Title :
Sparse reconstruction based frequency diverse array transmit beampattern synthesis
Author :
Hui Chen; Huaizong Shao; Wenqin Wang
Author_Institution :
School of Communication and Information Engineering, University of Electronic Science and Technology of China, Chengdu, Sichuan, 611731, China
fDate :
6/1/2015 12:00:00 AM
Abstract :
For frequency diverse array (FDA) pattern synthesis, smaller aperture or fewer elements are expected to obtain the desired beampattern performance. This paper propose a new FDA beampattern synthesis approach by ℓ1-norm minimization and convex optimization. Given array aperture, a virtual uniform linear FDA array with much smaller element spacing and corresponding frequency increment is created first; then, the array pattern synthesis (APS) problem is formulated as finding a jointly sparse weight vector, the antenna elements corresponding to nonzero values of the joint sparse weight vector are retained to form the non-uniform FDA. Finally, the weight vector of the non-uniform FDA is optimized via convex programming. Compared with discrete spheroidal sequence (DSS) method, the proposed algorithm can save 7 antenna elements to achieve the desired radiation pattern.
Keywords :
"Arrays","Apertures","Programming","Compressed sensing","Radar","Frequency diversity","Decision support systems"
Conference_Titel :
Compressed Sensing Theory and its Applications to Radar, Sonar and Remote Sensing (CoSeRa), 2015 3rd International Workshop on
DOI :
10.1109/CoSeRa.2015.7330303