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Computational electrodynamics. Finite Difference

Computational electrodynamics. Finite Difference Time Domain Method by Allen Taflove

Computational electrodynamics. Finite Difference Time Domain Method



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Computational electrodynamics. Finite Difference Time Domain Method Allen Taflove ebook
Publisher: Artech House Inc
Format: djvu
ISBN: 0890068348, 9780890068342
Page: 611


In the frequency domain the computational electromagnetics research is concentrated on the method of moments (MoM) whose main application is the numerical modeling of antennas. Programs after reading the first chapter of this book. The radio engineering groups deal with the study, design, fabrication, measurements and simulation of high frequency circuits and antennas. Employing a unified coherent approach that is .. Methods for scattering solutions. Twenty different tissues have been considered in The model is manually prepared by converting MRI images of a 46-year old man with the height of 178 cm into suitable matrixes of electrical properties of computational space to be used in FDTD algorithm. The first edition of 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. Computational Methods for Electromagnetics is an indispensable resource for making efficient and accurate formulations for electromagnetics applications and their numerical treatment. Electromagnetic pulse solutions. Finite Difference Time Domain (FDTD) method is used to calculate the current densities induced in a 1 cm resolution anatomically based model with proper tissue conductivities. Electromagnetic Simulation Using the FDTD Method describes the power and flexibility of the finite-difference time-domain method as a direct simulation of Maxwell's equations. A.T aflove and S.Hagness, Computational Electrodynamics, 3rd edn., Artech House, Boston (2000) . K.S.K unz and R.J.Luebbers, The Finite Difference Time Domain Method for Electromagnetics, CRC Press (1993). Computational Electrodynamics: The Finite-Difference Time-Domain Method, 3rd ed. Despite the dramatic growth in the availability of powerful computer resources, the EM community lacks a comprehensive text on the computational techniques used to solve EM problems. On the other hand, BPM6 is an effective method of fast computation, but it has lower precision than FDTD and cannot accurately simulate color splitting. Waveguides and resonant cavities. This prompted Panasonic to develop a practical and original design method that Finite-Difference Time-Domain method (FDTD): FDTD is a versatile modeling technique used to solve Maxwell's equations by spatial and temporal discretization. In refraction, a wave crossing from one medium to another of different density alters its speed and direction upon entering the new medium. In the time domain the research is concentrated on the finite -difference time-domain method (FDTD).

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