CRC Press, Boka Raton, FL, 2000, 750 pages As the availability of powerful computer resources has grown over the last three decades, the art of computation of electromagnetic (EM) problems has also grown - exponentially. Despite this dramatic growth, however, the EM community lacked a comprehensive text on the computational techniques used to solve EM problems. The first edition of Numerical Techniques in Electromagnetics filled that gap and became the reference of choice for thousands of engineers, researchers, and students.The Second Edition of this bestselling text reflects the continuing increase in awareness and use of numerical techniques and incorporates advances and refinements made in recent years. Most notable among these are the improvements made to the standard algorithm for the finite difference time domain (FDTD) method and treatment of absorbing boundary conditions in FDTD, finite element, and transmission-line-matrix methods.
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Springer Science, 2005, 222 p. Convergence Finite Differences Eigenvalues The Finite-Difference Time-Domain Method The Finite Element Method The Method of Moments Summary and Overview Large Linear Systems Krylov Methods
Wiley-IEEE Press, 2007, pages: 297 A thorough and insightful introduction to using genetic algorithms to optimize electromagnetic systems. Genetic Algorithms in Electromagnetics focuses on optimizing the objective function when a computer algorithm, analytical model, or experimental result describes the performance of an electromagnetic system. It offers expert guidance to...
Springer-Verlag, 1997, 2-ed. , 583 p. Part I. The Electromagnetic Field and Maxwell's Equations Mathematical Preliminaries The Electromagnetic Field and Maxwell's Equations Electrostatic Fields Magnetostatic Fields Magnetodynamic Fields Interaction between Electromagnetic and Mechanical Forces Wave Propagation and High-Frequency Electromagnetic Fields Part II. Introduction to...
IEEE Press + Wiley, 2010, 616 pages, ISBN: 0470533595 This book is intended to serve as a textbook for an entry level graduate course on electromagnetics (first seven chapters) and for an advanced level graduate course on computational electromagnetics (last five chapters). Whereas there are several textbooks available for the graduate electromagnetics course, no textbook is...
Springer-Verlag, 2010, 659 p. Maxwell’s Equations Basics of Electrostatics Formal Methods of Electrostatics The Stationary Current Density Field Basics of Magnetostatics Time Dependent Problems I (Quasi Stationary Approximation) Time Dependent Problems II (Electromagnetic Waves) Numerical Methods Appendices Generally Recommended Reading
John Wiley & Sons Singapore Pte. Ltd., 2012. X, 279 p. — ISBN: 978-0-470-82962-2 (hardback). Essentials of Computational Electromagnetics provides an in-depth introduction of the three main full-wave numerical methods in computational electromagnetics (CEM); namely, the method of moment (MoM), the finite element method (FEM), and the finite-difference time-domain (FDTD) method....