Maritorena S, Siegel DA, Peterson AR. Optimization of a semianalytical ocean color model for global-scale applications. Applied Optics, 2002, 41(15): 2705-2714.
[3]
Schiller H, Doerffer R. Neural Network for Emulation of an Inverse Model-Operational Derivation of Case II Water Properties from MERIS data. Int Journal of Remote Sensing, 1999, 20(9): 1735-1746.
[4]
Chami M, Robilliard D. Inversion of oceanic constituents in Case I and II waters with genetic programming algorithms. Applied Optics, 2002, 41(30): 6260-6275.
Ma R, Tang J, Dai J et al. Absorption and scattering properties of water body in Lake Taihu, China: absorption. Inter Journal of Remote Sensing, 2006, 27(19): 4277-4304.
[7]
Gitelson AA. Algorithms for remote sensing of phytoplankton pigments in inland waters. Adv Space Res, 1993, 13: 197-201.
Brown OB, Jacobs MM. Computed Relationships between the Inherent and Apparent Optical Properties of a Flat Homogenous Ocean. Applied Optics, 1975, 14(2): 417-427
Neumann A, Krawczyk H, Walzel T. A complex approach to quantitative interpretation of spectral high resolution imagery. Third Thematic Conference on Remote Sensing for Marine and Coastal Environments, Seattle, USA, 1995: II-641-II-652.
Phinn SR, Dekker AG, Brando VE et al. Mapping water quality and substrate cover in optically complex coastal and reef waters: an integrated approach. Marine Pollution Bulletin, 2005, 51: 459-469.
[14]
Mueller JL, Austin RW eds. Ocean optics protocols for SeaWiFS validation. NASA Technical Memorandum 104566. Greenbelt, MD, NASA Goddard Space Flight Center, 1995.
Gower JFR. Observation of in Situ Fluorescence of Chlorophyll-a in Saanicb lnlet. Boundary-Layer, 1980, 18: 235-245.
[17]
Gitelson A. The peak near 700nm on radiance spectra of algae and water: relationships of its magnitude and position with chlorophyll concentration. Inter Journal of Remote Sensing, 1992, 13(17): 3367-3373.