Title :
A two-dimensional region growing least squares phase unwrapping algorithm for interferometric SAR processing
Author :
Fornaro, Gianfranco ; Sansosti, Eugenio
Author_Institution :
Ist. di Ricerche per l´´Elettromagnetismo e i Componenti Elettronici, CNR, Napoli, Italy
fDate :
9/1/1999 12:00:00 AM
Abstract :
This paper presents a new two-dimensional (2-D) phase unwrapping (PhU) algorithm based on a least squares (LS) region growing strategy: the wrapped phase image is partitioned in different regions that are sequentially unwrapped via a LS algorithm. Reliable regions are dealt with at the beginning of the procedure, while critical areas are unwrapped in the final steps, thus avoiding error propagation from critical to reliable areas. A conditioned least squares formulation of the phase unwrapping problem is the core of the proposed procedure: this allows the solution to be tied to “some” known boundary phase values, thus guaranteeing the correct joining of the reconstructed phase in between the different regions and preventing them from being independently unwrapped. The application of the finite element method allows a straightforward implementation of the algorithm in the discrete domain case. Experimental results, carried out on simulated and real interferometric SAR data, show the effectiveness of the proposed algorithm and the improved performances with respect to existing unwrapping procedures
Keywords :
geophysical signal processing; least squares approximations; radar imaging; radiowave interferometry; remote sensing by radar; synthetic aperture radar; 2-D phase unwrapping algorithm; boundary phase values; discrete domain case; finite element method; interferometric SAR processing; reconstructed phase; two-dimensional region growing least squares phase unwrapping algorithm; wrapped phase image; Area measurement; Finite element methods; Image reconstruction; Instruction sets; Least squares methods; Partitioning algorithms; Phase measurement; Synthetic aperture radar; Synthetic aperture radar interferometry; Two dimensional displays;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on