2004Unpublished venueRequires access

Qualification of SRTM DEM. A first approach toward an application dependant qualification framework

Pauline Audenino, L. Rognant, J.-M. Chassery

Open publisher page 3 citations

Abstract

The now well-known SRTM (Shuttle Radar Topography Mission) mission, launched in February, 2000 for 11 days, used C-band and X-band interferometric SAR to acquire data all over the Earth surface. These data allowed to generate the world's largest DEM. The aim of our study is to assess the quality of the SRTM DEM derived from the X-SAR system, compared with the quality of a reference DEM and of DEM from other sources. An important aspect of the study is to be able to conclude on the real relevancy of the SRTM product compared to the already existing products, for instance is it to be considered as a new global topographic reference or should it be only limited to some applications. The chosen test site is the Grand Morin, watershed of the Seine river nearby Paris, France, that exhibits a wide thematic diversity. Beyond the qualification of SRTM products, we tried to develop a systematic framework for the analysis of quality, which constitutes a challenging issue nowadays.

About this research paper

What this paper is about

The now well-known SRTM (Shuttle Radar Topography Mission) mission, launched in February, 2000 for 11 days, used C-band and X-band interferometric SAR to acquire data all over the Earth surface. These data allowed to generate the world's largest DEM. The aim of our study is to assess the quality of the SRTM DEM derived from the X-SAR system, compared with the quality of a reference DEM and of DEM from other sources. An important aspect of the study is to be able to conclude on the real relevancy of the SRTM product compared to the already existing products, for instance is it to be considered as a new global topographic reference or should it be only limited to some applications. The chosen test site is the Grand Morin, watershed of the Seine river nearby Paris, France, that exhibits a wide thematic diversity. Beyond the qualification of SRTM products, we tried to develop a systematic framework for the analysis of quality, which constitutes a challenging issue nowadays.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The now well-known SRTM (Shuttle Radar Topography Mission) mission, launched in February, 2000 for 11 days, used C-band and X-band interferometric SAR to acquire data all over the Earth surface. These data allowed to generate the world's largest DEM. The aim of our study is to assess the quality of the SRTM DEM derived from the X-SAR system, compared with the quality of a reference DEM and of DEM from other sources. An important aspect of the study is to be able to conclude on the real relevancy of the SRTM product compared to the already existing products, for instance is it to be considered as a new global topographic reference or should it be only limited to some applications. The chosen test site is the Grand Morin, watershed of the Seine river nearby Paris, France, that exhibits a wide thematic diversity. Beyond the qualification of SRTM products, we tried to develop a systematic framework for the analysis of quality, which constitutes a challenging issue nowadays.

Key concepts: Shuttle Radar Topography Mission, Thematic map, Remote sensing, Computer science, Digital elevation model, Watershed, Environmental science, Geology

Related papers

Back to paper searchBrowse research topicsOriginal source
Qualification of SRTM DEM. A first approach toward an application dependant qualification framework — Research Paper | ScholarLens