Investigating the Influence of Different DEMs on GIS-Based Cost Distance Modeling for Site Catchment Analysis of Prehistoric Sites in Andalusia

Literature
Maintained by Christian Willmes
Created at 27.1.2017

Abstract

The overall objective of this work is to apply GIS-based cost distance modeling (CDM) to site catchment modeling and analysis of prehistoric (Solutrean) sites in Andalusia. The implementation of a GIS-method for slope-based CDM was explained in detail, so that it can be replicated easily in future studies. Additional cost components, vegetation and stream networks, were included in the method. The presented CDM approach uses slope rasters as input data, which were derived from digital elevation models (DEMs). Various DEMs that differ in cell size, accuracy and other characteristics can be applied to this method. Thus, a major goal of this work is to investigate the influence different publicly available DEMs (SRTM, ASTER GDEM, EU-DEM, official 5-m/10-m cell size DEMs) have on the results of GIS-based CDM. While the investigation was conducted on sites from different chronocultural periods, a case study was performed on Solutrean sites in order to test the CDM approach by producing actual results and then comparing and interpreting them from an archaeological perspective. The results of the DEM evaluation with resampled horizontal resolutions show a clear influence of the DEM cell size on the modeled catchment area sizes. The investigation also indicates that this influence can be superimposed by other factors, such as noise and residuals of filtered anthropogenic features, when using DEMs of different origins.

Bibliography

Becker, D., de Andrés-Herrero, M., Willmes, C., Weniger, G., Bareth, G. (2017): Investigating the Influence of Different DEMs on GIS-Based Cost Distance Modeling for Site Catchment Analysis of Prehistoric Sites in Andalusia. MDPI – In: ISPRS Int. J. Geo-Inf. , Vol. 6(2), DOI: 10.3390/ijgi6020036

authorBecker, Daniel and de Andrés-Herrero, María and Willmes, Christian and Weniger, Gerd-Christian and Bareth, Georg
doi10.3390/ijgi6020036
journalISPRS Int. J. Geo-Inf.
keyDanielBecker2017
number2
publisherMDPI
typearticle
volume6
year2017
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