DocumentCode
1439583
Title
Maximally Sparse Arrays Via Sequential Convex Optimizations
Author
Prisco, Giancarlo ; D´Urso, Michele
Author_Institution
SELEX Sist. Integrati S.p.A., Giugliano, Italy
Volume
11
fYear
2012
fDate
7/4/1905 12:00:00 AM
Firstpage
192
Lastpage
195
Abstract
The design of sparse arrays able to radiate focused beam patterns satisfying a given upper-bound power mask with the minimum number of sources is a research area of increasing interest. The related synthesis problem can be formulated with proper constraints on the cardinality of the solution space, i.e., its l0-norm. Unfortunately, such a nonconvex constraint requires to solve an NP-hard problem. Interesting ideas to relax the above constraint in a convex way have been successfully proposed. A possible solution is based on the minimization of the l1-norm. This strategy is not always able to achieve a maximally sparse solution. In the following, an innovative synthesis scheme that optimizes both excitation weights and sensor positions of an array radiating pencil beam-patterns is discussed. The solution algorithm is based on sequential convex optimizations including a reweighted l1 -norm minimization. Numerical tests, referred to benchmark problems, show that the proposed synthesis method is able to achieve maximally sparse linear arrays, also compared to the best results reported in the literature, obtained by means of global optimization schemes.
Keywords
antenna radiation patterns; compressed sensing; convex programming; linear antenna arrays; minimisation; NP-hard problem; array radiating pencil beam-patterns; excitation weights; focused beam patterns; global optimization; l1-norm minimization; maximally sparse linear arrays; nonconvex constraint; sensor positions; sequential convex optimizations; upper-bound power mask; Antenna arrays; Apertures; Convex functions; Minimization; Optimization; Sensor arrays; Compressed sensing; global optimizations; sequential convex optimization; sparse array;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2012.2186626
Filename
6145602
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