• DocumentCode
    3608896
  • Title

    Forest Above-Ground Biomass Estimation From Vertical Reflectivity Profiles at L-Band

  • Author

    Caicoya, Astor Torano ; Pardini, Matteo ; Hajnsek, Irena ; Papathanassiou, Konstantinos

  • Author_Institution
    Radar Concepts Dept., Microwaves & Radar Inst., Cologne, Germany
  • Volume
    12
  • Issue
    12
  • fYear
    2015
  • Firstpage
    2379
  • Lastpage
    2383
  • Abstract
    Forest height is an important parameter for the allometric estimation of above-ground forest biomass (AGB). However, variable forest stand densities limit the performance of the allometric estimation of AGB from height measurements alone. Recently, the use of vertical forest structure information as an indicator for the variation of stand density has been proposed and used to improve the allometric estimation of AGB from height measurements. In this letter, the use of vertical radar reflectivity profiles at L-band obtained from SAR tomography, as a proxy for vertical forest structure for the allometric estimation of AGB, is investigated. L-band reflectivity profiles, which are reconstructed from data at different polarizations (HH and HV) and acquired under “moist” and “dry” weather conditions, are investigated. The proposed allometric AGB estimator increases the correlation factor from 0.60 to 0.81 and reduces the root-mean-square error from 50.25 to 36.30 Mg/ha when compared with the AGB estimation from forest height alone. The effect of polarization and weather conditions on the AGB estimation performance is discussed.
  • Keywords
    forestry; vegetation mapping; L-band reflectivity profiles; SAR tomography; forest above-ground biomass estimation; forest stand densities; height measurements; root-mean-square error; vertical forest structure information; vertical radar reflectivity profiles; vertical reflectivity profiles; Biomass; Estimation; Image color analysis; L-band; Remote sensing; Synthetic aperture radar; Forest allometry; L-band; forest biomass; synthetic aperture radar (SAR) tomography; vertical forest structure; vertical reflectivity profiles;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2015.2477858
  • Filename
    7305772