Enhanced Satellite Remote Sensing of Coastal Waters Using Spatially Improved Bio-Optical Products From SNPP-VIIRS
Document Type
Article
Publication Date
8-1-2015
Department
Marine Science
School
Ocean Science and Engineering
Abstract
The spatial dynamics of coastal and inland regions are highly variable and monitoring these waters with ocean color remote sensors requires increased spatial resolution capabilities. A procedure for the spatial enhancement of ocean color products, including chlorophyll and inherent optical properties (IOPs), is developed using a sharpened visible water-leaving radiance spectrum for the visible infrared imaging radiometer suite (VIIRS). A new approach for spectral sharpening is developed by utilizing the spatial covariance of the spectral bands for sharpening the M bands (412, 443, 486, 551, 671. nm; 750-m resolution) with the I-1 band (645. nm; 375-m resolution). The spectral shape remains consistent by the use of a dynamic, wavelength-specific spatial resolution ratio that is weighted as a function of the relationship between proximate I- and M-band variance at each pixel. A comparison of bio-optical satellite products at 375-m and 750-m spatial resolution with in situ measurements of water leaving radiance and bio-optical properties show an improved capability of the VIIRS 375-m products in turbid and optically complex waters, such as the Chesapeake Bay and Mississippi River Plume. We demonstrate that the increased spatial resolution improves the ability for VIIRS to characterize bio-optical properties in coastal waters.
Publication Title
Remote Sensing of Environment
Volume
165
First Page
53
Last Page
63
Recommended Citation
Vandermeulen, R.,
Arnone, R.,
Ladner, S.,
Martinolich, P.
(2015). Enhanced Satellite Remote Sensing of Coastal Waters Using Spatially Improved Bio-Optical Products From SNPP-VIIRS. Remote Sensing of Environment, 165, 53-63.
Available at: https://aquila.usm.edu/fac_pubs/18641