Impacts of land consolidation in a semi-arid agricultural region of Türkiye using remote sensing analysis. [PDF]
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Radar-based observation of a lava tube on Venus. [PDF]
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Compressive Learning for the Classification and Reconstruction of Synthetic Aperture Radar Data. [PDF]
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The SIR-C/X-SAR synthetic aperture radar system
Proceedings of the IEEE, 1991The SIR-C/X-SAR synthetic aperture radar, a three-frequency radar to be flown on the Space Shuttle in September 1993, is described. The SIR-C system is a two-frequency radar operating at 1250 MHz (L-band) and 5300 MHz (C-band), and is designed to get four-polarization radar imagery at multiple surface angles. The X-band synthetic aperture radar (X-SAR)
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The evolution of synthetic aperture radar systems and their progression to the EOS SAR
IEEE Transactions on Geoscience and Remote Sensing, 1991The authors describe the evolution of the spaceborne imaging radar starting with the Seasat SAR, through the SIR-A, SIR-B, and SIR-C/X-SAR missions, to the Earth Observing System (Eos) SAR which is scheduled for launch as part of Eos in the late 1990s.
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Interferometric Synthetic Aperture Radar (SAR) Missions Employing Formation Flying [PDF]
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Synthetic aperture radar (SAR)
2020This chapter introduced the basic concepts of SAR and the principle of 2D target resolution. Obtaining high range resolution with wideband signal and high azimuth resolution with long synthetic array is the basis of the 2D high-resolution imaging. RDA is widely used in SAR imaging processing. Azimuth-translation invariance is the key of RDA.
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