Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of natural volume scatterers such as forests, thus providing an opportunity to infer structure information in 3D. In this paper, the potential of TomoSAR data at L-band to monitor temporal variations of forest structure is addressed using simulated and experimental datasets. First, 3D reflectivity profiles were extracted by means of TomoSAR reconstruction based on a Compressive Sensing (CS) approach. Next, two complementary indices for the description of horizontal and vertical forest structure were defined and estimated by means of the distribution of local maxima of the reconstructed reflectivity profiles. To assess the sensitivity and consisten...
Microwaves can propagate through vegetation layers, allowing the radar signal to interact with the d...
Due to its ecological importance, the monitoring of the vertical structure of forests is continuousl...
When observing a scene, a radar system is sensitive to the morphology of the scatterers, but also to...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Low frequency (P- or L-band) Synthetic Aperture Radar (SAR) pulses can penetrate through even dense ...
Synthetic Aperture Radar (SAR) measurements are unique for mapping forest 3D structure and its chang...
Forest structure is a key parameter for forest applications, but it is difficult to be estimated at ...
Forest structure is a key parameter for forest applications, but it is difficult to be estimated at ...
Synthetic aperture radar (SAR) remote sensing configurations are able to provide continuous measurem...
The changes in time of 3D reflectivity reconstructions obtained by means of synthetic aperture radar...
Synthetic Aperture Radar (SAR) signals at lower frequencies can penetrate into forest. This capabili...
Synthetic aperture radar (SAR) remote sensing configurations are able to provide continuous measurem...
Microwaves can propagate through vegetation layers, allowing the radar signal to interact with the d...
Due to its ecological importance, the monitoring of the vertical structure of forests is continuousl...
When observing a scene, a radar system is sensitive to the morphology of the scatterers, but also to...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Synthetic Aperture Radar Tomography (TomoSAR) allows the reconstruction of the 3D reflectivity of na...
Low frequency (P- or L-band) Synthetic Aperture Radar (SAR) pulses can penetrate through even dense ...
Synthetic Aperture Radar (SAR) measurements are unique for mapping forest 3D structure and its chang...
Forest structure is a key parameter for forest applications, but it is difficult to be estimated at ...
Forest structure is a key parameter for forest applications, but it is difficult to be estimated at ...
Synthetic aperture radar (SAR) remote sensing configurations are able to provide continuous measurem...
The changes in time of 3D reflectivity reconstructions obtained by means of synthetic aperture radar...
Synthetic Aperture Radar (SAR) signals at lower frequencies can penetrate into forest. This capabili...
Synthetic aperture radar (SAR) remote sensing configurations are able to provide continuous measurem...
Microwaves can propagate through vegetation layers, allowing the radar signal to interact with the d...
Due to its ecological importance, the monitoring of the vertical structure of forests is continuousl...
When observing a scene, a radar system is sensitive to the morphology of the scatterers, but also to...