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BRDF-based correction of colorized aerial LiDAR point …
- https://www.researchgate.net/publication/275634766_BRDF-based_correction_of_colorized_aerial_LiDAR_point_clouds
- In other research [37], the authors proposed the application of a modified BRDF correction model for colorized aerial lidar point clouds. In their research, the …
BRDF and its Impact on Aerial Archaeological Photography
- https://onlinelibrary.wiley.com/doi/10.1002/arp.1559
- Koen Hufkens, Thalès de Haulleville, Elizabeth Kearsley, Kim Jacobsen, Hans Beeckman, Piet Stoffelen, Filip Vandelook, Sofie Meeus, Michael Amara, Leen Van Hirtum, Jan Van den Bulcke, Hans Verbeeck, Lisa Wingate, Historical Aerial Surveys Map Long-Term Changes of Forest Cover and Structure in the Central Congo Basin, Remote Sensing, 10.3390 ...
BRDF and its Impact on Aerial Archaeological Photography
- https://www.researchgate.net/publication/311958799_BRDF_and_its_Impact_on_Aerial_Archaeological_Photography
- Request PDF | BRDF and its Impact on Aerial Archaeological Photography | Despite the arguments in favour of oblique photographs acquired …
Techniques for BRDF Correction of Hyperspectral Mosaics
- https://ieeexplore.ieee.org/document/5483085
- Abstract: The need to correct view- and sun-angle-dependent intensity gradients in aerial and satellite images is well established, with bidirectional reflectance distribution function (BRDF) kernel-based techniques receiving much of the recent attention in the literature. In these methods, a plausible (physical or empirical) model of the BRDF is fitted to the data and then …
Comparison of different BRDF correction methods to
- https://www.sciencedirect.com/science/article/pii/S0034425713002770
- The BRDF correction methodology currently implemented in the MODIS BRDF/Albedo product (MCD43) is based on a linear model with two functions (i.e. kernels) and three parameters (i.e. kernel weights). This type of model was originally proposed by Roujean, Leroy, and Deschamps (1992) and subsequently modified to account for different processes ...
BRDF Normalization « Harmonized Landsat Sentinel-2 - NASA
- https://hls.gsfc.nasa.gov/algorithms/brdf-adjustment/
- BRDF Normalization « Harmonized Landsat Sentinel-2. The solar and view angles for the same ground target change with date and vary between the sensors, and this causes slight discrepancy in measurement. Normalizing the angle effect is desirable for a harmonized dataset. We selected the c-factor technique and the global coefficients provided by ...
Radiometric Correction of Aerial or UAV Imagery
- https://www.innovus.co.za/technologies/social-sciences-and-other/radiometric-correction-of-aerial-uav-imagery.html
- A technology for the radiometric correction of high spatial resolution imagery (aerial or UAV). The imagery is calibrated to approximate surface reflectance by fusing with concurrent and collocated satellite imagery. The technique allows the production of seamless mosaics corrected for coarse scale atmospheric and bidirectional reflectance ...
Imaging Spectroscopy BRDF Correction for Mapping …
- https://ieeexplore.ieee.org/document/8115184/
- Abstract: This paper presents the adaptive reflectance geometric correction (ARGC), a bidirectional reflectance distribution function (BRDF) correction algorithm to address intensity gradients across remotely sensed images. The ARGC is developed and tested on data from the Airborne Visible/Infrared Imaging Spectrometer-Next Generation (AVIRIS-NG) …
RADIOMETRIC PROCESSING OF ADS IMAGERY: …
- https://www.asprs.org/a/publications/proceedings/sandiego2010/sandiego10/Downey.pdf
- imagery. This paper discusses the radiometric corrections in Leica XPro and presents the results of extensive testing of the atmospheric and BRDF corrections in a real world mapping production environment. It is shown that the appli-cation of the atmospheric and BRDF corrections at orthorectification time is a true enrichment of radiometric options
FlexBRDF: A Flexible BRDF Correction for Grouped …
- https://www.essoar.org/doi/10.1002/essoar.10506891.1
- Based on comparisons of overlap areas between adjacent flightlines, correction algorithms built from multiple flightlines concurrently performed better than corrections built for single images (RMSE improved up to 2.3% and mean absolute deviation 2.5%). Standardization to a common SZA among a group of flightlines also improved performance.
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