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Azimuth resolution improvement for spaceborne SAR images with quasi-non-overlapped Doppler bandwidth
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作者 Yanyang Liu Zhenfang Li +2 位作者 Zhiyong Suo Jinwei Li Zheng Bao 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2014年第3期422-427,共6页
The azimuth resolution improvement problem is solved via a coherent combination of synthetic aperture radar (SAR) ima-ges with the quasi-non-overlapped Doppler bandwidth. Prior to the spectra combination, SAR images... The azimuth resolution improvement problem is solved via a coherent combination of synthetic aperture radar (SAR) ima-ges with the quasi-non-overlapped Doppler bandwidth. Prior to the spectra combination, SAR images should be coregistered, while phase biases induced by topography, atmospheric propagation delays and baseline measurement errors should be calibrated. However, the coregistration accuracy suffers from large Doppler decorrelation caused by the quasi-non-overlapped Doppler band-width. Furthermore, the method used to estimate phase biases from interferogram of azimuth prefiltered SAR image pairs wil fail when there is no overlapped spectrum. The fringe simulation and maximum sharpness optimization are adopted to deal with the problems. Accordingly, a novel algorithm to coherently synthesize SAR images is presented. The experiment with the Terra SAR X-band (TerraSAR-X) satel ite data validates the performance of the presented method. 展开更多
关键词 synthetic aperture radar (SAR) azimuth resolution improvement maximum sharpness optimization fringe simulation.
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