Firstly, the canopy reflectance is expressed as a function of a series of parameters, such as Lai / fAPAR, wavelength, soil and leaf reflectance, aggregation index, incidence and observation angle. For several key parameters, the parameter table is established as the input of inversion. Then input the surface reflectance data and land cover data after preprocessing, and use the LUT method to retrieve the fAPAR products. See the reference for detailed algorithm.
Image format: TIF
Image size: about 1m per scene
Time frame: 2012
Time resolution: month by month
Spatial resolution: 1km
. TIF format storage
1. Liu, Y. , Fan, W. , Xu, X. , & Chen, G. . (2013). A new FAPAR retrieval model for continuous vegetation. doi:10.1109/IGARSS.2013.6723470(View Details)
Cite as:Fan, W. (2015). < b>Monthly FAPAR production at 1 KM in Heihe Rivers Basin (2012)</b>2015. doi: 10.3972/heihe.088.2014.db. (Download the reference: RIS | Bibtex )
Using this data, the data citation is required to be referenced and the related literatures are suggested to be cited.
1.Liao, Y. , Fan, W. , & Xu, X. . (2013). Algorithm of leaf area index product for HJ-CCD over Heihe River Basin. IGARSS 2013 - 2013 IEEE International Geoscience and Remote Sensing Symposium. IEEE. (View Details )
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East:102.1548642 South:37.7401842 |
West:97.3520258 North:42.6893038 |
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