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Original Articles

Evaluation of four MERIS atmospheric correction algorithms in Lake Kasumigaura, Japan

, , &
Pages 8967-8985 | Received 14 Jan 2013, Accepted 30 Sep 2013, Published online: 18 Nov 2013

References

  • Aschbacher, J., and M. P. M. Pérez. 2012. “The European Earth Monitoring (GMES) Programme: Status and Perspectives.” Remote Sensing of Environment 120: 3–8. doi:10.1016/j.rse.2011.08.028.
  • Ayres, W. S., A. Busia, A. Dinar, R. Hirji, S. F. Lintner, A. F. McCalla, and R. Robelus. 1996. Integrated Lake and Reservoir Management: World Bank Approach and Experience. Washington, DC: World Bank.
  • Bailey, S. W., B. A. Franz, and P. J. Werdell. 2010. “Estimation of Near-Infrared Water-Leaving Reflectance for Satellite Ocean Color Data Processing.” Optics Express 18: 7521–7527. doi:10.1364/OE.18.007521.
  • CGER. 2010. Lake Kasumigaura Database. National Institute for Environmental Studies, Japan. Accessed August 1, 2012. http://db.cger.nies.go.jp/gem/moni-e/inter/GEMS/database/kasumi/index.html.
  • Doerffer, R., and H. Schiller. 2007. “The MERIS Case 2 Water Algorithm.” International Journal of Remote Sensing 28: 517–535. doi:10.1080/01431160600821127.
  • Doerffer, R., and H. Schiller. 2008. MERIS Regional Coastal and Lake Case 2 Water Project – Atmospheric Correction ATBD, GKSS Research Center 21502, Version 1.0, Geesthacht.
  • Doron, M., S. Bélanger, D. Doxaran, and M. Babin. 2011. “Spectral Variations in the Near-Infrared Ocean Reflectance.” Remote Sensing of Environment 115: 1617–1631. doi:10.1016/j.rse.2011.01.015.
  • Duan, H., R. Ma, S. G. H. Simis, and Y. Zhang. 2012. “Validation of MERIS Case-2 Water Products in Lake Taihu, China.” GIScience & Remote Sensing 49: 873–894. doi:10.2747/1548–1603.49.6.873.
  • Fukushima, T., J. Park, A. Imai, and K. Matsushige. 1996. “Dissolved Organic Carbon in a Eutrophic Lake; Dynamics, Biodegradability and Origin.” Aquatic Sciences 58: 139–157. doi:10.1007/BF00877112.
  • Giardino, C., M. Pepe, P. A. Brivio, P. Ghezzi, and E. Zilioli. 2001. “Detecting Chlorophyll, Secchi Disk Depth and Surface Temperature in a Sub-Alpine Lake Using Landsat Imagery.” Science of the Total Environment 268: 19–29. doi:10.1016/S0048–9697(00)00692–6.
  • Gitelson, A. A. 1992. “The Peak Near 700 Nm on Reflectance Spectra of Algae and Water: Relationships of Its Magnitude and Position with Chl. Concentration.” International Journal of Remote Sensing 13: 3367–3373.
  • Gitelson, A. A., G. Dall’Olmo, W. J. Moses, D. C. Rundquist, T. Barrow, T. R. Fisher, D. Gurlin, and J. Holz. 2008. “A Simple Semi-Analytical Model for Remote Estimation of Chlorophyll-a in Turbid Waters: Validation.” Remote Sensing of Environment 112: 3582–3593. doi:10.1016/j.rse.2008.04.015.
  • Gordon, H. R., and M. Wang. 1994. “Retrieval of Water-Leaving Radiance and Aerosol Optical Thickness over the Oceans with SeaWiFS: A Preliminary Algorithm.” Applied Optics 33: 443–452. doi:10.1364/AO.33.000443.
  • Guanter, L., M. Del Carmen González-Sanpedro, and J. Moreno. 2007. “A Method for the Atmospheric Correction of ENVISAT/MERIS Data Over Land Targets.” International Journal of Remote Sensing 28: 709–728. doi:10.1080/01431160600815525.
