Acta Optica Sinica, Volume. 32, Issue 10, 1001001(2012)

A MODTRAN-Based Double-Lookup-Tables Retrieval Algorithm for Water Vapor Amount of Hyperspectral Data

Tao Dongxing*, Zhao Huijie, and Jia Guorui
Author Affiliations
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    References(18)

    [1] [1] F. E. Fowle. The transparency of aqueous vapor[J]. J. Astrophys., 1915, 42: 394~411

    [4] [4] Zhou Ning, Liu Min. Total column water vapor retrieval methods and results comparison by using sun photometer[J]. J. Remote Sensing, 2011, 15(3): 573~577

    [5] [5] Zhang Yuxiang, Li Xiaojing, Gu Xingfa. Estimation of water vapor amount over Beijing from sun photometer measurements[J]. J. Remote Sensing, 2006, 10(5): 749~755

    [6] [6] C. J. Bruegge, J. E. Conel, J. S. Margolis et al.. In-situ atmospheric water-vapor retheval in support of AVIRIS validation[C]. SPIE, 1990, 1298: 150~163

    [7] [7] Liu Sanchao, Gao Maofang, Liu Qinhuo et al.. Retrieval of water vapor using hyperspectral data[J]. Remote Sensing Information, 2009, (3): 11~14

    [8] [8] Y. J. Kaufman, B. C. Gao. Remote sensing of water vapor in the near IR from EOS/MODIS[J]. IEEE Trans. Geosci. & Remote Sens., 1992, 30(5): 871~884

    [10] [10] Li Honglin, Li Wanbiao. Retrieval of atmospheric total water vapor with MODIS near infrared measurements[J]. Acta Scientiarum Naturalium Universitatis Pekinensis (JCR Science Edition), 2008, 44(1): 121~128

    [11] [11] G. W. Felde, G. P. Anderson, J. A Gardner et al.. Water vapor retrieval using the FLAASH atmospheric correction algorithm[C]. SPIE, 2004, 5425: 357~367

    [12] [12] G. P. Anderson, G. W. Felde, M. L. Hoke et al.. MODTRAN4 based atmospheric correction algorithm: FLAASH (fast line-of-sight atmospheric analysis of spectral hypercubes)[C]. SPIE, 2002, 4725: 65~71

    [13] [13] Hu Xiuqing, Huang Yibin. Comparison and application of methods for satellite remote sensing of atmospheric water vapor based on 940 nm near-infrared bands[J]. Meteorological Science and Technology, 2010, 38(5): 582~587

    [16] [16] Wang Jiacheng, Qiao Yanli, Yang Shizhi. Retrieval of polluted aerosol optical properties over coastal water[J]. Laser & Optoelectronics Progress, 2011, 48(6): 060101

    [17] [17] T. Perkins, S. M. Adler-Golden, M. Matthew et al.. Retrieval of atmospheric properties from hyper- and multi-spectral imagery with the FLAASH atmospheric correction algorithm[C]. SPIE, 2005, 5979: 59790E

    [18] [18] Y. J. Kaufman, A. E. Wald, L. A. Remer et al.. The MODIS 2.1-μm channel-correlation with visible reflectance for use in remote sensing of aerosol[J]. IEEE Trans. Geosci. & Remote Sens., 1997, 35(5): 1286~1298

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    Tao Dongxing, Zhao Huijie, Jia Guorui. A MODTRAN-Based Double-Lookup-Tables Retrieval Algorithm for Water Vapor Amount of Hyperspectral Data[J]. Acta Optica Sinica, 2012, 32(10): 1001001

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    Paper Information

    Category: Atmospheric Optics and Oceanic Optics

    Received: Apr. 19, 2012

    Accepted: --

    Published Online: Aug. 17, 2012

    The Author Email: Dongxing Tao (buaaeye@aspe.buaa.edu.cn)

    DOI:10.3788/aos201232.1001001

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