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Hyperspectral Remote Sensing of Agriculture


Affiliations
1 Indian Agricultural Research Institute, New Delhi 110 012, India
2 Mahalanobis National Crop Forecast Centre, Pusa Campus, New Delhi 110 012, India
3 Space Applications Centre, ISRO, Ahmedabad 380 015, India
 

Remote sensing is being increasingly used in different agricultural applications. Hyperspectral remote sensing in large continuous narrow wavebands provides significant advancement in understanding the subtle changes in biochemical and biophysical attributes of the crop plants and their different physiological processes, which otherwise are indistinct in multispectral remote sensing. This article describes spectral properties of vegetation both in the optical and thermal range of the electromagnetic spectrum as affected by its attributes. Different methods have been discussed to reduce data dimension and minimize the information redundancy. Potential applications of hyperspectral remote sensing in agriculture, i.e. spectral discrimination of crops and their genotypes, quantitative estimation of different biophysical and biochemical parameters through empirical and physical modelling, assessing abiotic and biotic stresses as developed by different researchers in India and abroad are described.

Keywords

Agriculture, Biotic And Abiotic Stress, Hyperspectral Remote Sensing, Spectral Reflectance.
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  • Hyperspectral Remote Sensing of Agriculture

Abstract Views: 467  |  PDF Views: 176

Authors

R. N. Sahoo
Indian Agricultural Research Institute, New Delhi 110 012, India
S. S. Ray
Mahalanobis National Crop Forecast Centre, Pusa Campus, New Delhi 110 012, India
K. R. Manjunath
Space Applications Centre, ISRO, Ahmedabad 380 015, India

Abstract


Remote sensing is being increasingly used in different agricultural applications. Hyperspectral remote sensing in large continuous narrow wavebands provides significant advancement in understanding the subtle changes in biochemical and biophysical attributes of the crop plants and their different physiological processes, which otherwise are indistinct in multispectral remote sensing. This article describes spectral properties of vegetation both in the optical and thermal range of the electromagnetic spectrum as affected by its attributes. Different methods have been discussed to reduce data dimension and minimize the information redundancy. Potential applications of hyperspectral remote sensing in agriculture, i.e. spectral discrimination of crops and their genotypes, quantitative estimation of different biophysical and biochemical parameters through empirical and physical modelling, assessing abiotic and biotic stresses as developed by different researchers in India and abroad are described.

Keywords


Agriculture, Biotic And Abiotic Stress, Hyperspectral Remote Sensing, Spectral Reflectance.



DOI: https://doi.org/10.18520/cs%2Fv108%2Fi5%2F848-859