Galileo is the European Union's Global Navigation Satellite System (GNSS), managed by the European Union Agency for the Space Programme (EUSPA) with design and development by the European Space Agency (ESA). It provides highly accurate, guaranteed global positioning services under civilian control with improved positioning and timing information. Galileo offers various services, including an Open Service (OS) for mass-market use, a Search and Rescue (SAR) function, a High Accuracy Service (HAS), and a Public Regulated Service (PRS) for authorized users.
All verified mentions of this organization in source documents.
The EU Agency for the Space Programme (EUSPA) was rebranded from the European Agency for Global Navigation Satellite Systems earlier 2021 and its mandate was expanded beyond Galileo to include Copernicus, satellite communications, and space situational awareness.
DDK Positioning uses the Iridium network to provide global precision positioning services that augment GNSS constellations including GPS and Galileo.
Orolia will participate in the G0.002 kg RFCS activity to support Galileo Second Generation signals evolution requirements.
Orolia has been selected by the European Commission and the European Space Agency to provide the core GNSS simulation engine for the Galileo Second Generation RF Constellation Simulator (G0.002 kg RFCS).
The Galileo Second Generation initiative includes preparation of a future generation of Galileo global infrastructure covering satellites and ground segments to maintain current services and provide improved performance and RNP features to all users.
Orolia will work with ESA, GMV, and Tecnobit to help develop the next generation European Galileo constellation.
The primary objective of the G0.002 kg RFCS initiative is to design, develop, manufacture, and test an enhanced radio-frequency constellation simulator dedicated to Galileo engineering and experiments.
EUSPA will develop downstream markets and foster innovation based on Galileo and EGNOS and will also include Copernicus in these activities.
The MSC 10 utilizes both L1 and L5 GPS frequencies and supports multiple constellations including GPS, Galileo, GLONASS, and BeiDou.
GMV will lead from Portugal the development and supply of the Radio Frequency Constellation Simulator to support Galileo Second Generation engineering and experimentation activities in the Open Service and Public Regulated Service domains.
GMV is selected to lead the consortium that will supply a Radio Frequency Constellation Simulator covering both the Galileo First Generation and Second Generation.
Europe prepared for emergency in-orbit maneuvers after its Galileo satellite navigation constellation had to dodge debris for the first time on 2021-03-06.
The main objectives of Galileo Second Generation are to phase in new services, improve existing services, boost system robustness and security, and reduce operating and maintenance costs.
Spaceopal spent the period between the 2021-02-21 alert and the emergency maneuver assessing collision risk and countermeasures while maintaining Galileo services.
RUAG Space will develop a new product in Vienna by the end of 2022 that will be able to use the Galileo HAS service.
The Galileo system will provide a High Accuracy Service (HAS) beginning in 2022 to support significantly improved positioning.
RUAG Space’s navigation receivers currently use signals from the 22 European Galileo navigation satellites to determine satellite positions.
RUAG Space will develop a new product by the end of 2022 that will be able to use the Galileo High Accuracy Service (HAS).
The Galileo High Accuracy Service (HAS) will support significantly improved positioning starting in 2022.
RUAG Space navigation receivers currently use signals from the 22 European Galileo navigation satellites to determine satellites' exact positions.