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Time and Frequency Domain Solutions of EM Problems Using Integral Equations and a Hybrid Methodology

Posted By: fdts
Time and Frequency Domain Solutions of EM Problems Using Integral Equations and a Hybrid Methodology

Time and Frequency Domain Solutions of EM Problems Using Integral Equations and a Hybrid Methodology
by B. H. Jung, T. K. Sarkar, Y. Zhang, Z. Ji, M. Yuan and others
English | 2010 | ISBN: 0470487674 | 485 pages | PDF | 11.07 MB

Numerical solutions of electromagnetic field problems is an area of paramount interest in academia, industry and government. This book provides a compendium of solution techniques dealing with integral equations arising in electromagnetic field problems in time and frequency domains. Written by leading researchers in the field, it documents the authors' unique space/time separation approach using Laguerre polynomials. Numerous examples that illustrate the various methodologies and user-friendly computer codes make this volume highly accessible for engineers, researchers, and scientists.

From the Back Cover
The first to address the solution of integral equations in both time and frequency domains

Integral equations–based methods are among the most versatile techniques that one can use for the electromagnetic analysis of both conducting and piecewise homogeneous material bodies. They provide both efficient and accurate solutions for challenging problems, such as analysis of electrically large structures. Written by leading researchers in the field, Time and Frequency Domain Solutions of EM Problems Using Integral Equations and a Hybrid Methodology provides a compendium of solution techniques dealing with integral equations arising in electromagnetic field problems in the time and frequency domains.

This book deals primarily with the novel solution of time domain integral equations. It documents the authors' unique space/time separation approach using associated Laguerre functions. A hybrid method based simultaneously on the time and frequency domains is presented to illustrate how to go beyond the limitations of the hardware resources of a computer to solve challenging electrically large electromagnetic field problems. User-friendly electromagnetic analysis computer codes are provided along with examples illustrating the various methodologies. The book also:

- Provides a summary of the different types of spaces including the concept of mapping and projections leading to the formulation of operator equations
- Discusses the solution of frequency domain integral equations using the popular triangular discretizations and the RWG basis functions
- Describes how to solve time domain integral equations using the classic marching-on-in-time (MOT) and the new marching-on-in-degree (MOD) methodologies
- Presents a new, improved version of the marching-on-in-degree (MOD) methodology
- Presents a hybrid methodology by using early time and low frequency information to solve large problems no longer limited by the hardware resources of the computer

With sample computer programs and examples, this book is ideal for graduate students and scientists in electrical engineering and computational electromagnetics who are looking to gain a basic understanding of the numerical solution of integral equations in frequency and time domains. A unique text designed to increase understanding of the content through hands-on material, Time and Frequency Domain Solutions of EM Problems Using Integral Equations and a Hybrid Methodology is useful for both research and teaching.

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