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Siewert, Matthias Benjamin (2018): High-resolution land cover classification for Stordalen, Abisko region, northern Sweden [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.886298

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Abstract:
An object-based approach was used to generate a detailed land cover classification covering the Stordalen area near Abisko, northern Sweden. First, an orthophoto was combined with the DEM resampled to 1 m spatial resolution. A segmentation layer was generated by grouping pixels into homogeneous areas with a minimum region size of 130 m². From this a water mask was classified using the red band of the orthophoto and a slope layer. A land cover training set was created by combining field survey information with visual interpretation of the orthophoto and topography. The following layers were used as input for the classification algorithm: an orthophoto, elevation and slope; a SPOT5 4-band satellite image, and NDVI, SAVI and NIR/SWIR as SPOT5 derivatives. The segments were then classified using a support vector machine algorithm. Artificial surfaces were hand digitized and masked out. The individual thematic classes are described in TableA1.
The quality of the classification was assessed using a set of 108 ground control points. The accuracy assessment results in a Kappa value of 0.71 and an overall accuracy of 74% for all land covers excluding water and artificial areas see TableA2.
Related to:
Siewert, Matthias Benjamin (2018): High-resolution digital mapping of soil organic carbon in permafrost terrain using machine learning: a case study in a sub-Arctic peatland environment. Biogeosciences, 15(6), 1663-1682, https://doi.org/10.5194/bg-15-1663-2018
Funding:
Seventh Framework Programme (FP7), grant/award no. 282700: Changing Permafrost in the Arctic and its Global Effects in the 21st Century
Coverage:
Latitude: 68.333000 * Longitude: 18.833000
Minimum Elevation: 1206.0 m * Maximum Elevation: 1206.0 m
Event(s):
Abisko (ABI) * Latitude: 68.333000 * Longitude: 18.833000 * Location: Abisko, Lappland, northern Sweden * Method/Device: Multiple investigations (MULT)
Size:
17.7 MBytes

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