The high-performance cloud-computing platform Google Earth Engine has been developed for global-scale analysis based on the Earth observation data. In particular, in this work, the geometric accuracy of the two most used nearly-global free DSMs (SRTM and ASTER) has been evaluated on the territories of four American States (Colorado, Michigan, Nevada, Utah) and one Italian Region (Trentino Alto-Adige, Northern Italy) exploiting the potentiality of this platform. These are large areas characterized by different terrain morphology, land covers and slopes. The assessment has been performed using two different reference DSMs: the USGS National Elevation Dataset (NED) and a LiDAR acquisition. The DSMs accuracy has been evaluated through computation of standard statistic parameters, both at global scale (considering the whole State/Region) and in function of the terrain morphology using several slope classes. The geometric accuracy in terms of Standard deviation and NMAD, for SRTM range from 2-3 meters in the first slope class to about 45 meters in the last one, whereas for ASTER, the values range from 5-6 to 30 meters. In general, the performed analysis shows a better accuracy for the SRTM in the flat areas whereas the ASTER GDEM is more reliable in the steep areas, where the slopes increase. These preliminary results highlight the GEE potentialities to perform DSM assessment on a global scale.

Free global DSM assessment on large scale areas exploiting the potentialities of the innovative google earth engine platform / Nascetti, Andrea; Di Rita, Martina; Ravanelli, Roberta; Amicuzi, Maria Teresa; Esposito, Sara; Crespi, Mattia. - In: THE INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 1682-1777. - ELETTRONICO. - 42:1/W1(2017), pp. 627-633. (Intervento presentato al convegno ISPRS Hannover Workshop: HRIGI 17 – CMRT 17 – ISA 17 – EuroCOW 17 tenutosi a Hannover (Germany) nel 6–9 June 2017) [10.5194/isprs-archives-XLII-1-W1-627-2017].

Free global DSM assessment on large scale areas exploiting the potentialities of the innovative google earth engine platform

Nascetti, Andrea;Di Rita, Martina;Ravanelli, Roberta;Amicuzi, Maria Teresa;Esposito, Sara;Crespi, Mattia
2017

Abstract

The high-performance cloud-computing platform Google Earth Engine has been developed for global-scale analysis based on the Earth observation data. In particular, in this work, the geometric accuracy of the two most used nearly-global free DSMs (SRTM and ASTER) has been evaluated on the territories of four American States (Colorado, Michigan, Nevada, Utah) and one Italian Region (Trentino Alto-Adige, Northern Italy) exploiting the potentiality of this platform. These are large areas characterized by different terrain morphology, land covers and slopes. The assessment has been performed using two different reference DSMs: the USGS National Elevation Dataset (NED) and a LiDAR acquisition. The DSMs accuracy has been evaluated through computation of standard statistic parameters, both at global scale (considering the whole State/Region) and in function of the terrain morphology using several slope classes. The geometric accuracy in terms of Standard deviation and NMAD, for SRTM range from 2-3 meters in the first slope class to about 45 meters in the last one, whereas for ASTER, the values range from 5-6 to 30 meters. In general, the performed analysis shows a better accuracy for the SRTM in the flat areas whereas the ASTER GDEM is more reliable in the steep areas, where the slopes increase. These preliminary results highlight the GEE potentialities to perform DSM assessment on a global scale.
2017
ISPRS Hannover Workshop: HRIGI 17 – CMRT 17 – ISA 17 – EuroCOW 17
DSM assessment; google earth engine; ASTER; SRTM; geometric accuracy
04 Pubblicazione in atti di convegno::04c Atto di convegno in rivista
Free global DSM assessment on large scale areas exploiting the potentialities of the innovative google earth engine platform / Nascetti, Andrea; Di Rita, Martina; Ravanelli, Roberta; Amicuzi, Maria Teresa; Esposito, Sara; Crespi, Mattia. - In: THE INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 1682-1777. - ELETTRONICO. - 42:1/W1(2017), pp. 627-633. (Intervento presentato al convegno ISPRS Hannover Workshop: HRIGI 17 – CMRT 17 – ISA 17 – EuroCOW 17 tenutosi a Hannover (Germany) nel 6–9 June 2017) [10.5194/isprs-archives-XLII-1-W1-627-2017].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/974122
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