DocumentCode :
1371414
Title :
Wavenumber-Domain Autofocusing for Highly Squinted UAV SAR Imagery
Author :
Zhang, Lei ; Sheng, Jialian ; Xing, Mengdao ; Qiao, Zhijun ; Xiong, Tao ; Bao, Zheng
Author_Institution :
Nat. Key Lab. of Radar Signal Process., Xidian Univ., Xi´´an, China
Volume :
12
Issue :
5
fYear :
2012
fDate :
5/1/2012 12:00:00 AM
Firstpage :
1574
Lastpage :
1588
Abstract :
Being capable of enhancing the flexibility and observing ability of synthetic aperture radar (SAR), squint mode is one of the most essential operating modes in SAR applications. However, processing of highly squinted SAR data is usually a challenging task attributed to the spatial-variant range cell migration over a long aperture. The Omega-k algorithm is generally accepted as an ideal solution to this problem. In this paper, we focus on using the wavenumber-domain approach for highly squinted unmanned aerial vehicle (UAV) SAR imagery. A squinted phase gradient autofocus (SPGA) algorithm is proposed to overcome the severe motion errors, including phase and nonsystematic errors. Herein, the inconsistence of phase error and range error in the squinted wavenumber-domain imaging is first presented, which reveals that even the motion error introduces very small phase error, it causes considerable range error due to the Stolt mapping. Based on this, two schemes of SPGA-based motion compensation are developed according to the severity of motion error. By adapting the advantages of weighted phase gradient autofocus and quality phase gradient autofocus, the robustness of SPGA is ensured. Real measured data sets are used to validate the proposed approach for highly squinted UAV-SAR imagery.
Keywords :
autonomous aerial vehicles; gradient methods; radar imaging; synthetic aperture radar; SPGA based motion compensation; highly squinted UAV SAR imagery; highly squinted unmanned aerial vehicle SAR imagery; nonsystematic error; phase error; quality phase gradient autofocus; squinted phase gradient autofocus algorithm; squinted wavenumber domain imaging; synthetic aperture radar; wavenumber domain autofocusing; weighted phase gradient autofocus; Algorithm design and analysis; Approximation algorithms; Azimuth; Geometry; Signal processing algorithms; Synthetic aperture radar; Trajectory; High squinted SAR; motion compensation (MoCo); squinted phase gradient autofocus (SPGA); synthetic aperture radar (SAR); unmanned aerial vehicle (UAV);
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2011.2175216
Filename :
6072230
Link To Document :
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