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Soil Moisture Estimation by Linear Regression from Smap Polarimetric Radar Data with Aquarius Derived Coefficients., , , , и . IGARSS, стр. 1816-1817. IEEE, (2018)A Comparative Study of the SMAP Passive Soil Moisture Product With Existing Satellite-Based Soil Moisture Products., , , , , , , , , и . IEEE Trans. Geosci. Remote. Sens., 55 (5): 2959-2971 (2017)Analysis of Polarimetric Radar Data and Soil Moisture From Aquarius: Towards a Regression-Based Soil Moisture Estimation Algorithm., и . IEEE J Sel. Topics in Appl. Earth Observ. and Remote Sensing, 9 (8): 3497-3504 (2016)Regression-based soil moisture estimation from SMAP polarimetric radar data with Aquarius derived coefficients., и . IGARSS, стр. 4136-4138. IEEE, (2017)Can Airborne Ground Penetrating Radars Explore Groundwater in Hyper-Arid Regions?, , , , , , , , , и 1 other автор(ы). IEEE Access, (2018)An Optimal Nonnegative Eigenvalue Decomposition for the Freeman and Durden Three-Component Scattering Model., , и . IEEE Trans. Geosci. Remote. Sens., 55 (4): 2167-2176 (2017)Intercalibration of Low Frequency Brightness Temperature Measurements For Long-Term Soil Moisture Record., , , , , и . IGARSS, стр. 88-91. IEEE, (2018)L-, C- and X-Band Passive Microwave Soil Moisture Retrieval Algorithm Parameterization Using in Situ Validation Sites., , , , , , , , , и . IGARSS, стр. 1434-1437. IEEE, (2018)Generalized Terrain Topography in Radar Scattering Models., , , и . IEEE Trans. Geosci. Remote. Sens., 54 (7): 3944-3952 (2016)The sensitivity of ground-reflected GNSS signals to near-surface soil moisture, as recorded by spaceborne receivers., , , , и . IGARSS, стр. 2661-2663. IEEE, (2017)