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Element 2 - Competitiveness in PNT
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Start date: 27/07/2018The main objective of the activity is to design and develop a prototype of a GNSS sensor that will support automotive applications. Our strategy is to develop such device in the form of a “software radio” design that can be configured to allow its implementation in COTS system-on-a chip devices. This device is aimed to support multiple GNSS constellation with a multi-frequency…
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Start date: 01/08/2019The purpose of this project is to expand existing SDX product offer to cover arising customer needs. SKYDEL provides GNSS testing solutions that enable engineers and scientists who design and test navigation systems to validate the performance of GNSS devices in real-world conditions from the comfort of their labs. Many customers, in particular in Europe, have additional needs namely to…
Subcontractors
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Start date: 01/08/2020The objective of the TOWR (pronounced “tower”) is the development of a time distribution service via optical fibre over the Madrid region, based on time generation from very stable clocks (hydrogen masers), GNSS time-transfer (including GPS and Galileo) to UTC(k) laboratories, and White-Rabbit technology (an extension to the IEEE-1588 PTP protocol). The activity aims at demonstrating a robust…
Subcontractors
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Start date: 09/07/2018To find a presentation summarizing the now completed activity, click here. To find the abstract, click here. The DRACONAV project developed an industrial version of a secure GNSS module able to detect GNSS signal spoofing, replay and jamming attacks and provide an estimated PVT (Dead Reckoning) when an attack is detected. The module integrates in a unique casing a multi-constellation GNSS…
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Start date: 13/07/2018GMV, jointly with the Space Research Center of the Polish Academy of Sciences and Hertz Systems will develop Software Defined Radio (SDR) GNSS receiver for microsatellites and small launchers. The device will be designed for precise positioning of small satellites on Earth orbit and also serving as an avionics element for small launchers. Within the project consortium will develop the…
Prime contractor
Subcontractors
Name: SPACE RESEARCH CENTER OF THE POLISH ACADEMY OF SCIENCES (CBK PAN)
Country: Poland
Website: http://www.cbk.waw.pl/
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Start date: 18/06/2019The product is a COTS-based DC/DC converter to be used as secondary power supply for the general purpose COTS-based processor board to form a stand-alone COTS based GNSS receiver for space applications and launcher applications. It is an enabling item for the stand-alone COTS based GNSS receiver for space applications produced by RUAG.
Prime contractor
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Start date: 09/11/2018GEONAV is a THALES innovative IoT solution, allowing real-time Indoor/Outdoor precise (<1m) tracking at PNT and User Ground Segments level and available worldwide. GEONAV positioning algorithms take advantage of two existing positioning technologies that have already proven themselves: E-GNSS (European Global Navigation Satellite System) and Ultra-Wide Band (UWB). In order to expand GEONAV…
Subcontractors
Name: Nexter Electronics
Country: France
Website: http://www.nexter-group.fr/fr/filiales/nexter-electronics
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Start date: 29/10/2020High Accuracy Assistance Service (HAAS) is a high-precision, cloud-based corrections service. It contains highly accurate corrections for orbits, clocks, ionospheric and tropospheric delays. These corrections are delivered over terrestrial means via the same high availability infrastructure already supporting over a billion devices each day. The use of HAAS will enable horizontal position accuracy…
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Start date: 19/12/2018RASA is a technology that can be integrated into a GNSS receiver to make the GNSS receiver more robust. It is a spoofing detection algorithm used to detect counterfeit OS signals received by a GNSS receiver on a moving platform. The RASA solution is a software embedded application add-on to existing Rockwell Collins GNSS receivers with the goal of ensuring the end product is International Traffic…
Prime contractor
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Start date: 16/03/2019Accucom will develop a ‘Ground Based’ Positioning system, enabling 'Navigation Anywhere', with guaranteed accuracy, unaffected by atmosphere, in the fractions of metres. This will be achieved through a low-cost stand-alone Ground Infrastructure, and a mobile radio ranging system using trilateration to calculate a position. This Development stage, estimated at 1 year, will consist of…