Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products demands the precise compensation of the 3-D motion of the aircraft. This requires to estimate and correct small residual motion errors (RMEs) within the accuracy limits of the sensor navigation subsystem, e.g., using residual motion compensation (MoCo) algorithms. Because of their data-driven nature, the performance of these algorithms severely degrades for heavily decorrelated interferograms. This letter proposes a generic RME estimation and compensation strategy optimally estimating RME in a stack of SAR acquisitions, where some interferometric pairs are strongly ...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
Abstract—This letter presents a comparison between three Fourier-based motion compensation (MoCo) al...
Residual motion error estimation using the multisquint method [1] is established as a robust techniq...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Airborne repeat-pass SAR systems are very sensible to sub-wavelength deviations from the reference t...
Abstract—Airborne repeat-pass SAR systems are very sensible to subwavelength deviations from the ref...
The potential and necessity of the estimation and compensation of motion errors beyond the accuracy ...
Abstract — Airborne repeat-pass SAR data are very sensible to sub-wavelength deviations from the ref...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
This letter presents a new motion compensation algorithm to process airborne interferometric repeat-...
The processing of airborne synthetic aperture radar (SAR) data requires a precise compensation of th...
Abstract—This letter discusses the detection and correction of residual motion errors that appear in...
Deviation from definitive flight path of a plane fixed a synthetic aperture radar (SAR) leads to ina...
Efficient synthetic aperture radar (SAR) processing algorithms are unable to exactly implement the ...
Residual motion error estimation using the multisquint method is established as a robust technique t...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
Abstract—This letter presents a comparison between three Fourier-based motion compensation (MoCo) al...
Residual motion error estimation using the multisquint method [1] is established as a robust techniq...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Airborne repeat-pass SAR systems are very sensible to sub-wavelength deviations from the reference t...
Abstract—Airborne repeat-pass SAR systems are very sensible to subwavelength deviations from the ref...
The potential and necessity of the estimation and compensation of motion errors beyond the accuracy ...
Abstract — Airborne repeat-pass SAR data are very sensible to sub-wavelength deviations from the ref...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
This letter presents a new motion compensation algorithm to process airborne interferometric repeat-...
The processing of airborne synthetic aperture radar (SAR) data requires a precise compensation of th...
Abstract—This letter discusses the detection and correction of residual motion errors that appear in...
Deviation from definitive flight path of a plane fixed a synthetic aperture radar (SAR) leads to ina...
Efficient synthetic aperture radar (SAR) processing algorithms are unable to exactly implement the ...
Residual motion error estimation using the multisquint method is established as a robust technique t...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
Abstract—This letter presents a comparison between three Fourier-based motion compensation (MoCo) al...
Residual motion error estimation using the multisquint method [1] is established as a robust techniq...