Title :
Transient electromagnetic fields in unbounded space with inhomogeneous medium
Author :
Dumin, A.N. ; Butrym, A.Yu. ; Tretyakov, O.A. ; Katrich, V.A. ; Dumina, O.A.
Author_Institution :
Karazin Kharkiv Nat. Univ., Ukraine
Abstract :
To solve propagation problems in time domain directly the modal representation of transient electromagnetic fields is considered. Using evolutionary approach the initial nonstationary three-dimensional electrodynamic problem is transformed into the problem for the system of connected one-dimensional evolutionary equations. The system describes the interconversions of all modes on inhomogeneities in cross-section. After elimination of the longitudinal components of electrical and magnetic field from Maxwell equation system the four-dimensional differential operators are formed. It is proved that the operators are self-adjoint ones. The completeness of the basis is proved by means of Weyl theorem about orthogonal splitting of Hilbert space. The expansion coefficients of transient electromagnetic field can be found from the set of evolutionary equations.
Keywords :
Hilbert spaces; Maxwell equations; electromagnetic fields; electromagnetic wave propagation; inhomogeneous media; Hilbert space; Maxwell equation; Weyl theorem; electromagnetic wave propagation; inhomogeneous medium; one-dimensional evolutionary equation; three-dimensional electrodynamic problem; transient electromagnetic field; Electrodynamics; Electromagnetic fields; Electromagnetic propagation; Electromagnetic scattering; Electromagnetic transients; Hilbert space; Magnetic fields; Maxwell equations; Nonuniform electric fields; Rail transportation;
Conference_Titel :
Ultrawideband and Ultrashort Impulse Signals, 2004 Second International Workshop
Print_ISBN :
0-7803-8673-6
DOI :
10.1109/UWBUS.2004.1388062