Scientific Data (Jun 2023)

Full-band, multi-angle, multi-scale, and temporal dynamic field spectral measurements in China

  • Jianguang Wen,
  • Xiaodan Wu,
  • Qing Xiao,
  • Qinhuo Liu,
  • Mingguo Ma,
  • Xingming Zheng,
  • Yonghua Qu,
  • Rui Jin,
  • DongQin You,
  • Yong Tang,
  • Xingwen Lin,
  • Wenpin Yu,
  • Baochang Gong,
  • Jian Yang,
  • Yuan Han

DOI
https://doi.org/10.1038/s41597-023-02265-1
Journal volume & issue
Vol. 10, no. 1
pp. 1 – 17

Abstract

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Abstract Field-measured spectra are critical for remote sensing physical modelling, retrieval of structural, biophysical, and biochemical parameters, and other practical applications. We present a library of field spectra, which includes (1) portable field spectroradiometer measurements of vegetation, soil, and snow in the full-wave band, (2) multi-angle spectra measurements of desert vegetation, chernozems, and snow with consideration of the anisotropic reflectance of land surface, (3) multi-scale spectra measurements of leaf and canopy of different vegetation cover surfaces, and (4) continuous reflectance spectra time-series data revealing vegetation growth dynamics of maize, rice, wheat, rape, grassland, and so on. To the best of our knowledge, this library is unique in simultaneously providing full-band, multi-angle, multi-scale spectral measurements of the main surface elements of China covering a large spatial extent over a 10-year period. Furthermore, the 101 by 101 satellite pixels of Landsat ETM/OLI and MODIS surface reflectance centered around the field site were extracted, providing a vital linkage between ground measurements and satellite observations. The code language used for this work is Matlab 2016a.