  • Guanter, L., A. Ruiz-Verdú, D. Odermatt, C. Giardino, S. Simis, V. Estellés, T. Heege, J. A. Dominguez-Gómez, and J. Moreno. 2010. “Atmospheric Correction of ENVISAT/MERIS Data over Inland Waters: Validation for European Lakes.” Remote Sensing of Environment 114: 467–480. doi:10.1016/j.rse.2009.10.004.
  • Han, L., and K. J. Jordan. 2005. “Estimating and Mapping Chlorophyll-a Concentration in Pensacola Bay, Florida, Using Landsat ETM+ Data.” International Journal of Remote Sensing 26: 5245–5254. doi:10.1080/01431160500219182.
  • Hu, C., K. L. Carder, and F. E. Muller-karger. 2000. “Atmospheric Correction of SeaWiFS Imagery Over Turbid Coastal Waters: A Practical Method.” Remote Sensing of Environment 74: 195–206. doi:10.1016/S0034–4257(00)00080–8.
  • IOCCG. 2010. Reports of the International Ocean-Colour Coordinating Group No. 10: Atmospheric Correction for Remotely-Sensed Ocean-Colour Products, edited by Wang, Menghua. Dartmouth: IOCCG.
  • Jamet, C., H. Loisel, C. P. Kuchinke, K. G. Ruddick, G. Zibordi, and H. Feng. 2011. “Comparison of Three SeaWiFS Atmospheric Correction Algorithms for Turbid Waters Using AERONET-OC Measurements.” Remote Sensing of Environment 115: 1955–1965. doi:10.1016/j.rse.2011.03.018.
  • Kuchinke, C. P., H. R. Gordon, and B. A. Franz. 2009. “Spectral Optimization for Constituent Retrieval in Case 2 Waters I: Implementation and Performance.” Remote Sensing of Environment 113: 571–587. doi:10.1016/j.rse.2008.11.001.
  • Kuchinke, C. P., H. R. Gordon, L. W. Harding Jr, and K. J. Voss. 2009. “Spectral Optimization for Constituent Retrieval in Case 2 Waters II: Validation Study in the Chesapeake Bay.” Remote Sensing of Environment 113: 610–621. doi:10.1016/j.rse.2008.11.002.
  • Liu, Y., Md. A. Islam, and J. Gao. 2003. “Quantification of Shallow Water Quality Parameters by Means of Remote Sensing.” Progress in Physical Geography 27: 24–43. doi:10.1191/0309133303pp357ra.
  • Mobley, C. D. 1999. “Estimation of the Remote-Sensing Reflectance from Above-Surface Measurements.” Applied Optics 38: 7442–7455. doi:10.1364/AO.38.007442.
  • Moses, W. J., A. A. Gitelson, S. Berdnikov, and V. Povazhnyy. 2009. “Estimation of Chlorophyll-a Concentration in Case II Waters Using MODIS and MERIS Data–Successes and Challenges.” Environmental Research Letters 4: 045005. doi:10.1088/1748–9326/4/4/045005.
  • O’Reilly, J. E., S. Maritorena, B. G. Mitchell, D. A. Siegel, K. L. Carder, S. A. Garver, M. Kahru, and C. McClain. 1998. “Ocean-Color Chlorophyll Algorithms for SeaWiFS.” Journal of Geophysical Research 103 (C11): 24937–24953. doi:10.1029/98JC02160.
  • Oyama, Y., B. Matsushita, T. Fukushima, K. Matsushige, and A. Imai. 2009. “Application of Spectral Decomposition Algorithm for Mapping Water Quality in a Turbid Lake (Lake Kasumigaura, Japan) from Landsat TM Data.” ISPRS Journal of Photogrammetry and Remote Sensing 64: 73–85. doi:10.1016/j.isprsjprs.2008.04.005.
  • Ramon, D., and R. Santer. 2005. “Aerosol over Land with MERIS, Present and Future.” In Proceedings of the MERIS and AATSR Workshop 2005, ESA SP-597, ESRIN, Frascati, September 26–30.
  • Ruddick, K. G., V. De. Cauwer, Y.-Je. Park, and G. Moore. 2006. “Seaborne Measurements of Near Infrared Water-Leaving Reflectance: The Similarity Spectrum for Turbid Waters.” Limnology and Oceanography 51: 1167–1179. doi:10.4319/lo.2006.51.2.1167.
