DocumentCode
1142010
Title
Electromagnetic field coupling to a line of finite length: theory and fast iterative solutions in frequency and time domains
Author
Tkatchenko, Serguei ; Rachidi, Farhad ; Ianoz, Michel
Author_Institution
Swiss Federal Inst. of Technol., Lausanne, Switzerland
Volume
37
Issue
4
fYear
1995
fDate
11/1/1995 12:00:00 AM
Firstpage
509
Lastpage
518
Abstract
A system of integral-differential equations for evaluating currents and voltages induced by external electromagnetic fields on a finite-length horizontal wire above a perfectly conducting ground is derived under the thin wire approximation. Based on perturbation theory, an iterative procedure is proposed to solve the derived coupling equations, where the zeroth iteration term is determined by using the transmission line (TL) approximation. The method can be applied both in the frequency and in the time domains. The proposed iterative procedure converges rapidly to the exact analytical solution for the case of an infinite line, and to the NEC solution for a line of finite length. Moreover, with only one iteration, an excellent approximation to the exact solution can be obtained. The method is applied to assess the validity of the TL approximation for plane wave coupling to an overhead line of finite length. It is shown that the resulting errors for the early-time response are generally higher than those corresponding to infinite lines
Keywords
approximation theory; convergence of numerical methods; electromagnetic fields; electromagnetic induction; electromagnetic pulse; frequency-domain analysis; iterative methods; time-domain analysis; transmission line theory; EMP; NEC solution; coupling equations; currents; early-time response; electromagnetic field coupling; electromagnetic fields; exact solution; fast iterative solutions; finite length line; finite-length horizontal wire; frequency domain; infinite line; integral-differential equations; overhead line; perfectly conducting ground; perturbation theory; plane wave coupling; thin wire approximation; time domain; transmission line approximation; voltages; Electromagnetic coupling; Electromagnetic fields; Electromagnetic scattering; Frequency; Geometry; Integral equations; Light scattering; Senior members; Voltage; Wire;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/15.477335
Filename
477335
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