DocumentCode
1503700
Title
Detection of Moving Targets by Focusing in UWB SAR—Theory and Experimental Results
Author
Vu, Viet Thuy ; Sjögren, Thomas K. ; Pettersson, Mats I. ; Gustavsson, Anders ; Ulander, Lars M H
Author_Institution
Blekinge Inst. of Technol., Ronneby, Sweden
Volume
48
Issue
10
fYear
2010
Firstpage
3799
Lastpage
3815
Abstract
Moving-target detection in ultrawideband (UWB) synthetic aperture radar (SAR) is associated with long integration time and must accommodate azimuth focusing for reliable detection. This paper presents the theory on detection of moving targets by focusing and experimental results on single-channel SAR data aimed at evaluating the detection performance. The results with respect to both simulated and real data show that the ability to detect moving targets increases significantly when applying the proposed detection technique. The improvement in signal-to-clutter noise ratio, which is a basic requisite for evaluating the performance, reaches approximately 20 dB, using only single-channel SAR data. This gain will be preserved for the case of multichannel SAR data. The reference system for this study is the airborne UWB low-frequency SAR Coherent All RAdio BAnd Sensing II.
Keywords
object detection; synthetic aperture radar; target tracking; ultra wideband radar; UWB SAR; azimuth focusing; moving target detection; multichannel SAR data; reference system; reliable detection; signal-to-clutter noise ratio; single-channel SAR data; ultrawideband synthetic aperture radar; Azimuth; Bandwidth; Focusing; Frequency; Low-frequency noise; Radar detection; Space technology; Synthetic aperture radar; Ultra wideband antennas; Ultra wideband technology; Coherent All RAdio BAnd Sensing (CARABAS)-II; UWB chirp scaling (UCS); detection; fast backprojection; fast factorized backprojection (FFBP); moving target; multichannel; single channel; synthetic aperture radar (SAR); ultrawideband (UWB);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2010.2048572
Filename
5473083
Link To Document