Skip to main content

Galileo commercial service on track

The results of early proof of concept tests (EPOC) carried out by the Authentication and Accurate Location Experimentation with the Commercial Service (AALECS) show that the EPOC team has successfully tracked the encrypted Galileo E6-B and E6-C signals broadcast by Galileo satellites. As a result, the commercial service loop has been closed using both encrypted and non-encrypted signals. The tests are the result of a collective effort involving teams and projects of AALECS, supported by the European Comm
August 1, 2014 Read time: 2 mins

The results of early proof of concept tests (EPOC) carried out by the Authentication and Accurate Location Experimentation with the Commercial Service (AALECS) show that the EPOC team has successfully tracked the encrypted Galileo E6-B and E6-C signals broadcast by Galileo satellites. As a result, the commercial service loop has been closed using both encrypted and non-encrypted signals.

The tests are the result of a collective effort involving teams and projects of AALECS, supported by the 1690 European Commission, the 5810 European GNSS Agency (GSA), 6780 the European Space Agency (ESA) and the Galileo operator, Spaceopal. The European Commission launched AALECS in January 2014 and it was awarded to a consortium led by GMV including CGI, Qascom, IFEN, Veripos and KU Leuven.  As part of the AALECS project, GMV and IFEN developed an early proof of concept platform aimed at testing external data transmission through offline means. The project will last for approximately two and a half years.

During a ten-day testing period, receivers located in Spain and Germany, showed the successful tracking and data demodulation of encrypted signals from the available Galileo satellites, with periods where all satellites transmitting E6 encrypted signals were tracked simultaneously. The tests verified the Galileo commercial service (CS) signal’s encryption functionalities, with the data received containing authentication and high accuracy information previously generated outside the Galileo system. This is an essential feature to ensuring Galileo’s high accuracy and authentication services – some of which may be commercial in nature.

The Galileo commercial service will deliver a range of added-value features, including positioning accurate to decimetre level and an authentication element, both of which allow for the development of innovative applications for professional or commercial use. The Galileo CS demonstrator began its proof of concept earlier this year, with early service expected to start in 2016.

Once operational, the CS will provide access to two additional encrypted signals on the E6 band, delivering a higher data throughput rate and increased accuracy. CS addresses the authentication and high-precision market segments and will deliver innovative services with improved performance and greater added value than those obtained through the open service.

For more information on companies in this article

Related Content

  • Transportation applications move to machine vision’s mainstream
    June 11, 2015
    The adaptation of machine vision to transport applications continues apace. That the machine vision industry is taking traffic installations seriously is evident by the amount of hardware and software products tailor-made for ITS applications that are now available on the market. A good example comes from US-based Gridsmart Technologies which has developed a single wire fisheye camera that provides a horizon to horizon view for use at intersections. Not only does the single camera replace four or more in a
  • Glasgow’s new Operations Centre has a key role in city’s future
    June 6, 2014
    David Crawford investigates a control centre with a future. Destined to play a central role in keeping the city and its transport running smoothly during the 2014 Commonwealth Games in July, the new Glasgow Operations Centre in Scotland’s largest urban centre formally went live earlier this year. The aim was to dry run its far-reaching integration of previously distinct core systems and familiarise the public with the initial phase of what will be a long-term post-event legacy. The centre brings together, i
  • T-Systems launches satellite-based road user charging
    August 3, 2015
    T-Systems will be demonstrating the Satellic Tolling Platform, a state-of-the-art, high-quality GNSS-based, road-user charging system at the 2015 ITS World Congress. This includes an EETS-ready, easy-to- install, on-board unit (OBU) and a self-service Web portal for quick-and-simple customer access. All key processes in the lifecycle of a toll collection system – for both end-users and the OBU – will be on show. Insights will be given into the quality of the GNSS toll detection and calculation algorithm as
  • MobiCloud project improves Karlsruhe public transport
    April 9, 2013
    Nettropolis and the MobiCloud consortium are to deploy innovative mobile cloud services for the Karlsruhe Public Transport Authority (Verkehrsbetriebe Karlsruhe or VBK), as part of the MobiCloud project, an initiative funded by the European Commission under the ICT Policy Support Programme (PSP) Competitiveness and Innovation framework Programme (CIP). The MobiCloud platform aims to make public transport greener, safer and more efficient by using standard smartphones and tablets to improve coordination betw