To serve seamless mapping, airborne LiDAR data are usually collected with multiple parallel strips with one or two cross strip(s). Nevertheless, the overlapping regions of LiDAR data strips are usually found with unbalanced intensity values, resulting in the appearance of stripping noise. Despite that physical intensity correction methods are recently proposed, some of the system and environmental parameters are assumed as constant or not disclosed, leading to such an intensity discrepancy. This paper presents a new normalization technique to adjust the radiometric misalignment found in the overlapping LiDAR data strips. The normalization technique is built upon a second-order polynomial function fitted on the joint histogram plot, whi...
This dataset supports the article "Comparison of Three Methodologies for Removal of Random-Nois...
Imperfections in a lidar's overlap function lead to artefacts in the background, range and overlap-c...
LIght Detection And Ranging (LiDAR) data is available in a point cloud corresponding to long overlap...
The airborne lidar system has been shown to be an effective and reliable method for spatial data col...
International audienceAlongside spatial information, an intensity scalar is also measured by LiDAR (...
Lidar data provide both geometric and radiometric information. Radiometric information is influenced...
In addition to precise 3D coordinates, most light detection and ranging (LIDAR) systems also record ...
Radiometric correction (RC) of the airborne Light Detection And Ranging (LiDAR) intensity data has b...
Radiometric correction (RC) of the airborne Light Detection And Ranging (LiDAR) intensity data has b...
This paper provides guidelines on quantifying the relative horizontal and vertical errors observed b...
LiDAR (Light Detection And Ranging) is a multisensory system consisting of three main components: la...
ABSTRACT LiDAR (Light Detection And Ranging) technology has demonstrated its capabilities as a promi...
Generating seamless mosaics of aerial images is a particularly challenging task when the mosaic comp...
International audienceSpectral unmixing (SU) methods incorporating the spatial regularizations have ...
Radiometric calibration of the Dual-Wavelength Echidna® Lidar (DWEL), a full-waveform terrestrial la...
This dataset supports the article "Comparison of Three Methodologies for Removal of Random-Nois...
Imperfections in a lidar's overlap function lead to artefacts in the background, range and overlap-c...
LIght Detection And Ranging (LiDAR) data is available in a point cloud corresponding to long overlap...
The airborne lidar system has been shown to be an effective and reliable method for spatial data col...
International audienceAlongside spatial information, an intensity scalar is also measured by LiDAR (...
Lidar data provide both geometric and radiometric information. Radiometric information is influenced...
In addition to precise 3D coordinates, most light detection and ranging (LIDAR) systems also record ...
Radiometric correction (RC) of the airborne Light Detection And Ranging (LiDAR) intensity data has b...
Radiometric correction (RC) of the airborne Light Detection And Ranging (LiDAR) intensity data has b...
This paper provides guidelines on quantifying the relative horizontal and vertical errors observed b...
LiDAR (Light Detection And Ranging) is a multisensory system consisting of three main components: la...
ABSTRACT LiDAR (Light Detection And Ranging) technology has demonstrated its capabilities as a promi...
Generating seamless mosaics of aerial images is a particularly challenging task when the mosaic comp...
International audienceSpectral unmixing (SU) methods incorporating the spatial regularizations have ...
Radiometric calibration of the Dual-Wavelength Echidna® Lidar (DWEL), a full-waveform terrestrial la...
This dataset supports the article "Comparison of Three Methodologies for Removal of Random-Nois...
Imperfections in a lidar's overlap function lead to artefacts in the background, range and overlap-c...
LIght Detection And Ranging (LiDAR) data is available in a point cloud corresponding to long overlap...