Individual tree crown approach for predicting site index in boreal forests using airborne laser scanning and hyperspectral data

Author:

Kandare Kaja,Ørka Hans Ole,Dalponte Michele,Næsset Erik,Gobakken Terje

Funder

Edmund Mach Foundation, Trento, Italy

BIONÆR program of the Research Council of Norway and TerraTec AS

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Computers in Earth Sciences,Earth-Surface Processes,Global and Planetary Change

Reference78 articles.

1. A new method for atmospheric correction and aerosol optical property retrieval for VIS-SWIR multi- and hyperspectral imaging sensors: QUAC (QUick Atmospheric Correction);Bernstein;International Geoscience and Remote Sensing Symposium (IGARSS),2005

2. Impacts of climate change on natural forest productivity − evidence since the middle of the 20th century;Boisvenue;Global Change Biol.,2006

3. Determining Stand Ages in a Hyperspectral Image Using Artificial Neural Networks;Bortolot,2000

4. Tilvekstmodellprogram for furu (growth model computer programs for Pinus sylvestris);Braastad;Rep. Nor. For. Rese. Inst.,1980

5. Breiman, L. (University of C., 1999. Random forest. Mach. Learn. 45, 1–35. doi:10.1023/A:1010933404324.

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