Novel algorithms for remote estimation of vegetation fraction
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Summary
Using only the visible range of the spectrum to quantitatively estimate VF is proposed, which is linearly proportional to wheat VF ranging from 0% to 100%.
- Type
- article
- Published
- 2002-04-01
- Cited by
- 1,988
- References
- 45
- OpenAlex
- https://openalex.org/W2166516660
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11083202
Keywords
Red edge, Near-infrared spectroscopy, Vegetation (pathology), Remote sensing, Canopy
References
- Monitoring vegetation systems in the great plains with ERTS
- A soil-adjusted vegetation index (SAVI)
- Characteristics of maximum-value composite images from temporal AVHRR data
- Spectral reflectance changes associated with autumn senescence of Aesculus hippocastanum L. and Acer platanoides L. leaves. Spectral features and relation to chlorophyll estimation
- Spectral response of a plant canopy with different soil backgrounds
- Relationships between percent vegetation cover and vegetation indices
- About the soil line concept in remote sensing
- Effects of management practices on reflectance of spring wheat canopies.
- Use of a green channel in remote sensing of global vegetation from EOS- MODIS
- Seasonal Changes in Reflectance of Two Wheat Cultivars1
- The MERIS Global Vegetation Index (MGVI): Description and preliminary application
- Remote Sensing of Total Dry-Matter Accumulation in Winter Wheat
- Canopy reflectance, photosynthesis, and transpiration. II. the role of biophysics in the linearity of their interdependence
- Increased plant growth in the northern high latitudes from 1981 to 1991
- Vegetation canopy reflectance
- Bidirectional Calibration Results for 11 Spectralon and 16 BaSO4 Reference Reflectance Panels
- Interaction of Light with a Plant Canopy
- Spectral response of architecturally different wheat canopies
- Signature Analysis of Leaf Reflectance Spectra: Algorithm Development for Remote Sensing of Chlorophyll
- Estimating Absorbed Photosynthetic Radiation and Leaf Area Index from Spectral Reflectance in Wheat1
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- Wide Dynamic Range Vegetation Index for remote quantification of biophysical characteristics of vegetation.
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- Evaluación de las consecuencias del fuego en quemas controladas mediante radiometría de campo
- NON-DESTRUCTIVE AND REMOTE SENSING TECHNIQUES FOR ESTIMATION OF VEGETATION STATUS
- ANALYSES OF HIGH RESOLUTION HYPERSPECTRAL IMAGERY FOR CHARACTERIZATION OF PONDEROSA PINE WOODLANDS
- Suivi des changements d'occupation et d'utilisation des sols d'origine anthropique et climatique à l'échelle régionale par télédétection moyenne résolution (application à la Bretagne)
- Detection of greenbug infestation on wheat using ground-based radiometry
- Proximal Sensing as a Means of Characterizing Phragmites australis
- DETECTION OF ORANGE COLOR USING IMAGING ANALYSIS
- Imagery from unmanned aerial vehicles for early site specific weed management
- Los índices de vegetación como indicadores del riesgo de incendio con imágenes del sensor TERRA-MODIS
- Exploitation de séries temporelles d'images satellites à haute résolution spatiale pour le suivi des prairies en milieu agricole
- Phenology: An Integrative Environmental Science
- Computer Simulation Model of Fractional Vegetation Cover and Its Pa-rameters Sensitivity: Computer Simulation Model of Fractional Vegetation Cover and Its Pa-rameters Sensitivity
- Classification of Tree Species in Overstorey Canopy of Subtropical Forest Using QuickBird Images
- The combined use of vegetation indices and stable isotopes to predict durum wheat grain yield under contrasting water conditions
- Estimation de la biomasse de canne par modélisation et télédétection. Application à la Réunion
- Etude de la structure et de la dynamique des herbiers de Zostera noltii par télédétection multi et hyperspectrale
- Mapping spatial variability of crop growth conditions using RapidEye data in Northern Ontario, Canada
- Comparison of several vegetation indices calculated on the basis of a seasonal SPOT XS time series, and their suitability for land cover and agricultural crop identification
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