Spatial and temporal variation of the free electron concentration in the ionosphere affects SAR interferograms, in particular at low radar frequencies. The split-spectrum method permits separating the ionospheric and the non-dispersive phase terms using spectral sub-band images. In this work a reformulation of the split-spectrum method facilitates the necessary processing steps. Reformulating the split-spectrum method permits determining the ionospheric phase component based on a split-spectrum double-difference interferogram and the full-bandwidth differential interferogram. In this way differing a pair of unwrapped phase images, each one scaled by a large factor, can be avoided, making the method more robust. The applicability of the prop...
Many methods, to estimate the ionospheric effects on SAR images and interferograms, have been propos...
This paper presents a new method that improves the estimation of the ionospheric phase screen, with ...
For spaceborne SAR (Synthetic Aperture Radar) systems, the dispersive effects of the ionosphere on t...
Differential SAR interferometry (DInSAR) is a useful technique used to measure small movements and s...
The differential ionospheric path delay is a major error source in L-band interferograms. It is supe...
Synthetic aperture radar interferograms are affected by ionospheric disturbances. The split-spectrum...
Variations of the ionosphere can significantly disrupt synthetic aperture radar (SAR) acquisitions a...
The ionospheric propagation path delay is a major error source in synthetic aperture radar (SAR) int...
Split-spectrum approaches have proven successful at estimating ionospheric corrections by modeling t...
L-band synthetic aperture radar interferograms have the potential to measure geophysical processes s...
peer reviewedThe potential of Split-Band processing to determine the absolute phase of an interferom...
Repeat pass interferometric synthetic aperture radar (InSAR) observations may be significantly impac...
Synthetic Aperture Radar (SAR) is the key-technology for the Earth’s Observation from space. It enab...
Abstract—Interferometric synthetic aperture radar (InSAR) is a powerful technique that precisely mea...
Low frequency synthetic aperture radar (SAR) configurations play an important role in monitoring for...
Many methods, to estimate the ionospheric effects on SAR images and interferograms, have been propos...
This paper presents a new method that improves the estimation of the ionospheric phase screen, with ...
For spaceborne SAR (Synthetic Aperture Radar) systems, the dispersive effects of the ionosphere on t...
Differential SAR interferometry (DInSAR) is a useful technique used to measure small movements and s...
The differential ionospheric path delay is a major error source in L-band interferograms. It is supe...
Synthetic aperture radar interferograms are affected by ionospheric disturbances. The split-spectrum...
Variations of the ionosphere can significantly disrupt synthetic aperture radar (SAR) acquisitions a...
The ionospheric propagation path delay is a major error source in synthetic aperture radar (SAR) int...
Split-spectrum approaches have proven successful at estimating ionospheric corrections by modeling t...
L-band synthetic aperture radar interferograms have the potential to measure geophysical processes s...
peer reviewedThe potential of Split-Band processing to determine the absolute phase of an interferom...
Repeat pass interferometric synthetic aperture radar (InSAR) observations may be significantly impac...
Synthetic Aperture Radar (SAR) is the key-technology for the Earth’s Observation from space. It enab...
Abstract—Interferometric synthetic aperture radar (InSAR) is a powerful technique that precisely mea...
Low frequency synthetic aperture radar (SAR) configurations play an important role in monitoring for...
Many methods, to estimate the ionospheric effects on SAR images and interferograms, have been propos...
This paper presents a new method that improves the estimation of the ionospheric phase screen, with ...
For spaceborne SAR (Synthetic Aperture Radar) systems, the dispersive effects of the ionosphere on t...