Baseline analysis of Polarimetric SAR Interferometry
Yongsheng Zhou, Hong Wen, Yanping Wang, Yirong Wu, Fang Cao
Abstract
Yongsheng Zhou, Hong Wen, Yanping Wang, Yirong Wu, Fang Cao
Abstract
Polarimetric SAR Interferometry (Pol-InSAR) combines SAR interferometry (InSAR) and SAR polarimetry (PoISAR), and it helps to the generation of digital eleva tion models (DEMs) as well as the parameter estimation of natural volume scatters. Baseline is an important concept in conventional InSAR applications. With the introduction of polarization into InSAR, the baseline require ments of Pol-InSAR are different from those of InSAR. In this paper baseline decorrelation, which includes surface decorrelation and volume decorrelation, is firstly analyzed with the random volume over ground (RVoG) model. Then some different considerations in choosing baseline between Pol-InSAR and InSAR are presented. Finally methods of determining Pol-InSAR baseline are given and discussed.
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Polarimetric SAR Interferometry (Pol-InSAR) combines SAR interferometry (InSAR) and SAR polarimetry (PoISAR), and it helps to the generation of digital eleva tion models (DEMs) as well as the parameter estimation of natural volume scatters. Baseline is an important concept in conventional InSAR applications. With the introduction of polarization into InSAR, the baseline require ments of Pol-InSAR are different from those of InSAR. In this paper baseline decorrelation, which includes surface decorrelation and volume decorrelation, is firstly analyzed with the random volume over ground (RVoG) model. Then some different considerations in choosing baseline between Pol-InSAR and InSAR are presented. Finally methods of determining Pol-InSAR baseline are given and discussed.
Key concepts: Decorrelation, Interferometric synthetic aperture radar, Baseline (sea), Polarimetry, Interferometry, Remote sensing, Synthetic aperture radar, Very-long-baseline interferometry