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Recovering noisy measurements over inland water bodies by regenerating L1B SAR altimetry waveforms using a segment-weighted Fully-Focused - Synthetic Aperture Radar (swFF-SAR) processing scheme

, , , , , and . (Mar 18, 2025)
DOI: 10.5194/egusphere-egu25-5134

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Segmentation of Laser Point Clouds in Urban Areas by a Modified Normalized Cut Method., , and . IEEE Trans. Pattern Anal. Mach. Intell., 41 (12): 3034-3047 (2019)Improving inland water altimetry through Bin-Space-Time (BiST) retracking: A Bayesian approach to incorporate spatio-temporal information, , , and . IEEE Transactions on Geoscience and Remote Sensing, (2025)Recovering noisy measurements over inland water bodies by regenerating L1B SAR altimetry waveforms using a segment-weighted Fully-Focused - Synthetic Aperture Radar (swFF-SAR) processing scheme, , , , , and . (Mar 18, 2025)Recovering noisy measurements over inland water bodies by regenerating L1B SAR altimetry waveforms using a segment-weighted Fully-Focused - Synthetic Aperture Radar (swFF-SAR) processing scheme, , , , , and . (Jan 30, 2025)Fault tolerant approach to generate Level 1B SAR altimetry waveforms for enhancing Level 2 retrackers performance, , , , and . (2024)Recovering noisy measurements over inland water bodies by regenerating L1B SAR altimetry waveforms using a Fully-Focused Sub Synthetic Aperture Radar processing scheme, , , , and . (2025)Relation of Different Type Love-Shida Numbers Determined with the Use of Time-Varying Incremental Gravitational Potential, , and . Pure and Applied Geophysics, 175 (5): 1643-1648 (2018)Segmentation of Laser Point Clouds in Urban Areas by a Modified Normalized Cut Method, , and . IEEE Transactions on Pattern Analysis & Machine Intelligence, (2018)Relation of Different Type Love–Shida Numbers Determined with the Use of Time-Varying Incremental Gravitational Potential, , and . Pure and Applied Geophysics, 175 (5): 1643--1648 (March 2017)Towards highly precise altimetry for inland waters: A 4D approach for range determination in level-1B data, , , , and . (2025)