Multigrid Finite Element Methods for Electromagnetic Field Modeling

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9780471741107: Multigrid Finite Element Methods for Electromagnetic Field Modeling

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Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.

Quatrième de couverture :

This is the first comprehensive monograph that featuresstate–of–the–art multigrid methods for enhancing the modelingversatility, numerical robustness, and computational efficiency ofone of the most popular classes of numerical electromagnetic fieldmodeling methods: the method of finite elements. The focus of thepublication is the development of robust preconditioners for theiterative solution of electromagnetic field boundary value problems(BVPs) discretized by means of finite methods.

Specifically, the authors set forth their own successfulattempts to utilize concepts from multigrid and multilevel methodsfor the effective preconditioning of matrices resulting from theapproximation of electromagnetic BVPs using finite methods.Following the authors′ careful explanations and step–by–stepinstruction, readers can duplicate the authors′ results and takeadvantage of today′s state–of–the–art multigrid/multilevelpreconditioners for finite element–based iterative electromagneticfield solvers.

Among the highlights of coverage are:

  • Application of multigrid, multilevel, and hybridmultigrid/multilevel preconditioners to electromagnetic scatteringand radiation problems
  • Broadband, robust numerical modeling of passive microwavecomponents and circuits
  • Robust, finite element–based modal analysis of electromagneticwaveguides and cavities
  • Application of Krylov subspace–based methodologies forreduced–order macromodeling of electromagnetic devices andsystems
  • Finite element modeling of electromagnetic waves in periodicstructures

The authors provide more than thirty detailed algorithmsalongside pseudo–codes to assist readers with practical computerimplementation. In addition, each chapter includes an applicationssection with helpful numerical examples that validate the authors′methodologies and demonstrate their computational efficiency androbustness.

This groundbreaking book, with its coverage of an exciting newenabling computer–aided design technology, is an essentialreference for computer programmers, designers, and engineers, aswell as graduate students in engineering and applied physics.

Biographie de l'auteur :

Dr.Yu Zhu has been a member of the consulting staff inCustom IC at Cadence Design Systems, Inc. since 2002.  Heearned his B.S. in Electrical Engineering at Nanjing University in1995, his M.S. at Ohio State University in 1998, and his Ph.D. atUniversity of Illinois @ Urbana–Champaign in 2002.  He is amember of the IEEE and SigmaXi.

Dr. Andreas Cangellaris has been a full professor atUniversity of Illinois @ Urbana–Champaign since 1997.  Hisresearch work has been in the area of applied and computationalelectromagnetics with emphasis on thier application to electricalmodeling simulation of RF/microwave components and systems,high–speed digital interconnects at the board, package, and chiplevel, as well as the modeling and simulation of electromagneticcompatibility and electromagnetic interference.  He hasco–authored more than 150 refereed papers and three book chapterson topics related to computational electromagnetics andinterconnects and package modeling and simulation.  He waselected a Fellow of the IEEE in January 2000.

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1.

Zhu, Yu;Cangellaris, Andreas C.
Edité par Piscataway, New Jersey, U.S.A.: IEEE (2006)
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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LINDABOOK
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Description du livre Piscataway, New Jersey, U.S.A.: IEEE, 2006. Hardcover. État : New. Ship out 1-2 business day,Brand new,US edition, Free tracking number usually 2-4 biz days delivery to worldwide Same shipping fee with US, Canada,Europe country, Australia, please use your post office system to track the item, item will ship out from either LA or Asia,c. N° de réf. du libraire ABE-5132027534

