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Ultrahigh-resolution boreal forest canopy mapping: Combining UAV imagery and photogrammetric point clouds in a deep-learning-based approach., , , , , , , , , и . Int. J. Appl. Earth Obs. Geoinformation, (2022)Fractional vegetation cover retrieval using multi-spatial resolution data and plant growth model., , , и . IGARSS, стр. 241-244. IEEE, (2010)Clear sky Net Surface Radiative Fluxes over rugged terrain from satellite measurements., , , и . IGARSS, стр. 4265-4268. IEEE, (2011)A vegetation phenology model for fractional vegetation cover retrieval using time series data., , , , и . IGARSS, стр. 3339-3342. IEEE, (2012)Ground-Based Radiation Observational Method in Mountainous Areas., , , , , , , , и . IGARSS, стр. 8566-8569. IEEE, (2019)Estimating the Leaf Area of Urban Individual Trees From Single-Scan Terrestrial Laser Scanner Based on Slant Leaf Area Index., , , , , , , , и . IEEE Trans. Geosci. Remote. Sens., (2024)Correction of Sun-View Angle Effect on Normalized Difference Vegetation Index (NDVI) With Single View-Angle Observation., , , , и . IEEE Trans. Geosci. Remote. Sens., (2024)Retrieval of time series LAI by coupling an empirical crop growth model with a radiative transfer model., , , и . IGARSS, стр. 1645-1647. IEEE, (2010)Modeling vegetation cover distribution at different scales based on Bayesian statistical inference., , , , , , и . IGARSS, стр. 2727-2729. IEEE, (2004)Indirect Measurement of Forest Leaf Area Index Using Path Length Distribution Model and Multispectral Canopy Imager., , , , и . IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens., 9 (6): 2532-2539 (2016)