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Abandoned Land Mapping Based on Spatiotemporal Features from PolSAR Data via Deep Learning Methods., , , , , , , и . Remote. Sens., 15 (16): 3942 (августа 2023)Adaptive extraction of water in urban areas based on local iteration using high-resolution multi-spectral image., , , , и . IGARSS, стр. 6024-6027. IEEE, (2012)Real-time Dynamic Visualization Techniques for Massive Geospatial Data., , и . ICDM Workshops, стр. 1143-1149. IEEE Computer Society, (2014)Geo-Object-Based Land Cover Map Update for High-Spatial-Resolution Remote Sensing Images via Change Detection and Label Transfer., , , , , и . Remote Sensing, 12 (1): 174 (2020)Land Geoparcel-Based Spatial Downscaling for the Microwave Remotely Sensed Soil Moisture Product., , , , , , , , и . IEEE Geosci. Remote. Sens. Lett., (2022)Object-based land cover mapping using adaptive scale segmentation from ZY-3 satellite images., , , и . IGARSS, стр. 63-66. IEEE, (2017)Adaptive Scale Selection for Multiscale Segmentation of Satellite Images., , , , и . IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens., 10 (8): 3641-3651 (2017)Spatial-temporal constraints for surface soil moisture mapping using Sentinel-1 and Sentinel-2 data over agricultural regions., , , , , , , и . Comput. Electron. Agric., (2024)Urban vegetation phenology analysis and the response to the temperature change., , , , и . IGARSS, стр. 5743-5746. IEEE, (2017)Maize plant height automatic reading of measurement scale based on improved YOLOv5 lightweight model., , , , , и . PeerJ Comput. Sci., (2024)