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Edité par John Wiley Sons Inc, United States (2006)
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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Description du livre John Wiley Sons Inc, United States, 2006. Hardback. État : New. New.. 254 x 176 mm. Language: English . Brand New Book. This is the first comprehensive monograph that features state-of-the-art multigrid methods for enhancing the modeling versatility, numerical robustness, and computational efficiency of one of the most popular classes of numerical electromagnetic field modeling methods: the method of finite elements. The focus of the publication is the development of robust preconditioners for the iterative solution of electromagnetic field boundary value problems (BVPs) discretized by means of finite methods. Specifically, the authors set forth their own successful attempts to utilize concepts from multigrid and multilevel methods for the effective preconditioning of matrices resulting from the approximation of electromagnetic BVPs using finite methods. Following the authors careful explanations and step-by-step instruction, readers can duplicate the authors results and take advantage of today s state-of-the-art multigrid/multilevel preconditioners for finite element-based iterative electromagnetic field solvers. Among the highlights of coverage are: Application of multigrid, multilevel, and hybrid multigrid/multilevel preconditioners to electromagnetic scattering and radiation problems Broadband, robust numerical modeling of passive microwave components and circuits Robust, finite element-based modal analysis of electromagnetic waveguides and cavities Application of Krylov subspace-based methodologies for reduced-order macromodeling of electromagnetic devices and systems Finite element modeling of electromagnetic waves in periodic structures The authors provide more than thirty detailed algorithms alongside pseudo-codes to assist readers with practical computer implementation. In addition, each chapter includes an applications section with helpful numerical examples that validate the authors methodologies and demonstrate their computational efficiency and robustness. This groundbreaking book, with its coverage of an exciting new enabling computer-aided design technology, is an essential reference for computer programmers, designers, and engineers, as well as graduate students in engineering and applied physics. N° de réf. du libraire AAH9780471741107

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Edité par John Wiley Sons Inc, United States (2006)
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
Neuf(s) Couverture rigide Quantité : 1
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The Book Depository
(London, Royaume-Uni)
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Description du livre John Wiley Sons Inc, United States, 2006. Hardback. État : New. New.. 254 x 176 mm. Language: English . Brand New Book. This is the first comprehensive monograph that features state-of-the-art multigrid methods for enhancing the modeling versatility, numerical robustness, and computational efficiency of one of the most popular classes of numerical electromagnetic field modeling methods: the method of finite elements. The focus of the publication is the development of robust preconditioners for the iterative solution of electromagnetic field boundary value problems (BVPs) discretized by means of finite methods. Specifically, the authors set forth their own successful attempts to utilize concepts from multigrid and multilevel methods for the effective preconditioning of matrices resulting from the approximation of electromagnetic BVPs using finite methods. Following the authors careful explanations and step-by-step instruction, readers can duplicate the authors results and take advantage of today s state-of-the-art multigrid/multilevel preconditioners for finite element-based iterative electromagnetic field solvers. Among the highlights of coverage are: Application of multigrid, multilevel, and hybrid multigrid/multilevel preconditioners to electromagnetic scattering and radiation problems Broadband, robust numerical modeling of passive microwave components and circuits Robust, finite element-based modal analysis of electromagnetic waveguides and cavities Application of Krylov subspace-based methodologies for reduced-order macromodeling of electromagnetic devices and systems Finite element modeling of electromagnetic waves in periodic structures The authors provide more than thirty detailed algorithms alongside pseudo-codes to assist readers with practical computer implementation. In addition, each chapter includes an applications section with helpful numerical examples that validate the authors methodologies and demonstrate their computational efficiency and robustness. This groundbreaking book, with its coverage of an exciting new enabling computer-aided design technology, is an essential reference for computer programmers, designers, and engineers, as well as graduate students in engineering and applied physics. N° de réf. du libraire AAH9780471741107

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Yu Zhu
Edité par Wileyand#8211;Blackwell (2006)
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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Description du livre Wileyand#8211;Blackwell, 2006. HRD. État : New. New Book. Shipped from UK in 4 to 14 days. Established seller since 2000. N° de réf. du libraire FW-9780471741107

