DocumentCode :
1356370
Title :
An Efficient Hybrid GO-PWS Algorithm to Analyze Conformal Serrated-Edge Reflectors for Millimeter-Wave Compact Range
Author :
Munoz-Acevedo, A. ; Sierra-Castaner, M.
Author_Institution :
Radiat. Group, Tech. Univ. of Madrid (UPM), Madrid, Spain
Volume :
60
Issue :
2
fYear :
2012
Firstpage :
1192
Lastpage :
1197
Abstract :
A method to analyze parabolic reflectors with arbitrary piecewise rim is presented in this communication. This kind of reflectors, when operating as collimators in compact range facilities, needs to be large in terms of wavelength. Their analysis is very inefficient, when it is carried out with fullwave/MoM techniques, and it is not very appropriate for designing with PO techniques. Also, fast GO formulations do not offer enough accuracy to reach performance results. The proposed algorithm is based on a GO-PWS hybrid scheme, using analytical as well as non-analytical formulations. On one side, an analytical treatment of the polygonal rim reflectors is carried out. On the other side, non-analytical calculi are based on efficient operations, such as M2 order 2-dimensional FFT. A combination of these two techniques in the algorithm ensures real ad-hoc design capabilities, reached through analysis speedup. The purpose of the algorithm is to obtain an optimal conformal serrated-edge reflector design through the analysis of the field quality within the quiet zone that it is able to generate in its forward half space.
Keywords :
Maxwell equations; electromagnetic wave propagation; fast Fourier transforms; method of moments; M2 order 2-dimensional FFT; PO technique; arbitrary piecewise rim; collimators; compact range facilities; conformal serrated-edge reflector; efficient hybrid GO-PWS algorithm; fullwave/MoM technique; millimeter-wave compact range; parabolic reflector; polygonal rim reflectors; Accuracy; Algorithm design and analysis; Apertures; Electric fields; Feeds; Moment methods; Physics; Compact range; hybrid algorithm; millimeter wave; plane wave spectrum; serrated edge reflector;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2173100
Filename :
6056551
Link To Document :
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