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Start date: 20/11/2025Duration: 24 MonthsGNSS technologies typically suffer significant accuracy issues in urban environments due to signal degradation caused by obstacles like buildings which block and reflects GNSS signals leading to big positioning errors. The most dangerous impairments are due to specularly reflected Non-Line-Of-Sight (srNLOS) signals. Such errors can be attenuated through the application of the Intelligent Urban…
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Start date: 04/09/2025Duration: 12 MonthsESA's NAVISP-EL1-077 project aims to develop a prototype Position, Navigation, and Timing (PNT) system, focusing on secure positioning through GNSS and 5G encrypted signals. The initiative includes creating two emulators: a User Terminal Emulator (UTE) and a Service Provider Emulator (SPE). Qascom and the consortium have two main objectives: developing a testbed and a prototype User Terminal.…
Subcontractors
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Start date: 01/09/2025Duration: 9 MonthsKENOTOM will undertake the identification of State-of-the-Art of PNT Usage in AD/ADAS, the final Synthesis & Recommendations for NAVISP as well as the project management of the project NAVISTAR.
Subcontractors
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Various 5G terrestrial positioning techniques have been studied and demonstrated by the 3GPP, so positioning accuracy and availability with 5G terrestrial networks is a well- established concept and several positioning methods are defined in 3GPP; however, position integrity with 5G private networks seams largely un-investigated. If 5G is to be used for reliable positioning, then further…
Prime contractor
Subcontractors
Name: University of York
Country: United Kingdom
Website: https://www.russellgroup.ac.uk/our-universities/university-york
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Start date: 01/07/2025Duration: 36 MonthsSpirent is aiming to develop and provide a test framework for PNT resiliency testing for users, operators, and providers of Critical National Infrastructure (CNI). The proposed framework will consist of the Spirent PNT Alliance, the Spirent Shopfront and the Resilient PNT Assessment Scheme, and will provide support to each of the ten points of the UK government’s Resilient PNT strategy [17], by…
Prime contractor
Name: Spirent
Country: United Kingdom
Website: https://www.spirent.com/products-for/positioning-navigation-timing
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Start date: 01/07/2025Duration: 24 MonthsA community-powered GNSS reference station network developed by onocoy enables the mass adoption of high-precision satellite positioning. The disruptive approach of decoupling the operation of reference stations from the delivery of correction services, and establishing a shared platform for such data, makes it possible to create a network with unprecedented coverage and density. The benefits are…
Subcontractors
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Start date: 30/06/2025Duration: 18 MonthsThe SoLPOINT project addresses the critical challenge of ensuring the safe operation of highly automated trucks, which is crucial for the advancement of autonomous driving. In accordance with emerging regulations like the German Act on Autonomous Driving (§AFGBV = “Autonome-Fahrzeuge-Genehmigungs-und-Betriebs-Verordnung”), SoLPOINT will develop and implement a state-of-the-art technical…
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Start date: 23/06/2025Duration: 9 MonthsThe project addresses the increasing relevance of Positioning, Navigation, and Timing (PNT) technologies as critical enablers for Advanced Driver Assistance Systems (ADAS) and Autonomous Driving (AD) across diverse operational environments in land mobility.
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Start date: 17/06/2025Duration: 24 MonthsThere is increasing worldwide dependency on global navigation satellite systems (GNSS) that deliver uninterrupted timing signals. This GNSS dependency is driving novel holdover clock development to flywheel over periods when the GNSS signal is unavailable. Enhanced GNSS with next-generation optical clock technologies could facilitate both significantly reduced positioning errors and improved…
Prime contractor
Subcontractors
Name: Opto-Electronics Research Centre (University of Southampton)
Country: United Kingdom
Website: https://www.southampton.ac.uk/about/faculties-schools-departments/optoelectronics-research-centre
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097 - Use of ML Tech. to Optimize the Adaptive beam-Steering Capabilities of CRPAs for GNSS Receiver
Start date: 16/06/2025Duration: 24 MonthsScope of the project is to perform activities and provide deliverables in relation to Use of ML techniques to optimize the adaptive beam-steering capabilities of CRPAs for GNSS user receivers. The core objectives of the project are: • Identify the best ML algorithm for adaptive null-steering beamformer with a compact antenna (elements spacing <λ/2) • Develop and evaluate the real-time…Subcontractors