Agile synthetic aperture radar (SAR) platforms such as car-borne and UAV-borne SAR systems require combined inertial navigation systems (INS) and global navigation satellite systems (GNSS) to measure the radar sensor trajectories used for focusing and interferometric processing. Measurement inaccuracies from INS/GNSS systems lead to residual phase errors in the SAR products whose minimization is crucial to derive accurate topographic and deformation information. In this work, we analyze the impact of residual positioning errors on car-borne repeat-pass SAR interferometry at L-band for different INS/GNSS measurement configurations and for the typical car-borne acquisition geometry. The positioning errors are evaluated both during single SAR ...
The processing of airborne synthetic aperture radar (SAR) data requires a precise compensation of th...
When applying to the airborne repeat-pass Interferometric Synthetic Aperture Radar (InSAR), which ha...
In February 2000 the Shuttle Radar Topography Mission mapped 80% of the earth surface using the firs...
Agile synthetic aperture radar (SAR) platforms such as car-borne and UAV-borne SAR systems require c...
Repeat-pass differential SAR interferometry (DInSAR) using spaceborne SAR data or stationary terrest...
In the context of differential synthetic aperture radar interferometry (DInSAR), precise trajectory ...
Synthetic aperture radar (SAR) is a well established imaging technique used in a broad range of Eart...
In the MOtion COmpensation (MOCO) approach to airborne repeat-pass interferometric Synthetic Apertur...
Terrestrial radar systems are used operationally for area-wide measurement and monitoring of surface...
Abstract—Airborne repeat-pass SAR systems are very sensible to subwavelength deviations from the ref...
This study explores the potential of Synthetic Aperture Radar (SAR) to aid Unmanned Aerial Vehicle (...
Global navigation satellite system (GNSS)-based synthetic aperture radar interferometry (InSAR) empl...
Terrestrial radar interferometry (TRI) has become an operational tool to measure slope surface displ...
This report contains the results of a Sandia National Laboratories Directed Research and Development...
Abstract — Airborne repeat-pass SAR data are very sensible to sub-wavelength deviations from the ref...
The processing of airborne synthetic aperture radar (SAR) data requires a precise compensation of th...
When applying to the airborne repeat-pass Interferometric Synthetic Aperture Radar (InSAR), which ha...
In February 2000 the Shuttle Radar Topography Mission mapped 80% of the earth surface using the firs...
Agile synthetic aperture radar (SAR) platforms such as car-borne and UAV-borne SAR systems require c...
Repeat-pass differential SAR interferometry (DInSAR) using spaceborne SAR data or stationary terrest...
In the context of differential synthetic aperture radar interferometry (DInSAR), precise trajectory ...
Synthetic aperture radar (SAR) is a well established imaging technique used in a broad range of Eart...
In the MOtion COmpensation (MOCO) approach to airborne repeat-pass interferometric Synthetic Apertur...
Terrestrial radar systems are used operationally for area-wide measurement and monitoring of surface...
Abstract—Airborne repeat-pass SAR systems are very sensible to subwavelength deviations from the ref...
This study explores the potential of Synthetic Aperture Radar (SAR) to aid Unmanned Aerial Vehicle (...
Global navigation satellite system (GNSS)-based synthetic aperture radar interferometry (InSAR) empl...
Terrestrial radar interferometry (TRI) has become an operational tool to measure slope surface displ...
This report contains the results of a Sandia National Laboratories Directed Research and Development...
Abstract — Airborne repeat-pass SAR data are very sensible to sub-wavelength deviations from the ref...
The processing of airborne synthetic aperture radar (SAR) data requires a precise compensation of th...
When applying to the airborne repeat-pass Interferometric Synthetic Aperture Radar (InSAR), which ha...
In February 2000 the Shuttle Radar Topography Mission mapped 80% of the earth surface using the firs...