DocumentCode
1294021
Title
Ground Moving Targets Imaging Algorithm for Synthetic Aperture Radar
Author
Zhu, Shengqi ; Liao, Guisheng ; Qu, Yi ; Zhou, Zhengguang ; Liu, Xiangyang
Author_Institution
Nat. Lab. of Radar Signal Process., Xidian Univ., Xi´´an, China
Volume
49
Issue
1
fYear
2011
Firstpage
462
Lastpage
477
Abstract
It is well known that the motion of a target induces range migration, especially for high-resolution synthetic aperture radar (SAR) systems. Ground moving target imaging necessitates the correction of the unknown range migration. To finely refocus a moving target, one must accurately obtain the motion parameters for compensating the target trajectory. However, in practice, these parameters usually cannot be precisely estimated. This paper proposes a new imaging approach for ground moving targets without a priori knowledge of their motion parameters. In the devised method, the azimuth compression function is constructed in range frequency domain, which can eliminate the coupling effect between range and azimuth. Theoretical analysis confirms that the methodology can precisely focus targets without interpolation procedure. The effectiveness of the proposed imaging technique is demonstrated by both simulated and real airborne SAR data.
Keywords
ground penetrating radar; image motion analysis; radar imaging; synthetic aperture radar; target tracking; SAR system; azimuth compression function; coupling effect; ground moving target imaging algorithm; motion parameter; range frequency domain; synthetic aperture radar; target trajectory; Azimuth; Clutter; Doppler effect; Frequency domain analysis; High-resolution imaging; Imaging; Motion estimation; Radar detection; Radar imaging; Radar polarimetry; Synthetic aperture radar; Trajectory; Doppler ambiguity; ground moving target imaging (GMTIm); ground moving target indication (GMTI); range frequency domain; synthetic aperture radar (SAR);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2010.2053848
Filename
5546952
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