DocumentCode :
1460908
Title :
Analysis of Propagation Between Rows of Conducting Cylinders That Model Solid Surfaces Using the Same Surface Area Rule
Author :
Ozturk, Alper K. ; Paknys, Robert
Author_Institution :
Aselsan Inc., Ankara, Turkey
Volume :
60
Issue :
5
fYear :
2012
fDate :
5/1/2012 12:00:00 AM
Firstpage :
2602
Lastpage :
2606
Abstract :
The thin-wire method of moments (MoM) is a useful technique for modeling a solid conducting surface by a grid of thin wires. Propagation between rows of conducting wires forming a waveguide is investigated to test this technique. A thick-wire model that allows for azimuthal current variation is also considered. When the total surface area of the wires equals the original solid-wall area, two things happen. First, the wire grid model and solid-wall waveguide have the same propagation constant β . Second, the thin-wire model erroneously predicts that the wire grid leakage is minimum whereas the thick-wire model predicts the correct behavior-that the grid leakage monotonically decreases with reduced wire spacing and/or increased wire diameter. The complex propagation constant between rows of conducting cylinders is calculated by using the matrix pencil method (MPM). The accuracy of this approach and the wire-grid modeling is verified using numerical and experimental results.
Keywords :
method of moments; waveguide theory; MPM; azimuthal current variation; conducting cylinders; conducting wires; matrix pencil method; propagation constant; solid conducting surface modelling; solid-wall area; solid-wall waveguide; surface area rule; thick-wire model; thin wire grid; thin-wire MoM; thin-wire method of moments; thin-wire model; wire diameter; wire grid leakage; wire grid model; wire spacing; Moment methods; Numerical models; Propagation constant; Solid modeling; Surface waves; Transmission line matrix methods; Wires; Matrix pencil method (MPM); moment methods; waveguides; wire grids; wire scatterers;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2012.2189695
Filename :
6162959
Link To Document :
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