Title :
An interferometric coherence optimization method in radar polarimetry for high-resolution imagery
Author :
Colin, Elise ; Titin-Schnaider, Cécile ; Tabbara, Walid
Author_Institution :
Electromagnetism & Radar Dept., French Aerosp. Res. Center, Palaiseau, France
Abstract :
This paper investigates to what extent a new interferometric coherence optimization in radar polarimetry allows the separation of point scatterers located in the same resolution cell according to their interferometric phases. An interferometric coherence definition called the single-mechanism coherence is introduced, and the corresponding optimization method is briefly discussed. This method was first validated theoretically when no volume decorrelation occurs. Then, it has been applied to simple target measurements acquired in an anechoic chamber, and to an X-band polarimetric and interferometric synthetic aperture radar image containing man-made targets. In both cases, the single-mechanism coherence optimization enables to resolve the interferometric phases of several scattering centers inside the same resolution cell.
Keywords :
backscatter; data acquisition; geophysical signal processing; geophysical techniques; radar imaging; radar polarimetry; radiowave interferometry; remote sensing by radar; synthetic aperture radar; X-band interferometric SAR image; X-band polarimetric SAR image; anechoic chamber; data acquisition; high-resolution imagery; interferometric coherence optimization; point scatterer separation; radar polarimetry; single-mechanism coherence; synthetic aperture radar; target measurements; Anechoic chambers; Antenna measurements; Decorrelation; Electromagnetic scattering; Image resolution; Optimization methods; Polarization; Radar polarimetry; Radar scattering; Synthetic aperture radar interferometry; Coherence optimization; interferometry; polarimetry;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2005.859357