A Least Squares Finite Element Method For Electromagnetic Scattering Problems

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The least-squares finite element method (LSFEM) is applied to electromagnetic scattering and radar cross section (RCS) calculations. In contrast to most existing numerical approaches, in which divergence-free constraints are omitted, the LSFF-M directly incorporates two divergence equations in the discretization process. The importance of including the divergence equations is demonstrated by showing that otherwise spurious solutions with large divergence occur near the scatterers. The LSFEM is based on unstructured grids and possesses full flexibility in handling complex geometry and local refinement Moreover, the LSFEM does not require any special handling, such as upwinding, staggered grids, artificial dissipation, flux-differencing, etc. Implicit time discretization is used and the scheme is unconditionally stable. By using a matrix-free iterative method, the computational cost and memory requirement for the present scheme is competitive with other approaches. The accuracy of the LSFEM is verified by several benchmark test problems. Wu, Jie and Jiang, Bo-nan Glenn Research Center NCC3-483; RTOP 505-90-5K...

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Author : National Aeronautics and Space Administration (NASA)
Publisher : Createspace Independent Publishing Platform
Release : 2018-06-28
File : 36 Pages
ISBN-13 : 1722004959


A Least Squares Finite Element Method For Electromagnetic Scattering Problems

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Genre : Electromagnetic waves
Author : Jie Wu
Publisher :
Release : 1996
File : 38 Pages
ISBN-13 : NASA:31769000705494


Finite Element And Finite Difference Methods In Electromagnetic Scattering

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Genre : Electromagnetic theory
Author : Michael A. Morgan
Publisher : Elsevier Science & Technology
Release : 1990
File : 408 Pages
ISBN-13 : UCSD:31822004803318


The Least Squares Finite Element Method

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This is the first monograph on the subject, providing a comprehensive introduction to the LSFEM method for numerical solution of PDEs. LSFEM is simple, efficient and robust, and can solve a wide range of problems in fluid dynamics and electromagnetics.

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Genre : Science
Author : Bo-nan Jiang
Publisher : Springer Science & Business Media
Release : 2013-03-14
File : 425 Pages
ISBN-13 : 9783662037409


Finite Elements For Wave Electromagnetics

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Genre : Mathematics
Author : IEEE Antennas and Propagation Society
Publisher : Institute of Electrical & Electronics Engineers(IEEE)
Release : 1994
File : 560 Pages
ISBN-13 : STANFORD:36105009792149


The Finite Element Method In Electromagnetics

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A new edition of the leading textbook on the finite element method, incorporating major advancements and further applications in the field of electromagnetics The finite element method (FEM) is a powerful simulation technique used to solve boundary-value problems in a variety of engineering circumstances. It has been widely used for analysis of electromagnetic fields in antennas, radar scattering, RF and microwave engineering, high-speed/high-frequency circuits, wireless communication, electromagnetic compatibility, photonics, remote sensing, biomedical engineering, and space exploration. The Finite Element Method in Electromagnetics, Third Edition explains the method’s processes and techniques in careful, meticulous prose and covers not only essential finite element method theory, but also its latest developments and applications—giving engineers a methodical way to quickly master this very powerful numerical technique for solving practical, often complicated, electromagnetic problems. Featuring over thirty percent new material, the third edition of this essential and comprehensive text now includes: A wider range of applications, including antennas, phased arrays, electric machines, high-frequency circuits, and crystal photonics The finite element analysis of wave propagation, scattering, and radiation in periodic structures The time-domain finite element method for analysis of wideband antennas and transient electromagnetic phenomena Novel domain decomposition techniques for parallel computation and efficient simulation of large-scale problems, such as phased-array antennas and photonic crystals Along with a great many examples, The Finite Element Method in Electromagnetics is an ideal book for engineering students as well as for professionals in the field.

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Genre : Science
Author : Jian-Ming Jin
Publisher : John Wiley & Sons
Release : 2015-02-18
File : 728 Pages
ISBN-13 : 9781118842027


Wideband Solutions Of Two Dimensional Electromagnetic Scattering Problems By Means Of A Novel Combination Of Finite Element Method Fem Or Extended Boundary Condition Method Ebcm And Pade Approximation

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Genre : Electrical engineering
Author : Naser Ahmad Abu-Zaid
Publisher :
Release : 2001
File : 129 Pages
ISBN-13 : OCLC:49547583


Introduction To The Finite Element Method In Electromagnetics

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This series lecture is an introduction to the finite element method with applications in electromagnetics. The finite element method is a numerical method that is used to solve boundary-value problems characterized by a partial differential equation and a set of boundary conditions. The geometrical domain of a boundary-value problem is discretized using sub-domain elements, called the finite elements, and the differential equation is applied to a single element after it is brought to a “weak” integro-differential form. A set of shape functions is used to represent the primary unknown variable in the element domain. A set of linear equations is obtained for each element in the discretized domain. A global matrix system is formed after the assembly of all elements. This lecture is divided into two chapters. Chapter 1 describes one-dimensional boundary-value problems with applications to electrostatic problems described by the Poisson's equation. The accuracy of the finite element method is evaluated for linear and higher order elements by computing the numerical error based on two different definitions. Chapter 2 describes two-dimensional boundary-value problems in the areas of electrostatics and electrodynamics (time-harmonic problems). For the second category, an absorbing boundary condition was imposed at the exterior boundary to simulate undisturbed wave propagation toward infinity. Computations of the numerical error were performed in order to evaluate the accuracy and effectiveness of the method in solving electromagnetic problems. Both chapters are accompanied by a number of Matlab codes which can be used by the reader to solve one- and two-dimensional boundary-value problems. These codes can be downloaded from the publisher's URL: www.morganclaypool.com/page/polycarpou This lecture is written primarily for the nonexpert engineer or the undergraduate or graduate student who wants to learn, for the first time, the finite element method with applications to electromagnetics. It is also targeted for research engineers who have knowledge of other numerical techniques and want to familiarize themselves with the finite element method. The lecture begins with the basics of the method, including formulating a boundary-value problem using a weighted-residual method and the Galerkin approach, and continues with imposing all three types of boundary conditions including absorbing boundary conditions. Another important topic of emphasis is the development of shape functions including those of higher order. In simple words, this series lecture provides the reader with all information necessary for someone to apply successfully the finite element method to one- and two-dimensional boundary-value problems in electromagnetics. It is suitable for newcomers in the field of finite elements in electromagnetics.

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Genre : Technology & Engineering
Author : Anastasis Polycarpou
Publisher : Springer Nature
Release : 2022-05-31
File : 115 Pages
ISBN-13 : 9783031016899


Finite Element Method For Electromagnetics

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The finite element methods 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.

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Genre : Antennas (Electronics)
Author : John Leonidas Volakis
Publisher : Universities Press
Release : 1998
File : 370 Pages
ISBN-13 : 8173713898


Finite Element Methods For Maxwell S Equations

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Finite Element Methods For Maxwell's Equations is the first book to present the use of finite elements to analyse Maxwell's equations. This book is part of the Numerical Analysis and Scientific Computation Series.

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Genre : Mathematics
Author : Peter Monk
Publisher : Oxford University Press
Release : 2003-04-17
File : 465 Pages
ISBN-13 : 9780198508885