Title of article :
Reducing background effects in orchards through spectral vegetation index correction
Author/Authors :
Van Beek، نويسنده , , Jonathan and Tits، نويسنده , , Laurent and Somers، نويسنده , , Ben and Deckers، نويسنده , , Tom and Janssens، نويسنده , , Pieter and Coppin، نويسنده , , Pol، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2015
Pages :
11
From page :
167
To page :
177
Abstract :
Satellite remote sensing provides an alternative to time-consuming and labor intensive in situ measurements of biophysical variables in agricultural crops required for precision agriculture applications. In orchards, however, the spatial resolution causes mixtures of canopies and background (i.e. soil, grass and shadow), hampering the estimation of these biophysical variables. Furthermore, variable background mixtures obstruct meaningful comparisons between different orchard blocks, rows or within each row. Current correction methodologies use spectral differences between canopies and background, but struggle with a vegetated orchard floor. This background influence and the lack of a generic solution are addressed in this study. y, the problem was demonstrated in a controlled environment for vegetation indices sensitive to chlorophyll content, water content and leaf area index. Afterwards, traditional background correction methods (i.e. soil-adjusted vegetation indices and signal unmixing) were compared to the proposed vegetation index correction. This correction was based on the mixing degree of each pixel (i.e. tree cover fraction) to rescale the vegetation indices accordingly and was applied to synthetic and WorldView-2 satellite imagery. Through the correction, the effect of background admixture for vegetation indices was reduced, and the estimation of biophysical variables was improved (ΔR2 = 0.2–0.31).
Keywords :
Mixture problem , orchards , Biophysical variables , Canopy cover fraction , Vegetation indices , Signal unmixing
Journal title :
International Journal of Applied Earth Observation and Geoinformation
Serial Year :
2015
Journal title :
International Journal of Applied Earth Observation and Geoinformation
Record number :
2379770
Link To Document :
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