Current methods for monitoring deforestation from satellite data at sub-annual scales require pixel time series to have many historical observations in the reference period to model normal forest dynamics before detecting deforestation. However, in some areas, pixel time series often do not have many historical observations. Detecting deforestation at a pixel with scarce historical observations can be improved by complementing the pixel time series with spatial context information. In this work, we propose a data-driven space-time change detection method that detects deforestation events at sub-annual scales in data cubes of satellite image time series. First we spatially normalised observations in the local space-time data cube to reduce s...
Forests provide essential goods and services to humanity, but human-induced forest disturbances have...
Tropical forests cover a significant portion of the earth's surface and provide a range of ecosy...
In this paper, we present an integrated near real-time forest disturbance monitoring system which ut...
Current methods for monitoring deforestation from satellite data at sub-annual scales require pixel ...
Mapping deforestation using medium spatial resolution satellite data (e.g. Landsat) is increasingly ...
In recent years, sequential tests for detecting structural changes in time series have been adapted ...
Current research on forest change monitoring using medium spatial resolution Landsat satellite data ...
Current research on forest change monitoring using medium spatial resolution Landsat satellite data ...
Several forest change detection algorithms are available for tracking and quantifying deforestation ...
Monitoring large forest areas is presently feasible with satellite remote sensing as opposed to time...
Monitoring large forest areas is presently feasible with satellite remote sensing as opposed to time...
The advent of CubeSat constellations is revolutionizing the ability to observe Earth systems through...
Combining observations from multiple optical and synthetic aperture radar (SAR) satellites can provi...
Increasing attention on tropical deforestation and forest degradation has necessitated more detailed...
Forests provide essential goods and services to humanity, but human-induced forest disturbances have...
Tropical forests cover a significant portion of the earth's surface and provide a range of ecosy...
In this paper, we present an integrated near real-time forest disturbance monitoring system which ut...
Current methods for monitoring deforestation from satellite data at sub-annual scales require pixel ...
Mapping deforestation using medium spatial resolution satellite data (e.g. Landsat) is increasingly ...
In recent years, sequential tests for detecting structural changes in time series have been adapted ...
Current research on forest change monitoring using medium spatial resolution Landsat satellite data ...
Current research on forest change monitoring using medium spatial resolution Landsat satellite data ...
Several forest change detection algorithms are available for tracking and quantifying deforestation ...
Monitoring large forest areas is presently feasible with satellite remote sensing as opposed to time...
Monitoring large forest areas is presently feasible with satellite remote sensing as opposed to time...
The advent of CubeSat constellations is revolutionizing the ability to observe Earth systems through...
Combining observations from multiple optical and synthetic aperture radar (SAR) satellites can provi...
Increasing attention on tropical deforestation and forest degradation has necessitated more detailed...
Forests provide essential goods and services to humanity, but human-induced forest disturbances have...
Tropical forests cover a significant portion of the earth's surface and provide a range of ecosy...
In this paper, we present an integrated near real-time forest disturbance monitoring system which ut...