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MATLAB simulation of electromagnetic hours FDTD method(Chinese Edition)

BEN SHE

ISBN 10: 7118080535 / ISBN 13: 9787118080537
Nuevos Condición: New Encuadernación de tapa blanda
Librería: liu xing (JiangSu, JS, China)

Librería en AbeBooks desde: 7 de abril de 2009

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Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date: Unknown in Publisher: National Defence Industry Press List Price: 79.00 yuan Author: Publisher: National Defense Industry Press ISBN: 9787118080537 Yema: Revision: Binding: Folio: Published :2012 -8-1 printing time: words: Product ID: 22887936 About MATLAB language programming is simple. and can be given a fine image features. it has become essential for college students of science and engineering system tools platform. Its complete toolbox functions. making the MATLAB increasingly loved by college students and engineers. MATLAB simulation of electromagnetic Hours domain finite difference method developed rapidly in recent years. the electromagnetic field of the finite-difference time-domain (FDTD) method MATLAB programming language points. with rich instance. It e class professional senior undergraduate or graduate study as a primer of the finite difference time domain method. other discipline engineers interested in the finite-difference time-domain method is also suitable for reading. About the author catalog directory top 1.4 two-dimensional problem matlab simulation of electromagnetic hours FDTD method Chapter 1 the fdtd Introduction 1.1 difference approximation of the derivative of the basic equations of the FDTD method 1.2 1.3 three-dimensional problem the fdtd update equation the numerical stability of the update equation 1.6 Exercises Chapter 2 of the the fdtd iterative equation 1.5 one-dimensional the fdtd problem of numerical stability and dispersion 2.1 2.1.1 when the method stability 2.1.2fdtd domain algorithm. cfl stable condition 2.2 numerical dispersion 2.3 practice Chapter 3 yee grid to create the definition of the objectives of the target 3.1 3.1.1 define the problem space parameters defined in the problem space 3.1.2 target medium approximation 3.3 3.2 tangential and normal to the component sub-grid average program .3.4 defined objectives 3.5 improve eight grid to create a medium grid 3.6 average 3.7 update formula Exercises Chapter 4 of active and passive lumped parameter circuit 4.1fdtd of lumped parameter elements 4.1.1 voltage source 4.1.2 hard excitation voltage source 4.1.3 4.1.4 resistance of the current source the fdtd modeling 4.1.5 the fdtd modeling 4.1.6 inductance capacitance the fdtd modeling 4.1.7 in the surface or volume lumped elements 4.1.8 diode fdtd simulation 4.1.9 summarizes 4.2 lumped elements defined initialization and simulation 4.2.1 lumped elements of the definition 4.2.2fdtd parameters and array initialization 4.2.3 lumped elements initialized 4.2.4 update coefficient early initialization 4.2.5 electric and magnetic fields as well as voltage and current sampling 4.2.6 Output parameters defined initialization 4.2.7 running the fdtd analog: 4.3.1 sine wave cycle 4.2.8 displays the fdtd analog results into 4.3 analog example voltage source resistance incentive 4.3.2 excited by a sine wave source diode 4.3.3 by the unit step excitation voltage source capacitance of 4.4 Exercises Chapter 5 excitation source waveform commonly 5.1 fdtd transformation from the time domain to the frequency domain simulation waveform 5.1 .1 sine waveform 5.1.2 and Gaussian waveforms derivative of Gaussian waveform 5.1.3 normalization 5.1.4 cosine function modulation a Gaussian waveform 5.2fdtd analog definition and initialization of the excitation source from the time domain to the frequency domain transform 5.3 5.4 simulation example 5.4.1 regained by the Fourier transform rcl circuit 5.5 Exercises Chapter 6 time-domain waveform 5.4.2 excited by the cosine modulated Gaussian waveform the scattering parameter 6.1s parameters and return loss defined 6.2s parameters calculated 6.3 analog example 6.3.11 / 4 wavelength converter the theory perfect matched layer absorbing boundary 7.1pml 6.4 Exercises Chapter 7 7.1.1pml 7.2 of pml and real-space interface the theory 7.1.2pml in pml-pml inte. N° de ref. de la librería EJ010812

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Título: MATLAB simulation of electromagnetic hours ...

Encuadernación: paperback

Condición del libro:New

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Paperback. Pub Date: 2012 08 Pages: 374 Language: Chinese in Publisher: National Defense Industry Press MATLAB language with simple programming. and exquisite image features can be given. it has become the science and engineering students must system tools platform. Its complete toolbox functions. making the MATLAB increasingly loved by college students and engineers. The high-tech Renditions: MATLAB simulation of electromagnetic Hours domain finite difference method rapid development in recent years. the electromagnetic field finite-difference time-domain (FDTD) method MATLAB programming language points. with rich instance. It e class professional senior undergraduate or graduate study as a primer of the finite difference time domain method. other discipline engineers interested in the finite-difference time-domain method is also suitable for reading. Contents: Chapter 1 FD...

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