Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1069-1072
Abstract
Original Freeman three-component decomposition was found useful in information
extraction from a mix of area: city blocks, forest, ocean and land surfaces, etc.. However, it al-
ways suffers from some inconsistencies with real situation such as negative power and scattering
mechanism ambiguity. It is probably because of the overestimate of volume scattering power.
But intrinsically it is the inconsistency between the assumed models and the PolSAR. The de-
orientation method was initially found useful to alleviate this problem to some degree. However,
because of the boundedness of deorientation, it is sometimes noneffective. Nonnegative eigen-
value decomposition (NNED) can absolutely solve the negative power problem. But the residual
matrix except the volume scattering model is assumed equal to two. So in some sense it is under
the volume scattering dominance assumption. Therefore, the decomposition should be separated
into two individual parts. In this paper, for the pixels that volume scattering dominates, the
NNED will be used. For the pixels that volume scattering doesn’t dominate, we will start with
the assumed models, and focus on developing a generalized model-based decomposition. Be-
cause for model-based scheme, we insist that one should radically start from the models and
then a generalized three-component model-based decomposition is proposed, which consist of the
surface, double bounce and volume scattering. Among it the generalized scattering mechanism
proposed by Cloude is adopted, which provides a more accurate model for surface and dihedral
scattering, and the dominant scattering component will be figured out according to the alpha
angle parameter to be solved in the generalized model. Through this solution, the dominant
scattering mechanism in one pixel will be preserved better. The performance of this approach is
demonstrated and evaluated using the airborne AIRSAR and E-SAR data sets. The results show
the advantages and improvements especially for alleviating the scattering mechanism ambiguity
of oriented buildings from vegetation.
Citation
Yongjun Cai,
Jingshan Jiang,
and
Xiangkun Zhang,
"Three-component Decomposition for Polarimetric SAR Images Based on Coherency Matrix," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1069-1072