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Filtered by keyword:app: other remote sensing

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  1. Allen, Michael A., James A. Voogt, and Andreas Christen (2018), Time-Continuous Hemispherical Urban Surface TemperaturesRem. Sens., 10(1), doi:10.3390/rs10010003.
  2. Cao, Hongtao, Xingfa Gu, Yuan Sun, Hailiang Gao, Zui Tao, and Shuaiyi Shi (2021), Comparing, validating and improving the performance of reflectance obtention method for UAV-Remote sensingInt. J. of Applied Earth Observation and Geoinformation, 102, doi:10.1016/j.jag.2021.102391.
  3. Ciani, D., M. Sabatini, B. B. Nardelli, P. L. Dekker, B. Rommen, D. S. Wethey, C. Yang, and G. L. Liberti (2023), Sea Surface Temperature Gradients Estimation Using Top-of-Atmosphere Observations from the ESA Earth Explorer 10 Harmony Mission: Preliminary StudiesRem. Sens., 15(4), doi:10.3390/rs15041163.
  4. Duncan, David Ian, Patrick Eriksson, and Simon Pfreundschuh (2019), An experimental 2D-Var retrieval using AMSR2Atmos. Meas. Tech., 12(12), 6341–6359, doi:10.5194/amt-12-6341-2019.
  5. Fahey, Thomas, Maidul Islam, Alessandro Gardi, and Roberto Sabatini (2021), Laser Beam Atmospheric Propagation Modelling for Aerospace LIDAR ApplicationsAtmos., 12(7), doi:10.3390/atmos12070918.
  6. Marsh, Christopher B., Kevin R. Green, B. Wang, and Raymond J. Spiteri (2021), Performance improvements to modern hydrological models via lookup table optimizationsEnv. Mod. & Software, 139, doi:10.1016/j.envsoft.2021.105018.
  7. Picard, Ghislain, Melody Sandells, and Henning Loewe (2018), SMRT: an active-passive microwave radiative transfer model for snow with multiple microstructure and scattering formulations (v1.0)Geosci. Model Dev., 11(7), 2763–2788, doi:10.5194/gmd-11-2763-2018.
  8. Yang, Hu and Martin Burgdorf (2020), A Study of Lunar Microwave Radiation Based on Satellite ObservationsRem. Sens., 12(7), doi:10.3390/rs12071129.
  9. Zhang, Yichao, Lakitha O. H. Wijeratne, Shawhin Talebi, and David J. Lary (2021), Machine Learning for Light Sensor CalibrationSens., 21(18), doi:10.3390/s21186259.