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MODTRAN®61 Generated Single Scattering Adjacency Function.

, , and . IGARSS, page 6678-6681. IEEE, (2020)

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Analysis of Hyperion data with the FLAASH atmospheric correction algorithm., , , , , , and . IGARSS, page 90-92. IEEE, (2003)A Four-Parameter Spectrally-Universal Line Shape Function.. IGARSS, page 3451-3454. IEEE, (2020)Recent Advances in Development of Polarimetric MODTRAN®6., , and . IGARSS, page 3440-3443. IEEE, (2020)Limb-viewing hyperspectral image simulation based on a polygonal earth cross-section (PEX) model., , and . IGARSS, page 1449-1452. IEEE, (2017)A new method for atmospheric correction and aerosol optical property retrieval for VIS-SWIR multi- and hyperspectral imaging sensors: QUAC (QUick atmospheric correction)., , , , , , , , and . IGARSS, page 3549-3552. IEEE, (2005)Recent Developments in the MODTRAN® Atmospheric Model and Implications for Hyperspectral Compensation., , , and . IGARSS (2), page 262-265. IEEE, (2009)MODTRAN® scattering: Extracting spherical-refractive path contributions from plane-parallel disort., , and . IGARSS, page 1453-1456. IEEE, (2017)Remote bathymetry of the littoral zone from AVIRIS, LASH, and QuickBird imagery., , , , and . IEEE Trans. Geosci. Remote. Sens., 43 (2): 337-347 (2005)Atmospheric Correction of Spectral Imagery: Evaluation of the FLAASH Algorithm with AVIRIS Data., , , , , , , and . AIPR, page 157-163. IEEE Computer Society, (2002)Fast Monte Carlo-assisted simulation of hyperspectral earth backgrounds., , , and . WHISPERS, page 1-4. IEEE, (2011)