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Characteristics of maximum-value composite images from temporal AVHRR data

International Journal of Remote Sensing · 1986 · Vol. 7(11) · pp. 1417–1434
B. N. Holben

Abstract

Abstract Red and near-infrared satellite data from the Advanced Very High Resolution Radiometer sensor have been processed over several days and combined to produce spatially continuous cloud-free imagery over large areas with sufficient temporal resolution to study green-vegetation dynamics. The technique minimizes cloud contamination, reduces directional reflectance and off-nadir viewing effects, minimizes sun-angle and shadow effects, and minimizes aerosol and water-vapour effects. The improvement is highly dependent on the state of the atmosphere, surface-cover type, and the viewing and illumination geometry of the sun, target and sensor. An example from southern Africa showed an increase of 40 per cent from individual image values to the final composite image. Limitations' associated with the technique are discussed, and recommendations are given to improve this approach

Remote Sensing in AgricultureAdvanced Image Fusion TechniquesRemote-Sensing Image ClassificationRemote sensingNadirEnvironmental scienceAdvanced very-high-resolution radiometerShadow (psychology)RadiometryCloud coverRadiometerSatelliteImage resolution

Funding

  • University of Wisconsin-Milwaukee
Citations
2,991
FWCI
20.67
field-weighted impact
References
24
Percentile
100%
vs. same field & year
Citations per year
References
Analysis of the dynamics of African vegetation using the normalized difference vegetation index
International Journal of Remote Sensing · 1986 · 539 citations
Analysis of the phenology of global vegetation using meteorological satellite data
International Journal of Remote Sensing · 1985 · 1,109 citations
Canopy reflectance, photosynthesis and transpiration
International Journal of Remote Sensing · 1985 · 2,309 citations
Spectral Properties of Plants
Applied Optics · 1965 · 1,408 citations
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