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Atmospheric Water Vapor Effects on Spaceborne Interferometric SAR Imaging: Comparison with Ground-based Measurements and Meteorological Model Simulations at Different Scales., , , , , , , , , и 11 other автор(ы). IGARSS (5), стр. 320-323. IEEE, (2009)Sentinel-1A and Sentinel-1B CSAR status., , , , , , и . SAR, том 8179 из SPIE Proceedings, стр. 817902. SPIE, (2011)A Synergistic Use of a High-Resolution Numerical Weather Prediction Model and High-Resolution Earth Observation Products to Improve Precipitation Forecast., , , , , , , , , и 10 other автор(ы). Remote. Sens., 11 (20): 2387 (2019)Sea Surface Temperature Gradients Estimation Using Top-of-Atmosphere Observations from the ESA Earth Explorer 10 Harmony Mission: Preliminary Studies., , , , , , , и . Remote. Sens., 15 (4): 1163 (февраля 2023)Multiaperture Focusing for Spaceborne Transmitter/Ground-Based Receiver Bistatic SAR., , , , и . IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens., (2020)Numerical weather prediction models and SAR interferometry: synergic use for meteorological and INSAR applications., , , , , , и . SAR, том 8179 из SPIE Proceedings, стр. 817912. SPIE, (2011)Sentinel-1 System capabilities and applications., , , , и . IGARSS, стр. 1457-1460. IEEE, (2014)A Radargrammetric Approach for Spaceborne Transmitter-Stationary Receiver Bistatic Sar., , , , и . IGARSS, стр. 3511-3514. IEEE, (2019)Multi-Aperture Focusing in Spaceborne Transmitter-Stationary Receiver Bistatic SAR., , , и . IGARSS, стр. 1120-1123. IEEE, (2019)Estimating total aboveground, stem and branch biomass using multi-frequency SAR., , , и . MultiTemp, стр. 1-3. IEEE, (2017)