The Ground-Based Synthetic Aperture Radar (GB-SAR) is a relatively new technique, which in the last ten years has gained interest as deformation measurement and monitoring tool. The GB-SAR technique is based on an imaging radar-based sensor, which o ers high sensitivity to small displacements, in the region of sub-millimetres to millimetres, long-range measurements, which can work up to some kilometres, and massive deformation measurement capability. These features confer to the GB-SAR technique interesting advantages with respect to other point-wise deformation measurement techniques. The process of estimating deformation from the GB-SAR data is not straightforwa...
This paper is focused on deformation monitoring using the Ground-Based SAR (GBSAR) technique and a p...
This paper concerns the use of Ground-Based Synthetic Aperture Radar (GB-SAR) interferometer for the...
The paper focuses on the differential interferometric SAR (Synthetic Aperture Radar) technique for t...
The Ground-Based Synthetic Aperture Radar (GB-SAR) is a relatively new technique, which in the ...
This thesis describes a first hands-on experience working with a Ground-Based Synthetic Aperture Rad...
The Ground-Based SAR (GBSAR) is a terrestrial remote sensing technique used to measure and monitor d...
Deformation monitoring using ground-based synthetic aperture radar (GB-SAR) data usually exploits th...
AbstractThis paper provides a review of ground-based SAR (GBSAR) interferometry for deformation meas...
This paper provides a review of ground-based SAR (GBSAR) interferometry for deformation measurement....
The paper describes a relatively new terrestrial remote sensing technique for deformation monitoring...
In the last years, the Ground-Based SAR (GBSAR) technique has proved to be a reliable tool for defor...
In the last decade, ground-based interferometry has proven to be a powerful technique for continuous...
In the last years, the Ground-Based SAR (GBSAR) technique has proved to be a reliable tool for defor...
In this paper, a ground-based SAR interferometry technology was used to monitor major engineering. T...
Ph. D ThesisGround-based synthetic aperture radar (GBSAR), together with interferometry, represents ...
This paper is focused on deformation monitoring using the Ground-Based SAR (GBSAR) technique and a p...
This paper concerns the use of Ground-Based Synthetic Aperture Radar (GB-SAR) interferometer for the...
The paper focuses on the differential interferometric SAR (Synthetic Aperture Radar) technique for t...
The Ground-Based Synthetic Aperture Radar (GB-SAR) is a relatively new technique, which in the ...
This thesis describes a first hands-on experience working with a Ground-Based Synthetic Aperture Rad...
The Ground-Based SAR (GBSAR) is a terrestrial remote sensing technique used to measure and monitor d...
Deformation monitoring using ground-based synthetic aperture radar (GB-SAR) data usually exploits th...
AbstractThis paper provides a review of ground-based SAR (GBSAR) interferometry for deformation meas...
This paper provides a review of ground-based SAR (GBSAR) interferometry for deformation measurement....
The paper describes a relatively new terrestrial remote sensing technique for deformation monitoring...
In the last years, the Ground-Based SAR (GBSAR) technique has proved to be a reliable tool for defor...
In the last decade, ground-based interferometry has proven to be a powerful technique for continuous...
In the last years, the Ground-Based SAR (GBSAR) technique has proved to be a reliable tool for defor...
In this paper, a ground-based SAR interferometry technology was used to monitor major engineering. T...
Ph. D ThesisGround-based synthetic aperture radar (GBSAR), together with interferometry, represents ...
This paper is focused on deformation monitoring using the Ground-Based SAR (GBSAR) technique and a p...
This paper concerns the use of Ground-Based Synthetic Aperture Radar (GB-SAR) interferometer for the...
The paper focuses on the differential interferometric SAR (Synthetic Aperture Radar) technique for t...