Frequency Domain Hybrid Finite Element Methods in Electromagnetics / by John. L Volakis, Kubilay Sertel, Brian C Usner
By: Volakis, John Leonidas,, autor
Contributor(s): Sertel, Kubilay, autor
| Usner, Brian C.,, autor
Material type:
E-bookSeries: (Synthesis Lectures on Computational Electromagnetics, 1932-1716).Publisher: Cham : Springer International Publishing, 2006Edition: 1st edition 2006.Description: 1 recurso en línea (VIII, 148 páginas).ISBN: 9783031016943.Subject: Electromagnetismo
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | QC760.4.M37 2006 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.01113047 |
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| QC760.4 .M37 2006 EB Higher-Order FDTD Schemes for Waveguides and Antenna Structures | QC760.4.M37 2006 EB Mapped Vector Basis Functions for Electromagnetic Integral Equations | QC760.4.M37 2006 EB Introduction to the Finite Element Method in Electromagnetics | QC760.4.M37 2006 EB Frequency Domain Hybrid Finite Element Methods in Electromagnetics | QC760.4.M37 2007 EB Adaptive Mesh Refinement in Time-Domain Numerical Electromagnetics | QC760.4.M37 2011 EB Introduction to the Finite-Difference Time-Domain (FDTD) Method for Electromagnetics | QC760.4.M37 2012 EB Multiresolution Frequency Domain Technique for Electromagnetics |
Introduction -- Two-Dimensional Hybrid FE-BI -- Three-Dimensional Hybrid FE-BI: Formulation and Applications -- Hybrid Volume-Surface Integral Equation -- Periodic Structures -- Antenna Design and Optimization Using FE-BI Methods.
This book provides a brief overview of the popular Finite Element Method (FEM) and its hybrid versions for electromagnetics with applications to radar scattering, antennas and arrays, guided structures, microwave components, frequency selective surfaces, periodic media, and RF materials characterizations and related topics. It starts by presenting concepts based on Hilbert and Sobolev spaces as well as Curl and Divergence spaces for generating matrices, useful in all engineering simulation methods. It then proceeds to present applications of the finite element and finite element-boundary integral methods for scattering and radiation. Applications to periodic media, metamaterials and bandgap structures are also included. The hybrid volume integral equation method for high contrast dielectrics and is presented for the first time. Another unique feature of the book is the inclusion of design optimization techniques and their integration within commercial numerical analysis packages for shape and material design. To aid the reader with the method's utility, an entire chapter is devoted to two-dimensional problems. The book can be considered as an update on the latest developments since the publication of our earlier book (Finite Element Method for Electromagnetics, IEEE Press, 1998). The latter is certainly complementary companion to this one.
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