Title :
Sparse array SAR 3-D imaging using compressed sensing
Author :
Shun-Jun Wei ; Xiao-Ling Zhang ; Jun Shi
Author_Institution :
E.E. Dept., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Array synthetic aperture radar (A-SAR) 3-D imaging is an emerging technique capable of producing a 3-D map of scattered electric fields. Commonly, A-SAR based on the classical matched filter technique requires a large full-sampled 2-D antenna array, which may cause very high system cost. To reduce the number of the antenna elements, this paper surveys the use of compressed sensing recovery and sparse measurement strategies for A-SAR 3-D imaging. Exploiting the spatial sparsity of the underlying scene, we pose the A-SAR imaging as finding sparse solutions to underdetermined linear equations. Further, a sparse recovery algorithm based on orthogonal matching pursuit (OMP) is presented to effectively recover the 3-D images with the large-scale echoes data. Lastly, the performance of the approach is verified by an X-band ground-based A-SAR system. The experimental results demonstrate that the approach can produce a better quality 3-D image compared with the conventional method with the very sparse array.
Keywords :
antenna arrays; compressed sensing; iterative methods; matched filters; radar antennas; radar imaging; synthetic aperture radar; time-frequency analysis; 3D map; A-SAR 3D imaging; OMP; X-band ground-based A-SAR system; antenna elements; compressed sensing recovery; large full-sampled 2D antenna array; large-scale echoes data; linear equations; matched filter technique; orthogonal matching pursuit; scattered electric fields; sparse array SAR 3D imaging technique; sparse measurement strategy; sparse recovery algorithm; synthetic aperture radar; 3-D imaging; Array SAR; compressed sensing; sparse recovery;
Conference_Titel :
Radar Conference 2013, IET International
Conference_Location :
Xi´an
Electronic_ISBN :
978-1-84919-603-1
DOI :
10.1049/cp.2013.0131