Spaceborne polarimetric SAR interferometry: performance analysis and mission concepts

  • Authors:
  • Gerhard Krieger;Konstantinos Panagiotis Papathanassiou;Shane R. Cloude

  • Affiliations:
  • Microwaves and Radar Institute, German Aerospace Centre (DLR), Wessling, Germany;Microwaves and Radar Institute, German Aerospace Centre (DLR), Wessling, Germany;School of Electrical and Electronic Engineering, The University of Adelaide, Adelaide, Australia

  • Venue:
  • EURASIP Journal on Applied Signal Processing
  • Year:
  • 2005

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Abstract

We investigate multichannel imaging radar systems employing coherent combinations of polarimetry and interferometry (Pol-InSAR). Such systems are well suited for the extraction of bio- and geophysical parameters by evaluating the combined scattering from surfaces and volumes. This combination leads to several important differences between the design of Pol-InSAR sensors and conventional single polarisation SAR interferometers. We first highlight these differences and then investigate the Pol-InSAR performance of two proposed spaceborne SAR systems (ALOS/PalSAR and TerraSAR-L) operating in repeat-pass mode. For this, we introduce the novel concept of a phase tube which enables (1) a quantitative assessment of the Pol-InSAR performance, (2) a comparison between different sensor configurations, and (3) an optimization of the instrument settings for different Pol-InSAR applications. The phase tube may hence serve as an interface between system engineers and application-oriented scientists. The performance analysis reveals major limitations for even moderate levels of temporal decorrelation. Such deteriorations may be avoided in single-pass sensor configurations and we demonstrate the potential benefits from the use of future bi- and multistatic SAR interferometers.