DocumentCode
1437450
Title
Two efficient algorithms for the analyses of a nonlinearly loaded antenna and antenna array in the frequency domain
Author
Lee, Kun-Chou
Author_Institution
Inst. of Comput. & Commun., Shu-Te Univ., Taiwan, China
Volume
42
Issue
4
fYear
2000
fDate
11/1/2000 12:00:00 AM
Firstpage
339
Lastpage
346
Abstract
In this paper, two efficient algorithms for the steady-state scattering responses of a nonlinearly loaded antenna and antenna array in the frequency domain are studied. One is the reflection algorithm (RA), and the other is the inexact Newton approach (INA). The analysis is equivalent to a nonlinear circuit problem with the circuit parameters of antenna element obtained by the moment method. This equivalent nonlinear circuit is then solved using the RA or the INA. In general, the RA is suitable to strongly nonlinearly circuit element. While the INA is suitable for multifrequency excitation. In dealing with the nonlinearly loaded antenna array, the infinite periodic structure Green´s function, including the array mutual coupling effects, is applied to simplify the analysis. Both of the two algorithms are easy to be combined with the periodic Green´s function to deal with the large nonlinearly loaded antenna array problem
Keywords
Green´s function methods; Newton method; antenna theory; dipole antenna arrays; dipole antennas; electromagnetic coupling; electromagnetic wave scattering; equivalent circuits; frequency-domain analysis; array mutual coupling effects; dipole antenna; dipole antenna array; equivalent nonlinear circuit; frequency domain analysis; inexact Newton approach; infinite periodic structure Green´s function; moment method; multifrequency excitation; nonlinear circuit problem; nonlinearly loaded antenna; nonlinearly loaded antenna array; periodic Green´s function; reflection algorithm; steady-state scattering response; Algorithm design and analysis; Antenna arrays; Frequency domain analysis; Green´s function methods; Loaded antennas; Moment methods; Nonlinear circuits; Reflection; Scattering; Steady-state;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/15.902303
Filename
902303
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