TY - JOUR
T1 - The accurate focusing and resolution analysis method in geosynchronous SAR
AU - Hu, Cheng
AU - Long, Teng
AU - Zeng, Tao
AU - Liu, Feifeng
AU - Liu, Zhipeng
PY - 2011/10
Y1 - 2011/10
N2 - In Geosynchronous SAR (GEO SAR), because of the increase of orbit height, the signal propagation delay time reaches up to hundreds of milliseconds, and the synthetic aperture time also reaches up to hundreds of seconds which will result in a curved synthetic aperture trajectory, thus the Stop-and-Go assumption and conventional imaging methods of low earth orbit SAR (LEO SAR) will lose effect in GEO SAR. In addition, because the angular velocity of earth rotation is approximately equal to that of satellite rotation, the Doppler parameter and resolution analysis in LEO SAR cannot be directly used too in GEO SAR either. In this paper, firstly, the accurate slant range model in GEO SAR is created based on the consideration of the error of Stop-and-Go assumption, and then the improved imaging method is proposed to compensate for the error of Stop-and-Go assumption and the effect of the curved synthetic aperture trajectory. Finally, based on the generalized ambiguity function (GAF) and projection theory, the accurate Doppler gradient vector is analytically obtained based on the consideration of earth rotation in GEO SAR, and the accurate resolution calculation in arbitrary direction is also derived in detail. All the simulation results verify the correctness and effectiveness of the proposed imaging method and resolution analysis method.
AB - In Geosynchronous SAR (GEO SAR), because of the increase of orbit height, the signal propagation delay time reaches up to hundreds of milliseconds, and the synthetic aperture time also reaches up to hundreds of seconds which will result in a curved synthetic aperture trajectory, thus the Stop-and-Go assumption and conventional imaging methods of low earth orbit SAR (LEO SAR) will lose effect in GEO SAR. In addition, because the angular velocity of earth rotation is approximately equal to that of satellite rotation, the Doppler parameter and resolution analysis in LEO SAR cannot be directly used too in GEO SAR either. In this paper, firstly, the accurate slant range model in GEO SAR is created based on the consideration of the error of Stop-and-Go assumption, and then the improved imaging method is proposed to compensate for the error of Stop-and-Go assumption and the effect of the curved synthetic aperture trajectory. Finally, based on the generalized ambiguity function (GAF) and projection theory, the accurate Doppler gradient vector is analytically obtained based on the consideration of earth rotation in GEO SAR, and the accurate resolution calculation in arbitrary direction is also derived in detail. All the simulation results verify the correctness and effectiveness of the proposed imaging method and resolution analysis method.
KW - Geosynchronous SAR (GEO SAR)
KW - Gradient vector
KW - Imaging method
KW - Resolution analysis
UR - https://www.scopus.com/pages/publications/80053572393
U2 - 10.1109/TGRS.2011.2160402
DO - 10.1109/TGRS.2011.2160402
M3 - Article
AN - SCOPUS:80053572393
SN - 0196-2892
VL - 49
SP - 3548
EP - 3563
JO - IEEE Transactions on Geoscience and Remote Sensing
JF - IEEE Transactions on Geoscience and Remote Sensing
IS - 10 PART 1
M1 - 5961623
ER -