Parallel Finite-difference Time-domain Method
Title | Parallel Finite-difference Time-domain Method PDF eBook |
Author | Wenhua Yu |
Publisher | Artech House Publishers |
Pages | 284 |
Release | 2006 |
Genre | Computers |
ISBN |
The finite-difference time-domain (FTDT) method has revolutionized antenna design and electromagnetics engineering. This book raises the FDTD method to the next level by empowering it with the vast capabilities of parallel computing. It shows engineers how to exploit the natural parallel properties of FDTD to improve the existing FDTD method and to efficiently solve more complex and large problem sets. Professionals learn how to apply open source software to develop parallel software and hardware to run FDTD in parallel for their projects. The book features hands-on examples that illustrate th.
Computational Electrodynamics
Title | Computational Electrodynamics PDF eBook |
Author | Allen Taflove |
Publisher | Artech House Antenna Library a |
Pages | 632 |
Release | 1995 |
Genre | Mathematics |
ISBN |
This work represents a university text and professional/research reference on the finite-difference time-domain computational solution method for Maxwell's equations. Sections cover numerical stability, numerical dispersion and dispersive, nonlinear and gain methods of FD-TD and antenna analysis.
The Finite Difference Time Domain Method for Electromagnetics
Title | The Finite Difference Time Domain Method for Electromagnetics PDF eBook |
Author | Karl S. Kunz |
Publisher | Routledge |
Pages | 466 |
Release | 2018-05-04 |
Genre | Science |
ISBN | 1351410474 |
The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease. The simplicity of the approach coupled with its far-reaching usefulness, create the powerful, popular method presented in The Finite Difference Time Domain Method for Electromagnetics. This volume offers timeless applications and formulations you can use to treat virtually any material type and geometry. The Finite Difference Time Domain Method for Electromagnetics explores the mathematical foundations of FDTD, including stability, outer radiation boundary conditions, and different coordinate systems. It covers derivations of FDTD for use with PEC, metal, lossy dielectrics, gyrotropic materials, and anisotropic materials. A number of applications are completely worked out with numerous figures to illustrate the results. It also includes a printed FORTRAN 77 version of the code that implements the technique in three dimensions for lossy dielectric materials. There are many methods for analyzing electromagnetic interactions for problem geometries. With The Finite Difference Time Domain Method for Electromagnetics, you will learn the simplest, most useful of these methods, from the basics through to the practical applications.
The Finite-Difference Time-Domain Method for Electromagnetics with MATLAB® Simulations
Title | The Finite-Difference Time-Domain Method for Electromagnetics with MATLAB® Simulations PDF eBook |
Author | Atef Z. Elsherbeni |
Publisher | IET |
Pages | 559 |
Release | 2015-11-25 |
Genre | Computers |
ISBN | 1613531753 |
This is one of the best books on computational electromagnetics both for graduate students focusing on electromagnetics problems and for practicing engineering professionals in industry and government. It is designed as an advanced textbook and self-study guide to the FDTD method of solving EM problems and simulations. This latest edition has been expanded to include 5 entirely new chapters on advanced topics in the mainstream of FDTD practice. In addition to advanced techniques it also includes applications and examples, and some 'tricks and traps' of using MATLAB to achieve them. Compared to the previous version the second edition is more complete and is a good reference for someone who is performing FDTD research. This book is part of the ACES Series on Computational Electromagnetics and Engineering. Supplementary material can be found at the IET's ebook page Supplementary materials for professors are available upon request via email to [email protected].
CUDA Fortran for Scientists and Engineers
Title | CUDA Fortran for Scientists and Engineers PDF eBook |
Author | Gregory Ruetsch |
Publisher | Elsevier |
Pages | 339 |
Release | 2013-09-11 |
Genre | Computers |
ISBN | 0124169724 |
CUDA Fortran for Scientists and Engineers shows how high-performance application developers can leverage the power of GPUs using Fortran, the familiar language of scientific computing and supercomputer performance benchmarking. The authors presume no prior parallel computing experience, and cover the basics along with best practices for efficient GPU computing using CUDA Fortran. To help you add CUDA Fortran to existing Fortran codes, the book explains how to understand the target GPU architecture, identify computationally intensive parts of the code, and modify the code to manage the data and parallelism and optimize performance. All of this is done in Fortran, without having to rewrite in another language. Each concept is illustrated with actual examples so you can immediately evaluate the performance of your code in comparison. Leverage the power of GPU computing with PGI’s CUDA Fortran compiler Gain insights from members of the CUDA Fortran language development team Includes multi-GPU programming in CUDA Fortran, covering both peer-to-peer and message passing interface (MPI) approaches Includes full source code for all the examples and several case studies Download source code and slides from the book's companion website
Electromagnetic Simulation Techniques Based on the FDTD Method
Title | Electromagnetic Simulation Techniques Based on the FDTD Method PDF eBook |
Author | W. Yu |
Publisher | John Wiley & Sons |
Pages | 221 |
Release | 2009-09-15 |
Genre | Technology & Engineering |
ISBN | 0470502037 |
Bridges the gap between FDTD theory and the implementation of practical simulation techniques This is the first publication that guides readers step by step through the implementation of electromagnetic simulation techniques based on FDTD methods. These simulation techniques serve as an essential bridge between FDTD methods and their applications. Moreover, the book helps readers better understand the underlying logic of FDTD methods so that they can design FDTD projects using either commercial electromagnetic software packages or their own codes in order to solve practical engineering problems. The book begins with two chapters that introduce the basic concepts of the 3-D Cartesian FDTD method, followed by discussions of advanced FDTD methods such as conformal techniques, dispersive media, circuit elements, and near-to-far field transformation. Next, the book: Presents basic concepts of parallel processing techniques and systems, including parallel FDTD techniques and systems Explores simulation techniques based on FDTD methods Illustrates practical simulation techniques using engineering applications Introduces advanced simulation techniques Each chapter concludes with references to help readers investigate particular topics in greater depth. Each chapter also includes problem sets that challenge readers to put their new FDTD and simulation skills into practice. By bridging the gap between FDTD theory and practical simulation techniques, this publication is an invaluable guide for students and engineers who need to solve a wide range of design problems in RF, antenna, and microwave engineering.
Introduction to the Finite-Difference Time-Domain (FDTD) Method for Electromagnetics
Title | Introduction to the Finite-Difference Time-Domain (FDTD) Method for Electromagnetics PDF eBook |
Author | Stephen D. Gedney |
Publisher | Morgan & Claypool Publishers |
Pages | 251 |
Release | 2011 |
Genre | Computers |
ISBN | 160845522X |
Provides a comprehensive tutorial of the most widely used method for solving Maxwell's equations - the Finite Difference Time-Domain Method. This book is an essential guide for students, researchers, and professional engineers. The book provides all the background required to either research or apply the FDTD method for the solution of Maxwell's equations to practical problems in engineering and science.