DocumentCode
1444177
Title
Development of a technique to assess snow-cover mapping errors from space
Author
Hall, Dorothy K. ; Foster, James L. ; Salomonson, Vincent V. ; Klein, Andrew G. ; Chien, J.Y.L.
Author_Institution
NASA Goddard Space Flight Center, Greenbelt, MD, USA
Volume
39
Issue
2
fYear
2001
fDate
2/1/2001 12:00:00 AM
Firstpage
432
Lastpage
438
Abstract
Following the December 18, 1999, launch of the Earth Observing System (EOS) Terra satellite, daily snow-cover mapping is performed automatically at a spatial resolution of 500 m, cloud-cover permitting, using moderate resolution imaging spectroradiometer (MODIS) data. This paper describes a technique for calculating global-scale snow mapping errors and provides estimates of Northern Hemisphere snow mapping errors based on prototype MODIS snow mapping algorithms. Field studies demonstrate that under cloud-free conditions, when snow cover is complete, snow mapping errors are small (<1%) in all land covers studied except forests, where errors are often greater and more variable. Thus, the accuracy of Northern Hemisphere snow-cover maps is largely determined by percent of forest cover north of the snowline. From the 17-class International Geosphere-Biosphere Program (IGBP) land-cover maps of North America and Eurasia, the authors classify the Northern Hemisphere into seven land-cover classes and water. Estimated snow mapping errors in each of the land-cover classes are extrapolated to the entire Northern Hemisphere for areas north of the average continental snowline for each month. The resulting average monthly errors are expected to vary, ranging from about 5-10%, with the larger errors occurring during the months when snow covers the boreal forest in the Northern Hemisphere. As determined using prototype MODIS data, the annual average estimated error of the future Northern Hemisphere snow-cover maps is approximately 8% in the absence of cloud cover, assuming complete snow cover. Preliminary error estimates will be refined after MODIS data have been available for about one year
Keywords
hydrological techniques; remote sensing; snow; terrain mapping; 400 to 14000 nm; EOS; Earth Observing System; IR imaging; MODIS; Terra satellite; algorithm; hydrology; infrared imaging; land surface; mapping error; measurement technique; moderate resolution imaging spectroradiometer; optical imaging; satellite remote sensing; snow cover; snowcover; snowpack; terrain mapping; visible; Atmospheric modeling; Clouds; Earth Observing System; MODIS; NASA; North America; Prototypes; Satellite broadcasting; Snow; Spatial resolution;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.905251
Filename
905251
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