  • Ruddick, K. G., F. Ovidio, and M. Rijkeboer. 2000. “Atmospheric Correction of SeaWiFS Imagery for Turbid Coastal and Inland Waters.” Applied Optics 39: 897–912. doi:10.1364/AO.39.000897
  • Santer, R., J. Vidot, and O. Aznay. 2005. “Standard Aerosol Model Families Used for Atmospheric Correction: How Comparable Are They? How Valid Are They?” In Proceedings of the MERIS and AATSRWorkshop 2005, ESA SP-597, ESRIN, Frascati, September 26–30.
  • Schroeder, T. H., I. Behnert, M. Schaale, J. Fischer, and R. Doerffer. 2007. “Atmospheric Correction Algorithm for MERIS Above Case-2 Waters.” International Journal of Remote Sensing 28: 1469–1486. doi:10.1080/01431160600962574.
  • Schroeder, T. H., M. Schaale, and J. Fischer. 2007. “Retrieval of Atmospheric and Oceanic Properties from MERIS Measurements: A New Case-2 Water Processor for BEAM.” International Journal of Remote Sensing 28: 5627–5632. doi:10.1080/01431160701601774.
  • SCOR-UNESCO. 1966. “Determination of Photosynthetic Pigment in Seawater.” In Monographs on Oceanographic Methodology, Vol. 1., 11–18. Paris: SCOR-UNESCO.
  • Shi, W., and M. Wang. 2007. “Detection of Turbid Waters and Absorbing Aerosols for the MODIS Ocean Color Data Processing.” Remote Sensing of Environment 110: 149–161. doi:10.1016/j.rse.2007.02.013.
  • Shi, W., and M. Wang. 2009. “An Assessment of the Black Ocean Pixel Assumption for MODIS SWIR Bands.” Remote Sensing of Environment 113: 1587–1597. doi:10.1016/j.rse.2009.03.011.
  • Stumpf, R. P., R. A. Arnone, R. W. Gould, P. M. Martinolich, and V. Ransibrahmanakul. 2003. “A Partly Coupled Ocean-Atmosphere Model for Retrieval of Water-Leaving Radiance From SeaWiFS in Coastal Waters.” In SeaWiFS Postlaunch Technical Report Series, NASA Technical Memorandum 2003–206892, Vol. 22, edited by S. B. Hooker and E. R. Firestone, 51–59. Greenbelt, MD: NASA Goddard Space Flight Center.
  • Wang, M., and W. Shi. 2007. “The NIR-SWIR Combined Atmospheric Correction Approach for MODIS Ocean Color Data Processing.” Optics Express 15: 15722. doi:10.1364/OE.15.015722.
  • Wang, M., W. Shi, and L. Jiang. 2012. “Atmospheric Correction Using Near-Infrared Bands for Satellite Ocean Color Data Processing in the Turbid Western Pacific Region.” Optics Express 20: 741–753. doi:10.1364/OE.20.000741.
  • Wang, M., W. Shi, and J. Tang. 2011. “Water Property Monitoring and Assessment for China’s Inland Lake Taihu from MODIS-Aqua Measurements.” Remote Sensing of Environment 115: 841–854. doi:10.1016/j.rse.2010.11.012.
  • Wang, M., S. Son, and W. Shi. 2009. “Evaluation of MODIS SWIR and NIR-SWIR Atmospheric Correction Algorithms Using SeaBASS Data.” Remote Sensing of Environment 113: 635–644. doi:10.1016/j.rse.2008.11.005.
  • Yang, W., B. Matsushita, J. Chen, K. Yoshimura, and T. Fukushima. 2013. “Retrieval of Inherent Optical Properties for Turbid Inland Waters from Remote-Sensing Reflectance.” IEEE Transactions on Geoscience and Remote Sensing 51: 3761–3773. doi:10.1109/TGRS.2012.2220147.
  • Yoshimura, K., N. Zaitsu, Y. Sekimura, B. Matsushita, T. Fukushima, and A. Imai. 2012. “Parameterization of Chlorophyll A-Specific Absorption Coefficients and Effects of Their Variations in a Highly Eutrophic Lake: A Case Study at Lake Kasumigaura, Japan.” Hydrobiologia 691: 157–169. doi:10.1007/s10750-012-1066-4.

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