The finite-difference time-domain for electromagnetics : with MATLAB simulations
This book introduces the powerful Finite-Difference Time-Domain method to students and interested researchers and readers. An effective introduction is accomplished using a step-by-step process that builds competence and confidence in developing complete working codes for the design and analysis of...
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Main Authors: | , |
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Format: | eBook |
Language: | English |
Published: |
Stevenage :
Institution of Engineering and Technology,
2016.
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Edition: | Second edition. |
Series: | ACES series on computational electromagnetics and engineering.
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Subjects: | |
ISBN: | 9781613531792 1613531796 9781523102327 1523102322 9781613531754 1613531753 |
Physical Description: | 1 online resource |
LEADER | 05533cam a2200541 i 4500 | ||
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001 | kn-ocn946606274 | ||
003 | OCoLC | ||
005 | 20240717213016.0 | ||
006 | m o d | ||
007 | cr cn||||||||| | ||
008 | 160413s2016 enka ob 001 0 eng d | ||
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020 | |a 9781613531792 |q (electronic bk.) | ||
020 | |a 1613531796 |q (electronic bk.) | ||
020 | |a 9781523102327 |q (electronic bk.) | ||
020 | |a 1523102322 |q (electronic bk.) | ||
020 | |z 9781613531754 | ||
020 | |z 1613531753 | ||
035 | |a (OCoLC)946606274 |z (OCoLC)946788599 | ||
100 | 1 | |a Elsherbeni, Atef Z., |e author. | |
245 | 1 | 4 | |a The finite-difference time-domain for electromagnetics : |b with MATLAB simulations / |c Atef Elsherbeni and Veysel Demir. |
250 | |a Second edition. | ||
264 | 1 | |a Stevenage : |b Institution of Engineering and Technology, |c 2016. | |
300 | |a 1 online resource | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
490 | 1 | |a ACES Series on Computaional Electromagnetics and Engineering | |
505 | 0 | |a List of figures; List of tables; Preface; Acknowledgements; 1. Introduction to FDTD; 1.1. The finite-difference time-domain method basic equations; 1.2. Approximation of derivatives by finite differences; 1.3. FDTD updating equations for three-dimensional problems; 1.4. FDTD updating equations for two-dimensional problems; 1.5. FDTD updating equations for one-dimensional problems; 1.6. Exercises; 2. Numerical stability and dispersion; 2.1. Numerical stability; 2.2. Numerical dispersion; 2.3. Exercises; 3. Building objects in the Yee grid; 3.1. Definition of objects. | |
505 | 8 | |a 3.2. Material approximations3.3. Subcell averaging schemes for tangential and normal components; 3.4. Defining objects snapped to the Yee grid; 3.5. Creation of the material grid; 3.6. Improved eight-subcell averaging; 3.7. Exercises; 4. Active and passive lumped elements; 4.1. FDTD updating equations for lumped elements; 4.2. Definition, initialization, and simulation of lumped elements; 4.3. Simulation examples; 4.4. Exercises; 5. Source waveforms and time to frequency domain transformation; 5.1. Common source waveforms for FDTD simulations. | |
505 | 8 | |a 5.2. Definition and initialization of source waveforms for FDTD simulations5.3. Transformation from time domain to frequency domain; 5.4. Simulation examples; 5.5. Exercises; 6. S-Parameters; 6.1. Scattering parameters; 6.2. S-Parameter calculations; 6.3. Simulation examples; 6.4. Exercises; 7. Perfectly matched layer absorbing boundary; 7.1. Theory of PML; 7.2. PML equations for three-dimensional problem space; 7.3. PML loss functions; 7.4. FDTD updating equations for PML and MATLAB implementation; 7.5. Simulation examples; 7.6. Exercises; 8. Advanced PML formulations. | |
505 | 8 | |a 8.1. Formulation of CPML8.2. The CPML algorithm; 8.3. CPML parameter distribution; 8.4. MATLAB implementation of CPML in the three-dimensional FDTD method; 8.5. Simulation examples; 8.6. CPML in the two-dimensional FDTD method; 8.7. MATLAB implementation of CPML in the two-dimensional FDTD method; 8.8. Auxiliary differential equation PML; 8.9. Exercises; 9. Near-field to far-field transformation; 9.1. Implementation of the surface equivalence theorem; 9.2. Frequency domain near-field to far-field transformation; 9.3. MATLAB implementation of near-field to far-field transformation. | |
505 | 8 | |a 9.4. Simulation examples9.5. Exercises; 10. Thin-wire modeling; 10.1. Thin-wire formulation; 10.2. MATLAB implementation of the thin-wire formulation; 10.3. Simulation examples; 10.4. An improved thin-wire model; 10.5. MATLAB implementation of the improved thin-wire formulation; 10.6. Simulation example; 10.7. Exercises; 11. Scattered field formulation; 11.1. Scattered field basic equations; 11.2. The scattered field updating equations; 11.3. Expressions for the incident plane waves; 11.4. MATLAB implementation of the scattered field formulation; 11.5. Simulation examples; 11.6. Exercises. | |
506 | |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty | ||
520 | |a This book introduces the powerful Finite-Difference Time-Domain method to students and interested researchers and readers. An effective introduction is accomplished using a step-by-step process that builds competence and confidence in developing complete working codes for the design and analysis of various antennas and microwave devices. | ||
590 | |a Knovel |b Knovel (All titles) | ||
630 | 0 | 0 | |a MATLAB. |
630 | 0 | 7 | |a MATLAB |2 fast |
650 | 0 | |a Antenna radiation patterns. | |
650 | 0 | |a Electromagnetic waves. | |
650 | 0 | |a Antennas (Electronics) | |
650 | 0 | |a Numerical analysis |x Computer programs. | |
655 | 7 | |a elektronické knihy |7 fd186907 |2 czenas | |
655 | 9 | |a electronic books |2 eczenas | |
700 | 1 | |a Demir, Veysel, |d 1974- |e author. |1 https://id.oclc.org/worldcat/entity/E39PCjBRQcMq4tDpJjbHbBgHqP | |
776 | 0 | 8 | |i Print version: |z 9781613531754 |z 1613531753 |w (OCoLC)896854515 |
830 | 0 | |a ACES series on computational electromagnetics and engineering. | |
856 | 4 | 0 | |u https://proxy.k.utb.cz/login?url=https://app.knovel.com/hotlink/toc/id:kpFDTDMEM7/finite-difference-time?kpromoter=marc |y Full text |