The Earth is a very dynamic system and the topographic height of its landmass changes over time, especially in forested areas, glaciers, permafrost regions or where human activities take place. After the TanDEM-X mission provided a first global DEM of unprecedented quality in 2016, a new complete coverage of the Earth's landmass was acquired mainly between 2017 and 2020. This data is used to create another global DEM. In addition to providing more up-todate elevation information, these new acquisitions also provide a great dataset to show the changes that have occurred in the few years between the two global datasets. The new product - the TanDEM-X DEM Change Maps - will be produced in 30m and 90m postings and will focus on showing these c...
The TanDEM-X Change DEM will be a new DEM consisting of the data globally acquired by the TanDEM-X m...
The Copernicus DEM has established a programme-level reference for Digital Elevation Models, serving...
The TanDEM-X mission consists of two satellites which fly in close formation to form a single-pass ...
In 2017, the TanDEM-X Mission decided to generate a second - more recent - global DEM. The acquisiti...
The production of the global TanDEM-X Digital Elevation Model (DEM) clearly showed that, at this lev...
With the global TanDEM-X DEM generation being finished in 2016, the mission is now acquiring a new d...
The global TanDEM-X DEM has been acquired between 2011 and 2014 and generated until 2016. Between 20...
The paper provides an up-to-date overview of the German TanDEM-X satellite mission status and its on...
This paper introduces the new TanDEM-X DEM 2020. The TanDEM-X mission systematically acquired data m...
The goal of TanDEM-X to acquire the data for the generation of a global, high-accurate, and homogene...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missio...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missio...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missi...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an innovative formation flying ra...
Over the last years the TanDEM-X mission acquired data for a second global digital elevation model (...
The TanDEM-X Change DEM will be a new DEM consisting of the data globally acquired by the TanDEM-X m...
The Copernicus DEM has established a programme-level reference for Digital Elevation Models, serving...
The TanDEM-X mission consists of two satellites which fly in close formation to form a single-pass ...
In 2017, the TanDEM-X Mission decided to generate a second - more recent - global DEM. The acquisiti...
The production of the global TanDEM-X Digital Elevation Model (DEM) clearly showed that, at this lev...
With the global TanDEM-X DEM generation being finished in 2016, the mission is now acquiring a new d...
The global TanDEM-X DEM has been acquired between 2011 and 2014 and generated until 2016. Between 20...
The paper provides an up-to-date overview of the German TanDEM-X satellite mission status and its on...
This paper introduces the new TanDEM-X DEM 2020. The TanDEM-X mission systematically acquired data m...
The goal of TanDEM-X to acquire the data for the generation of a global, high-accurate, and homogene...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missio...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missio...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an Earth observation radar missi...
TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurements) is an innovative formation flying ra...
Over the last years the TanDEM-X mission acquired data for a second global digital elevation model (...
The TanDEM-X Change DEM will be a new DEM consisting of the data globally acquired by the TanDEM-X m...
The Copernicus DEM has established a programme-level reference for Digital Elevation Models, serving...
The TanDEM-X mission consists of two satellites which fly in close formation to form a single-pass ...