Asian Surveying & Mapping
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ISRO Maps Over 2,000 Glaciers, 3,219 Glacial Lakes in Ladakh for Disaster Management
SRINAGAR: The Indian Space Research Organisation (ISRO) and other...
China Closes the Satellite Gap in Space Race With the U.S.
China aims to match the U.S. as the world’s...
IIT-Tirupati hosts fifth BRICS working group meeting on geospatial technologies
The Indian Institute of Technology-Tirupati (IIT-Tirupati), in collaboration with...
South Korea launches 4th Earth observation satellite from US
South Korea on Tuesday launched its fourth Earth observation...
Korea AeroSpace Administration Unveils K-Space Vision
Agency Will Benchmark European Aerospace Clusters and Explore Joint...
Japan space agency conducts Epsilon rocket engine test after failures
TOKYO - The Japan Aerospace Exploration Agency on Thursday...
UAE to boldly go with programme to boost nation’s expertise in space sector
A programme has been announced to enhance Emirati expertise...
China is building a ‘Mach 26 asteroid hammer’ to strike space rocks before they hit Earth
The Earth revolves in a cosmic system which is...
Nigeria and Benin Strengthen Border Surveillance with Geospatial Technology
The partnership was highlighted during a strategic meeting at...
IIT-Tirupati hosts fifth BRICS working group meeting on geospatial technologies
The Indian Institute of Technology-Tirupati (IIT-Tirupati), in collaboration with...

February 4th, 2011
Long-term Performance Analysis of Giove Clocks

Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-board clock technologies for Galileo, the European Global Navigation Satellite System (GNSS), which are currently being validated on-board two experimental spacecrafts, GIOVE-A and GIOVE-B. These two spacecrafts are orbiting in a Galileo-representative orbit and transmit Galileo representative signals that are tracked and collected by a network of evenly distributed sensor stations (the Galileo Experimental Sensor Stations). The collected observables (pseudo-range and carrier phase) are being processed by the GIOVE Processing Centre, providing as one of its core product the estimation of the phase offset between the on-board clock and a reference clock, chosen to be an Active Hydrogen Maser connected to one of the sensor stations. Read More