DART-Lux: An unbiased and rapid Monte Carlo radiative transfer method for simulating remote sensing imagesYingjie Wang, Jean‐Philippe Gastellu‐Etchegorry, Abdelaziz Kallel et al.|Remote Sensing of Environment|2022Cited by 86
Discrete anisotropic radiative transfer modelling of solar-induced chlorophyll fluorescence: Structural impacts in geometrically explicit vegetation canopiesZbyněk Malenovský, Jean‐Philippe Gastellu‐Etchegorry, Omar Regaieg et al.|Remote Sensing of Environment|2021Cited by 53
Assessing impacts of canopy 3D structure on chlorophyll fluorescence radiance and radiative budget of deciduous forest stands using DARTOmar Regaieg, Jean‐Philippe Gastellu‐Etchegorry, Douglas C. Morton et al.|Remote Sensing of Environment|2021Cited by 47
Comprehensive LiDAR simulation with efficient physically-based DART-Lux model (I): Theory, novelty, and consistency validationXuebo Yang, Jean‐Philippe Gastellu‐Etchegorry, Yingjie Wang et al.|Remote Sensing of Environment|2022Cited by 41
Modeling forest canopy surface retrievals using very high-resolution spaceborne stereogrammetry: (II) optimizing acquisition configurationsTiangang Yin, Douglas C. Morton, Paul Montesano et al.|Remote Sensing of Environment|2023Cited by 14