Using clear, concise copy and many real-world application examples, this text provides a description of finite-element method (FEM) implementation, while the software provides the code and tools needed to solve the three major types of EM problems. The book provides an overview of basic FEM concepts, outlines the capabilities and advantages of employing FEM methods, defines key finite elements, and describes various hybrid methods and absorbing boundary conditions. The full package enables you to: analyze E- and H-plane waveguide discontinuities and devices; calculate the radiation diagram on principal planes of aperture antennas modelled as 2-D structures; create geometric models using a fully functional 2-D mesh generator; understand reflection from and transmission through 2-D inhomogenous periodic structures, such as dichroics and photonic crystals; compute the dispersion diagram of arbitrarily shaped inhomogenous isotropic lossless or lossy guiding structures; and analyze scattering from arbitrarily shaped inhomogenous 2-D objects.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
The classic 1998 Artech House book, "Quick Finite Elements for Electromagnetic Waves", has now been revised and expanded to bring microwave and antenna engineers up-to-date with the latest developments in the field. Practitioners find brand new discussions on important, cutting-edge topics, including finite elements in 3D, 3D resonant cavities, and 3D waveguide devices. Moreover, the second edition supplies you with MATLAB code on CD-ROM, making this resource easier to comprehend and use for a variety of microwave and antenna design projects. This practical book and accompanying software enables professionals to quickly and easily work out challenging microwave engineering and high-frequency electromagnetic problems using the finite element method (FEM). Easy-to-use finite element software contains ready-made MATLAB and FORTRAN source code that engineers can use immediately to solve a wide range of microwave and EM problems.
Giuseppe Pelosi is a professor in the Department of Electronic Engineering at the University of Florence, where he earned the Laurea (Doctor) degree in physics (cum laude). Roberto Coccioli is a faculty member at UCLA. He earned his Laurea (Doctor) degree, cum laude, in electrical engineering and a Ph.D. in telecommunications from the University of Florence. Stefano Selleri is an assistant professor at University of Florence. He received the Laurea (Doctor) degree, cum laude, in electrical engineering and a Ph.D. in telecommunications from the University of Florence.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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