Time Domain Methods in Electrodynamics: A Tribute to Wolfgang J. R. Hoefer

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This book consists of contributions given in honor of Wolfgang J.R. Hoefer. Space and time discretizing time domain methods for electromagnetic full-wave simulation have emerged as key numerical methods in computational electromagnetics. Time domain methods are versatile and can be applied to the solution of a wide range of electromagnetic field problems. Computing the response of an electromagnetic structure to an impulsive excitation localized in space and time provides a comprehensive characterization of the electromagnetic properties of the structure in a wide frequency range. The most important methods are the Finite Difference Time Domain (FDTD) and the Transmission Line Matrix (TLM) methods.

Author(s): Peter Russer, Uwe Siart
Series: Springer Proceedings in Physics
Edition: 1st Edition.
Publisher: Springer
Year: 2010

Language: English
Commentary: 50054
Pages: 423