Gordon HR, Morel A. Remote assessment of ocean color for interpretation of satellite visible imagery: a review. New York: Springer Verlag, 1983: 1-114.
[2]
Dekker AG, Brando VE, Anstee JM et al. Imaging Spectrometry of Water. In: van der Meer FD, De Jong SM eds. Imaging Spectrometry: Basic Principles and Pros.
[3]
Dekker AG.. Detection of optical water quality parameters for eutrophic waters by high resolution remote sensing[Ph.D Thesis]. Amsterdam, Netherlands: Vrije University, 1993: 1-240.
Lee Z, Carder KL, Peacock G et al. Method to derive ocean absorption coefficients from remote-sensing reflectance. Applied Optics, 1996, 35: 453-462.
[6]
Mueller JL, et al. Ocean optics protocols for satellite ocean color sensor validation, Revision 4, Volume III: radiometric measurements and data analysis protocols. National Aeronautical and Space Administration Report 21621, 2003: 1-72.
Lee Z, Carder KL, Mobley CD et al. Hyperspectral remote sensing for shallow waters: 2. Deriving bottom depths and water properties by optimization. Applied Optics, 1999, 38: 3831-3843.
[9]
Gons HJ. Optical teledetection of chlorophyll a in turbid inland water. Enviroment Science & Technology, 1999, 33(7): 1127-1132.
[10]
Zhang B, Li JS, Shen Q et al. A bio-optical model based method of estimating total suspended matter of Lake Taihu from near-infrared remote sensing reflectance. Environmental Monitoring and Assessment, 2008, 145: 339-347.
Gordon HR. Atmospheric Correction of Ocean Color Imagery in the Earth Observing System Era. Journal of Geophysical Research, 1997, 102(14): 17081-17106.
Pegau S, Zaneveld JRV, Mitchell BG. ‘Ocean Optics Protocols for Satellite Ocean Color Sensor Validation, Revision 4, Volume IV: Inherent Optical Properties: Instruments, Characterizations, Field Measurements and Data Analysis Protocols\', NASA Tech. Memo, 2003-211621, Rev. 4, Vol. IV, Greenbelt: NASA Goddard Space Flight Center.
Kutser T, Herlevi A, Kallio K et al. A hyperspectral model for interpretation of passive optical remote sensing data from turbid lakes. The Science of the Total Environment, 2001, 268: 47-58.
[19]
Forget P, Ouillon S, Lahet F et al. Inversion of reflectance spectra of nonchlorophyllous turbid coastal waters. Remote Sensing of Environment, 1999, 68: 261-272.
[20]
IOCCG. Remote sensing of ocean colour in coastal and other optically-complex waters. In: Sathyendranath S ed. Reports of the International Ocean Colour Coordinating Group No. 3. IOCCG, Dartmouth, Canada, 2000: 47-73.
[21]
Carder KL, Chen FR, Lee Z et al. Semianalytic Moderate-Resolution Imaging Spectrometer algorithms for chlorophyll a and absorption with bio-optical domains based on nitrate-depletion temperatures. Journal of Geophysical Research, 1999, 104(3): 5403-5421.
[22]
Mueller JL, et al. Ocean optics protocols for satellite ocean color sensor validation, Revision 4, Volume IV: inherent optical properties: instruments, characterizations, field measurements and data analysis protocols, National Aeronautical and Space Administration Report 21621, 2003: 1-74.
Zhang YL, Zhang B, Wang X et al. A study of absorption characteristics of chromophoric dissolved organic matter and particles in Lake Taihu, China. Hydrobiologia, 2007, 592: 105-120.
[25]
Walker RE. Marine Light Field Statistics. Wiley series in pure and applied optics. New York: Wiley, 1994: 1-675.
[26]
Morel A, Gentili B. Diffuse Reflectance of Oceanic Waters, II: Bi-directional Aspects. Applied Optics, 1993, 32: 6864-6879.
Evans RH, Gordon HR. Coastal zone color scanner system calibration: a retrospective examination. Journal of Geophysical Research, 1994, 99(C4): 7293-7307.
[29]
Garcia JC, Moreno J. Removal of Noises in CHRIS/PROBA images: application to the SPARC campaign data. Proc. of the 2nd CHRIS/Proba Workshop, 2004.