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Yu Zhu, Andreas C. Cangellaris
Edité par John Wiley & Sons Inc
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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Description du livre John Wiley & Sons Inc. Hardback. État : new. BRAND NEW, Multigrid Finite Element Methods for Electromagnetic Field Modeling, Yu Zhu, Andreas C. Cangellaris, This is the first comprehensive monograph that features state-of-the-art multigrid methods for enhancing the modeling versatility, numerical robustness, and computational efficiency of one of the most popular classes of numerical electromagnetic field modeling methods: the method of finite elements. The focus of the publication is the development of robust preconditioners for the iterative solution of electromagnetic field boundary value problems (BVPs) discretized by means of finite methods. Specifically, the authors set forth their own successful attempts to utilize concepts from multigrid and multilevel methods for the effective preconditioning of matrices resulting from the approximation of electromagnetic BVPs using finite methods. Following the authors' careful explanations and step-by-step instruction, readers can duplicate the authors' results and take advantage of today's state-of-the-art multigrid/multilevel preconditioners for finite element-based iterative electromagnetic field solvers. Among the highlights of coverage are: Application of multigrid, multilevel, and hybrid multigrid/multilevel preconditioners to electromagnetic scattering and radiation problems Broadband, robust numerical modeling of passive microwave components and circuits Robust, finite element-based modal analysis of electromagnetic waveguides and cavities Application of Krylov subspace-based methodologies for reduced-order macromodeling of electromagnetic devices and systems Finite element modeling of electromagnetic waves in periodic structures The authors provide more than thirty detailed algorithms alongside pseudo-codes to assist readers with practical computer implementation. In addition, each chapter includes an applications section with helpful numerical examples that validate the authors' methodologies and demonstrate their computational efficiency and robustness. This groundbreaking book, with its coverage of an exciting new enabling computer-aided design technology, is an essential reference for computer programmers, designers, and engineers, as well as graduate students in engineering and applied physics. N° de réf. du libraire B9780471741107

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Yu Zhu
Edité par Wiley-IEEE Press (2006)
ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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Description du livre Wiley-IEEE Press, 2006. État : New. Brand New, Unread Copy in Perfect Condition. A+ Customer Service! Summary: List of Figures. List of Tables. Preface. Acknowledgments. 1. Introduction. 2. Hierarchical Basis Functions for Triangles and Tetrahedra. 3. Finite Element Formulations of Electromagnetic BVPs. 4. Iterative Methods, Preconditioners, and Multigrid. 5. Nested Multigrid Preconditioner. 6. Nested Multigrid Vector and Scaler Potential Preconditioner. 7. Hierarchical Multilevel and Hybrid Potential Preconditioners. 8. Krylov-Subspace Based Eigenvalue Analysis. 9. Two-Dimensional Eigenvalue Analysis of Waveguides. 10. Three-Dimensional Eigenvalue Analysis of Resonators. 11. Model Order Reduction of Electromagnetic Systems. 12. Finite Element Analysis of Periodic Structures. Appendix A: Identities and Theorems from Vector Calculus. Index. N° de réf. du libraire ABE_book_new_0471741108

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Yu Zhu
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Description du livre Wiley-IEEE Press, 2006. Hardcover. État : New. book. N° de réf. du libraire 0471741108

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Yu Zhu/ Andreas C. Cangellaris
Edité par IEEE (2006)
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Description du livre IEEE, 2006. Hardcover. État : Brand New. 1st edition. 408 pages. 10.00x7.00x0.75 inches. In Stock. N° de réf. du libraire __0471741108

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Yu Zhu (Editor), Andreas C. Cangellaris (Editor)
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ISBN 10 : 0471741108 ISBN 13 : 9780471741107
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Description du livre Wiley-IEEE Press, 2006. Hardcover. État : New. 1. N° de réf. du libraire DADAX0471741108

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Yu Zhu
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Description du livre 2006. Hardcover. État : New. 1st. 181mm x 25mm x 260mm. Hardcover. This is the first comprehensive monograph that features state-of-the-art multigrid methods for enhancing the modeling versatility, numerical robustness, and computational effi.Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. 408 pages. 0.885. N° de réf. du libraire 9780471741107

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