New PDF release: Time Domain Methods in Electrodynamics: A Tribute to

By Peter Russer, Uwe Siart

ISBN-10: 3642088287

ISBN-13: 9783642088285

This publication involves contributions given in honor of Wolfgang J.R. Hoefer. area and time discretizing time area tools for electromagnetic full-wave simulation have emerged as key numerical tools in computational electromagnetics. Time area tools are flexible and will be utilized to the answer of quite a lot of electromagnetic box difficulties. Computing the reaction of an electromagnetic constitution to an impulsive excitation localized in house and time offers a finished characterization of the electromagnetic homes of the constitution in a large frequency diversity. an important equipment are the Finite distinction Time area (FDTD) and the Transmission Line Matrix (TLM) equipment.

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This ebook contains contributions given in honor of Wolfgang J. R. Hoefer. house and time discretizing time area equipment for electromagnetic full-wave simulation have emerged as key numerical tools in computational electromagnetics. Time area tools are flexible and will be utilized to the answer of quite a lot of electromagnetic box difficulties.

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9, Sept. 2006, pp. 2515–2524 12. Z. Lou and J. Jin, “A new explicit time-domain finite-element method based on element-level decomposition,” IEEE Trans. , Vol. 54, No. 10, Oct. 2006, pp. 2990–2999 13. G. Pisharody and D. Weile, “Robust solution of time-domain integral equations using looptree decomposition and band limited extrapolation,” IEEE Trans. , Vol. 53, No. 6, June 2005, pp. 2089–2098 Time-Domain Neural Network Approaches to EM Modeling of Microwave Components Qi-Jun Zhang and Yi Cao Abstract Time-domain modeling of EM behaviors with geometrical parameters as variables is addressed in this paper.

Vol. 33, No. 4, April 1985, pp. 436–41 Time- and Frequency-Domain Methods 39 9. D. Davidson and J. Aberle, “An introduction to spectral domain method-of-moments formulations,” IEEE Antennas and Propagation Magazine, Vol. 46, No. 3, June 2004, pp. 11–19 10. Z. Chen and M. Ney, “The method of weighted residuals: a general approach to deriving timeand frequency-domain numerical methods,” Submitted for publication in IEEE Antennas and Propagation Magazine 11. Z. Chen and S. Luo, “Generalization of the finite-difference-based time-domain methods using the method moments,” IEEE Trans.

J. Numer. , Vol. 9, 1996, pp. 295–319 4. S. Toledo (1997), “Improving Memory-System Performance of Sparse Matrix-Vector Multiplication”, IBM J. Res. , Vol. 41, No. 6, 1997, pp. 711–725 5. F. Wolfheimer, E. Gjonaj, and T. Weiland (2005), “A Parallel 3D Particle-In-Cell Code with Dynamic Load Balancing”, Nucl. Inst. Meth. Vol. A 558, 2005, pp. 202–204 6. IBM, Thomas J. Watson Research Center, Yorktown Heights, NY, private communications 7. com Recent Progress in Unifying the Time- and Frequency-Domain Methods Zhizhang (David) Chen and Michel M.

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Time Domain Methods in Electrodynamics: A Tribute to Wolfgang J. R. Hoefer by Peter Russer, Uwe Siart


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