4.1 Article

Contribution of woody elements to tree level reflectance in boreal forests

期刊

SILVA FENNICA
卷 55, 期 5, 页码 -

出版社

FINNISH SOC FOREST SCIENCE-NATURAL RESOURCES INST FINLAND
DOI: 10.14214/sf.10600

关键词

bark; hyperspectral; reflectance model; spectral mixture analysis

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资金

  1. Academy of Finland (DIMEBO) [323004]
  2. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme [771049]

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Spectral mixture analysis was used to estimate the contribution of woody elements to tree level reflectance in boreal forest stands in Finland. The study found that the contribution of different woody elements varied and had a weak connection to plot level forest variables.
Spectral mixture analysis was used to estimate the contribution of woody elements to tree level reflectance from airborne hyperspectral data in boreal forest stands in Finland. Knowledge of the contribution of woody elements to tree or forest reflectance is important in the context of lea area index (LAI) estimation and, e.g., in the estimation of defoliation due to insect outbreaks, from remote sensing data. Field measurements from four Scots pine (Pinus sylvestris L.), five Norway spruce (Picea abies (L.) Karst.) and four birch (Betula pendula Roth and Betula pubescens Ehrh.) dominated plots, spectral measurements of needles, leaves, bark, and forest floor, airborne hyperspectral as well as airborne laser scanning data were used together with a physically-based forest reflectance model. We compared the results based on simple linear combinations of measured bark and needle/leaf spectra to those obtained by accounting for multiple scattering of radiation within the canopy using a physically-based forest reflectance model. The contribution of forest floor to reflectance was additionally considered. The resulted mean woody element contribution estimates varied from 0.140 to 0.186 for Scots pine, from 0.116 to 0.196 for birches and from 0.090 to 0.095 for Norway spruce, depending on the model used. The contribution of woody elements to tree reflectance had a weak connection to plot level forest variables.

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