Quantitative modeling of inland water quality for high-resolution MSS systems

For a lake system in The Netherlands, Secchi disk transparency, seston dry weight, vertical attenuation coefficients, chlorophyll-a, and phaeopigments were determined. Inherent optical properties were estimated from measured apparent optical properties. Subsurface spectroradiometric measurements and...

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Veröffentlicht in:IEEE transactions on geoscience and remote sensing 1991-01, Vol.29 (1), p.89-95
Hauptverfasser: Dekker, A.G., Malthus, T.J., Seyhan, E.
Format: Artikel
Sprache:eng
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Zusammenfassung:For a lake system in The Netherlands, Secchi disk transparency, seston dry weight, vertical attenuation coefficients, chlorophyll-a, and phaeopigments were determined. Inherent optical properties were estimated from measured apparent optical properties. Subsurface spectroradiometric measurements and airborne (non)-imaging spectrometric measurements were performed. This made it possible to model the performance of high-resolution multispectral scanning systems. Results of multivariate statistical modeling of water quality parameters versus simulated spectral band ratios for a water quality spectral bandset of the programmable multispectral imager (PMI), also known as the fluorescence line imager (FLI), are presented.< >
ISSN:0196-2892
1558-0644
DOI:10.1109/36.103296