Sky reflectance Rsky(l) is used to correct in situ reflectance measurements in the remote detection of water colour. We analysed the directional and spectral variability in Rsky(l) due to adjacency effects against an atmospheric radiance model. The analysis is based on one year of semi-continuous Rsky(l) observations that were recorded in two azimuth directions. Adjacency effects contributed to Rsky(l) dependent on season and viewing angle, and predominantly in the near-infrared (NIR). For our test area, adjacency effects spectrally resembled a generic vegetation spectrum. The adjacency effect was weakly dependent on the magnitude of Rayleigh- and aerosol-scattered radiance. Reflectance differed between viewing directions 5.4 +/- 6.3% ...
© 2019 by the authors. This paper reviews the state of the art of protocols for measurement of water...
For remote sensing of water constituents it is very important to correct specular reflections at the...
Coastal ecosystem studies using remote visible/infrared spectroscopy typically invert an atmospheric...
Sky reflectance Rsky(l) is used to correct in situ reflectance measurements in the remote detection ...
A three-component reflectance model (3C) is applied to above-water radiometric measurements to deriv...
Un-supervised hyperspectral remote-sensing reflectance data (<15 km from the shore) were collecte...
Atmospheric correction (AC) is the basis for quantitative water remote sensing, and adjacency effect...
AbstractHyperspectral remote-sensing reflectance (Rrs) from above-surface (ir)radiance measurements ...
In situ hyperspectral remote-sensing reflectance (Rrs(λ)) is used to derive water quality products a...
Abstract. A large database of in SiLU bio-optical measurements were collected at the LEO-IS (Long-tc...
A comparison is made between remote sensing data measured over water at altitudes ranging from 30 m ...
With its high spatial resolution, and suitable spectral bands, Sentinel-2 data can support the imple...
Remote sensing reflectance (Rrs), which is defined as the ratio of water-leaving radiance (Lw) to do...
The effective sea-surface skylight reflectance (ρ) is an important parameter for removing the contri...
Satellite measurements of coastal or inland waters near land/water interfaces suffer from land adjac...
© 2019 by the authors. This paper reviews the state of the art of protocols for measurement of water...
For remote sensing of water constituents it is very important to correct specular reflections at the...
Coastal ecosystem studies using remote visible/infrared spectroscopy typically invert an atmospheric...
Sky reflectance Rsky(l) is used to correct in situ reflectance measurements in the remote detection ...
A three-component reflectance model (3C) is applied to above-water radiometric measurements to deriv...
Un-supervised hyperspectral remote-sensing reflectance data (<15 km from the shore) were collecte...
Atmospheric correction (AC) is the basis for quantitative water remote sensing, and adjacency effect...
AbstractHyperspectral remote-sensing reflectance (Rrs) from above-surface (ir)radiance measurements ...
In situ hyperspectral remote-sensing reflectance (Rrs(λ)) is used to derive water quality products a...
Abstract. A large database of in SiLU bio-optical measurements were collected at the LEO-IS (Long-tc...
A comparison is made between remote sensing data measured over water at altitudes ranging from 30 m ...
With its high spatial resolution, and suitable spectral bands, Sentinel-2 data can support the imple...
Remote sensing reflectance (Rrs), which is defined as the ratio of water-leaving radiance (Lw) to do...
The effective sea-surface skylight reflectance (ρ) is an important parameter for removing the contri...
Satellite measurements of coastal or inland waters near land/water interfaces suffer from land adjac...
© 2019 by the authors. This paper reviews the state of the art of protocols for measurement of water...
For remote sensing of water constituents it is very important to correct specular reflections at the...
Coastal ecosystem studies using remote visible/infrared spectroscopy typically invert an atmospheric...