DocumentCode
1534294
Title
A Deterministic Two Dimensional Density Taper Approach for Fast Design of Uniform Amplitude Pencil Beams Arrays
Author
Bucci, Ovidio Mario ; Perna, Stefano
Volume
59
Issue
8
fYear
2011
Firstpage
2852
Lastpage
2861
Abstract
The synthesis of electrically large, aperiodic planar arrays with equi-amplitude excitations plays an increasingly relevant role in satellite applications. Unfortunately, for such a kind of synthesis problems, local optimization procedures may be ineffective, whereas global optimization procedures involve a severe computational effort. To circumvent these problems, a new deterministic approach for fast design of aperiodic concentric ring arrays is proposed. The method exploits easily obtained optimal continuous planar solutions, accounts for the geometric properties of the array element and allows, once the central geometry of the array (that is, at least the most internal ring) is fixed, to compute in a deterministic, iterative, very fast way the whole geometry of the density-tapered concentric ring array. Numerical examples show the effectiveness of the method, which provides in a few seconds layouts of hundreds of elements able to produce directivity patterns that satisfy realistic satellite project requirements.
Keywords
antenna radiation patterns; beam steering; optimisation; planar antenna arrays; satellite antennas; 2D density taper approach; antenna radiation pattern; aperiodic concentric ring arrays; aperiodic planar arrays; global optimization procedures; satellite applications; uniform amplitude pencil beams arrays; Antenna arrays; Apertures; Azimuth; Geometry; Minimization; Optimization; Satellites; Antenna arrays; antenna synthesis; planar arrays; ring arrays; sparse arrays;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2011.2158783
Filename
5784315
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