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      The Landcover Impact on the Aspect/Slope Accuracy Dependence of the SRTM-1 Elevation Data for the Humboldt Range

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          Abstract

          The U.S. National Landcover Dataset (NLCD) and the U.S National Elevation Dataset (NED) (bare earth elevations) were used in an attempt to assess to what extent the directional and slope dependency of the Shuttle Radar Topography Mission (SRTM) finished digital elevation model is affected by landcover. Four landcover classes: forest, shrubs, grass and snow cover, were included in the study area (Humboldt Range in NW portion of Nevada, USA). Statistics, rose diagrams, and frequency distributions of the elevation differences (NED-SRTM) per landcover class per geographic direction were used. The decomposition of elevation differences on the basis of aspect and slope terrain classes identifies a) over-estimation of elevation by the SRTM instrument along E, NE and N directions (negative elevation difference that decreases linearly with slope) while b) underestimation is evident towards W, SW and S directions (positive elevation difference increasing with slope). The aspect/slope/landcover elevation differences modelling overcome the systematic errors evident in the SRTM dataset and revealed vegetation height information and the snow penetration capability of the SRTM instrument. The linear regression lines per landcover class might provide means of correcting the systematic error (aspect/slope dependency) evident in SRTM dataset.

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          AgeDisplay: an EXCEL workbook to evaluate and display univariate geochronological data using binned frequency histograms and probability density distributions

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            ICESat validation of SRTM C-band digital elevation models

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              Verification of the Vertical Error in C-Band SRTM DEM Using ICESat and Landsat-7, Otter Tail County, MN

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                Author and article information

                Journal
                Sensors (Basel)
                Sensors (Basel)
                Sensors (Basel, Switzerland)
                Molecular Diversity Preservation International (MDPI)
                1424-8220
                May 2008
                15 May 2008
                : 8
                : 5
                : 3134-3149
                Author notes
                Geology Department, University of Patras, Rion 26504, Greece; E-mail: gmiliar@ 123456upatras.gr ; Tel: +30-6977-047123
                Article
                sensors-08-03134
                10.3390/s8053134
                3675536
                01bb3aa8-fc2a-455d-a469-d98188c8c56c
                © 2008 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland.

                This article is an open-access article distributed under the terms and conditions of the CreativeCommons Attribution license ( http://creativecommons.org/licenses/by/3.0/).

                History
                : 18 February 2008
                : 08 May 2008
                Categories
                Article

                Biomedical engineering
                accuracy assessment,digital elevation model,sar,terrain analysis
                Biomedical engineering
                accuracy assessment, digital elevation model, sar, terrain analysis

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