• Infrared and Laser Engineering
  • Vol. 46, Issue 3, 323001 (2017)
Yang Ping1, Guo Yilu2, Wei He2, Song Dan2, Song Hong2, Zhang Yunfei2, Shentu Yichun2, Liu Hongbo2, Huang Hui2, Zhang Xiandou1, and Fang Meifen3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: 10.3788/irla201746.0323001 Cite this Article
    Yang Ping, Guo Yilu, Wei He, Song Dan, Song Hong, Zhang Yunfei, Shentu Yichun, Liu Hongbo, Huang Hui, Zhang Xiandou, Fang Meifen. Method for spectral restoration of underwater images:theory and application[J]. Infrared and Laser Engineering, 2017, 46(3): 323001 Copy Citation Text show less
    References

    [1] Johnsen G, Volent Z, Dierssen H, et al. 20-Underwater hyperspectral imagery to create biogeochemical maps of seafloor properties[J]. Journal of Engineering Physics and Thermophysics, 2010, 83(3):508-535.

    [2] Volent A Z, Johnsen G, Sigernes F. Kelp forest mapping by use of airborne hyperspectral imager[J]. Journal of Applied Remote Sensing, 2007, 1(1):6656-6659.

    [3] Dierssen H M, Zimmerman R C, Drake L A, et al. Benthic ecology from space: optics and net primary production in seagrass and benthic algae across the great bahama bank[J]. Marine Ecology Progress, 2010, 411(6): 1-15.

    [4] Gleason A C R, Gracias N, Lirman D, et al. Landscape video mosaic from a mesophotic coral reef[J]. Coral Reefs, 2010, 29(2):253-253.

    [5] Aarrestad S M. Use of underwater hyperspectral imagery for geological characterization of the seabed[D]. Trondheim: NTNU, 2014.

    [6] Sakshaug E, Johnsen G H, Kovacs K M. Ecosystem Barents Sea[M]. Norway: Tapir Academic Pres, 2009.

    [7] Mumby P J, Clark C D, Green E P, et al. Benefits of water column correction and contextual editing for mapping coral reefs[J]. International Journal of Remote Sensing, 1998, 19(1): 203-210.

    [8] Holden H, Ledrew E. Effects of the water column on hyperspectral reflectance of submerged coral reef features[J]. Bulletin of Marine Science -Miami-, 2001, 69(2): 685-699.

    [9] Raymond C S, Karen S B. Optical properties of the clearest natural waters (200-800 nm)[J]. Applied Optics, 1981, 20(2): 177-184.

    [10] Moore C, Barnard A, Fietzek P, et al. Optical tools for ocean monitoring and research[J]. Ocean Science, 2009, 5(5): 661-684.

    [11] Gleason A C R, Reid R P, Voss K J. Automated classification of underwater multispectral imagery for coral reef monitoring[C]//OCEANS, IEEE, 2007: 1-8.

    [12] Mishra D R, Narumalani S, Rundquist D, et al. Characterizing the vertical diffuse attenuation coefficient for downwelling irradiance in coastal waters: Implications for water penetration by high resolution satellite data[J]. Isprs Journal of Photogrammetry & Remote Sensing, 2005, 60(1): 48-64.

    [13] Guo Y, Song H, Liu H, et al. Model-based restoration of underwater spectral images captured with narrowband filters [J]. Optics Express, 2016, 24(12): 13101.

    [14] Ahlen J. Colour correction of underwater images using spectral data[D]. Uppsala: Acta Universitatis Upsaliensis, 2005.

    [15] Munsell A H. A Color Notation[M]. Baltimore: Munsell Color Company Inc., 1905.

    Yang Ping, Guo Yilu, Wei He, Song Dan, Song Hong, Zhang Yunfei, Shentu Yichun, Liu Hongbo, Huang Hui, Zhang Xiandou, Fang Meifen. Method for spectral restoration of underwater images:theory and application[J]. Infrared and Laser Engineering, 2017, 46(3): 323001
    Download Citation