Scinovex
articleTop 1% cited

NDVI-derived land cover classifications at a global scale

International Journal of Remote Sensing · 1994 · Vol. 15(17) · pp. 3567–3586
Ruth DeFriesJ. R. Townshend

Abstract

Abstract Phenological differences among vegetation types, reflected in temporal variations in the Normalized Difference Vegetation Index (NDVI) derived from satellite data, have been used to classify land cover at continental scales. Extending this technique to global scales raises several issues: identifying land cover types that are spectrally distinct and applicable at the global scale; accounting for phasing of seasons in different parts of the world; validating results in the absence of reliable information on global land cover; and acquiring high quality global data sets of satellite sensor data for input to land cover classifications. For this study, a coarse spatial resolution (one by one degree) data set of monthly NDVI values for 1987 was used to explore these methodological issues. A result of a supervised, maximum likelihood classification of eleven cover types is presented to illustrate the feasibility of using satellite sensor data to increase the accuracy of global land cover information, although the result has not been validated systematically. Satellite sensor data at finer spatial resolutions that include other bands in addition to NDVI, as well as methodologies to better identify and describe gradients between cover types, could increase the accuracy of results of global land cover data sets derived from satellite sensor data.

Remote Sensing in AgricultureLand Use and Ecosystem ServicesSpecies Distribution and Climate ChangeLand coverNormalized Difference Vegetation IndexRemote sensingScale (ratio)SatelliteData setEnvironmental scienceVegetation (pathology)Land useComputer science

Funding

  • National Aeronautics and Space Administration
Citations
1,070
FWCI
19.19
field-weighted impact
References
29
Percentile
100%
vs. same field & year
Citations per year
Cited by
Sources and distributions of dust aerosols simulated with the GOCART model
Journal of Geophysical Research Atmospheres · 2001 · 2,356 citations
Global land cover mapping from MODIS: algorithms and early results
Remote Sensing of Environment · 2002 · 2,742 citations
Decision tree classification of land cover from remotely sensed data
Remote Sensing of Environment · 1997 · 1,526 citations
Status of land cover classification accuracy assessment
Remote Sensing of Environment · 2002 · 4,379 citations
Land cover mapping of large areas from satellites: Status and research priorities
International Journal of Remote Sensing · 2000 · 640 citations
References
A Simple Biosphere Model (SIB) for Use within General Circulation Models
Journal of the Atmospheric Sciences · 1986 · 2,171 citations
Canopy reflectance, photosynthesis and transpiration
International Journal of Remote Sensing · 1985 · 2,309 citations
International Journal of Remote Sensing
International Journal of Remote Sensing · 2011 · 1,002 citations
Related articles
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

NDVI-derived land cover classifications at a global scale · Scinovex