides a valuable resource in the design of equipment working in a common electromagnetic environment.

Computational Methods for Electromagnetic Inverse Scattering

Computational Methods for Electromagnetic Inverse Scattering
Author: Xudong Chen
Publsiher: John Wiley & Sons
Total Pages: 328
Release: 2018-03-20
Genre: Science
ISBN: 9781119312000

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A comprehensive and updated overview of the theory, algorithms and applications of for electromagnetic inverse scattering problems Offers the recent and most important advances in inverse scattering grounded in fundamental theory, algorithms and practical engineering applications Covers the latest, most relevant inverse scattering techniques like signal subspace methods, time reversal, linear sampling, qualitative methods, compressive sensing, and noniterative methods Emphasizes theory, mathematical derivation and physical insights of various inverse scattering problems Written by a leading expert in the field

Computational Methods for Electromagnetic Phenomena

Computational Methods for Electromagnetic Phenomena
Author: Wei Cai
Publsiher: Cambridge University Press
Total Pages: 135
Release: 2013-01-03
Genre: Technology & Engineering
ISBN: 9781139619844

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A unique and comprehensive graduate text and reference on numerical methods for electromagnetic phenomena, from atomistic to continuum scales, in biology, optical-to-micro waves, photonics, nanoelectronics and plasmas. The state-of-the-art numerical methods described include: • Statistical fluctuation formulae for the dielectric constant • Particle-Mesh-Ewald, Fast-Multipole-Method and image-based reaction field method for long-range interactions • High-order singular/hypersingular (Nyström collocation/Galerkin) boundary and volume integral methods in layered media for Poisson–Boltzmann electrostatics, electromagnetic wave scattering and electron density waves in quantum dots • Absorbing and UPML boundary conditions • High-order hierarchical Nédélec edge elements • High-order discontinuous Galerkin (DG) and Yee finite difference time-domain methods • Finite element and plane wave frequency-domain methods for periodic structures • Generalized DG beam propagation method for optical waveguides • NEGF(Non-equilibrium Green's function) and Wigner kinetic methods for quantum transport • High-order WENO and Godunov and central schemes for hydrodynamic transport • Vlasov-Fokker-Planck and PIC and constrained MHD transport in plasmas

Computational Electromagnetics with MATLAB Fourth Edition

Computational Electromagnetics with MATLAB  Fourth Edition
Author: Matthew N.O. Sadiku
Publsiher: CRC Press
Total Pages: 687
Release: 2018-07-20
Genre: Technology & Engineering
ISBN: 9781351365093

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This fourth edition of the text reflects the continuing increase in awareness and use of computational electromagnetics and incorporates advances and refinements made in recent years. Most notable among these are the improvements made to the standard algorithm for the finite-difference time-domain (FDTD) method and treatment of absorbing boundary conditions in FDTD, finite element, and transmission-line-matrix methods. It teaches the readers how to pose, numerically analyze, and solve EM problems, to give them the ability to expand their problem-solving skills using a variety of methods, and to prepare them for research in electromagnetism. Includes new homework problems in each chapter. Each chapter is updated with the current trends in CEM. Adds a new appendix on CEM codes, which covers commercial and free codes. Provides updated MATLAB code.