Near real-time monitoring of tropical forest disturbance: New algorithms and assessment framework

Author:

Tang XiaojingORCID,Bullock Eric L.,Olofsson PontusORCID,Estel Stephan,Woodcock Curtis E.

Funder

NASA

Publisher

Elsevier BV

Subject

Computers in Earth Sciences,Geology,Soil Science

Reference53 articles.

1. Continuous Monitoring of Land Change Activities and Post-disturbance Dynamics From Landsat Time Series: A Test Methodology for REDD+ Reporting;Arevalo,2019

2. Cloud cover in Landsat observations of the Brazilian Amazon;Asner;Int. J. Remote Sens.,2001

3. Monitoring tropical Forest degradation using spectral Unmixing and Landsat time series analysis;Bullock;Remote Sens. Environ.,2018

4. Vegetative Cover Conversion MOD44A, Burned Vegetation, Collection 4;Carrol,2004

5. We must all pay more attention to rigor in accuracy assessment: additional comment to “the improvement of land cover classification by thermal remote sensing.”;Castilla;Remote Sens.,2016

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