DocumentCode
231487
Title
High resolution imaging on distributed SAR using joint space-time-frequency method
Author
Bowen Zhao ; Liu Mei ; Xi Lu ; Chenlei Li ; Pengfei Wang
Author_Institution
Sch. of Electron. Eng., Harbin Inst. of Technol., Harbin, China
fYear
2014
fDate
19-23 Oct. 2014
Firstpage
330
Lastpage
335
Abstract
Spaceborne distributed SAR is comprised of several satellites flying in constellation stereo geometry, which has advantages in imaging of ground moving targets. Especially in single-transmitter-multiple-receivers (STMR) mode, it can obtain higher resolution than single SAR. Comparing with the complex images of ground static scattering points, the deviation of Doppler center frequency of each moving target leads to differences in relative frequency shift. However, those differences cannot be accurately estimated using conventional interferometric phase technique, which would consequently degrade the performance of the image obtained via spectral synthesis technology. To solve this problem, a novel moving target imaging method via joint space-time-frequency is presented by combining space-time parameter estimation, time domain BP (Back Projection) algorithms and spectral synthesis techniques together. The presented method is testified by analyzing the estimate precision of frequency shift and the resolution of image in computer simulations.
Keywords
image motion analysis; image resolution; parameter estimation; radar imaging; radar interferometry; radar resolution; spaceborne radar; synthetic aperture radar; time-frequency analysis; Doppler center frequency; STMR mode; back projection algorithms; computer simulations; constellation stereo geometry; ground moving target imaging method; ground static scattering points; high resolution imaging; interferometric phase technique; joint space-time-frequency method; relative frequency shift; satellites; single-transmitter-multiple-receiver mode; space-time parameter estimation; spaceborne distributed SAR; spectral synthesis technology; time domain BP algorithm; Azimuth; Estimation; Frequency estimation; Image resolution; Imaging; Satellites; Synthetic aperture radar; high resolution imaging; joint space-time-frequency; space-borne distributed SAR;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing (ICSP), 2014 12th International Conference on
Conference_Location
Hangzhou
ISSN
2164-5221
Print_ISBN
978-1-4799-2188-1
Type
conf
DOI
10.1109/ICOSP.2014.7015023
Filename
7015023
Link To Document