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Coupling forest canopy and understory reflectance in the Arctic latitudes of Finland
Authors:Miina Rautiainen  Juha Suomalainen  Pauline Stenberg  Jouni Peltoniemi
Affiliation:a Tartu Observatory, 61602 Tõravere, Tartumaa, Estonia
b Department of Remote Sensing and Photogrammetry, Finnish Geodetic Institute, PO BOX 15, FI-02431 Masala, Finland
c Department of Forest Ecology, PO BOX 27, FI-00014 University of Helsinki, Finland
d Finnish Forest Research Institute, Suonenjoki Research Unit, Juntintie 154, FI-77600 Suonenjoki, Finland
e Finnish Meteorological Institute, Research and Development Earth Observation P.O. Box 503, FI-00101 Helsinki, Finland
Abstract:The Arctic region is predicted to experience considerable climatic and environmental changes as the global atmospheric CO2 increases. Growing awareness of the role of tundra and taiga ecosystems and their transition zone in the climate change process has resulted in a recent increase in remote sensing studies focusing on the Arctic latitudes. Remote sensing of biophysical properties of the canopy layer in the forested part of the region is often, however, challenged by the dominating role of the understory in the spectral signal. In this paper, we examine the influence of understory vegetation on forest reflectance in the Arctic region of Finland during no-snow conditions. The study is based on SPOT HRVIR images, field goniospectrometry, 300 ground reference plots and a physically-based forest reflectance model (PARAS). The results indicate that lichen-dominated forest site types can be distinguished from sites dominated by dwarf shrubs. The paper also contains results from applying an analytical method for calculating photon recollision probability from canopy transmittance data for forest stands, and then using it to simulate the reflectance of the same stands.
Keywords:Leaf area index  Understory BRDF  Goniospectrometry  Recollision probability
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