Automated mapping of tropical deforestation and forest degradation: CLASlite
- 1 January 2009
- journal article
- Published by SPIE-Intl Soc Optical Eng in Journal of Applied Remote Sensing
- Vol. 3 (1) , 033543-033543-24
- https://doi.org/10.1117/1.3223675
Abstract
Monitoring deforestation and forest degradation is central to assessing changes in carbon storage, biodiversity, and many other ecological processes in tropical regions. Satellite remote sensing is the most accurate and cost-effective way to monitor changes in forest cover and degradation over large geographic areas, but the tools and methods have been highly manual and time consuming, often requiring expert knowledge. We present a new user-friendly, fully automated system called CLASlite, which provides desktop mapping of forest cover, deforestation and forest disturbance using advanced atmospheric correction and spectral signal processing approaches with Landsat, SPOT, and many other satellite sensors. CLASlite runs on a standard Windows-based computer, and can map more than 10,000 km2>, at 30 m spatial resolution, of forest area per hour of processing time. Outputs from CLASlite include maps of the percentage of live and dead vegetation cover, bare soils and other substrates, along with quantitative measures of uncertainty in each image pixel. These maps are then interpreted in terms of forest cover, deforestation and forest disturbance using automated decision trees. CLASlite output images can be directly input to other remote sensing programs, geographic information systems (GIS), Google EarthTM> serif}, or other visualization systems. Here we provide a detailed description of the CLASlite approach with example results for deforestation and forest degradation scenarios in Brazil, Peru, and other tropical forest sites worldwide.Keywords
This publication has 39 references indexed in Scilit:
- Humid tropical forest clearing from 2000 to 2005 quantified by using multitemporal and multiresolution remotely sensed dataProceedings of the National Academy of Sciences, 2008
- Condition and fate of logged forests in the Brazilian AmazonProceedings of the National Academy of Sciences, 2006
- CANOPY DAMAGE AND RECOVERY AFTER SELECTIVE LOGGING IN AMAZONIA: FIELD AND SATELLITE STUDIESEcological Applications, 2004
- Coarse woody debris in undisturbed and logged forests in the eastern Brazilian AmazonGlobal Change Biology, 2004
- Spatial and temporal dynamics of forest canopy gaps following selective logging in the eastern AmazonGlobal Change Biology, 2004
- Scale dependence of biophysical structure in deforested areas bordering the Tapajós National Forest, Central AmazonRemote Sensing of Environment, 2003
- Forest canopy damage and recovery in reduced-impact and conventional selective logging in eastern Para, BrazilForest Ecology and Management, 2002
- Road paving, fire regime feedbacks, and the future of Amazon forestsPublished by Elsevier ,2001
- Reducing the effects of space-varying, wavelength-dependent scattering in multispectral imageryInternational Journal of Remote Sensing, 1999
- Smoke, Clouds, and Radiation‐Brazil (SCAR‐B) experimentJournal of Geophysical Research: Atmospheres, 1998