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Start date: 17/12/2024Duration: 18 MonthsThe objective of this project is to develop, implement, and demonstrate robust GNSS positioning solutions for autonomous driving using low-cost antenna arrays on low-Size Weight and Power (SWaP) platforms. By leveraging signals from these antenna arrays, subject to multipath and interference, the project aims to enhance PNT solution robustness through innovative techniques. These solutions will be…
Subcontractors
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The objective of this activity is to develop a toolkit to support engineering activities for LEO PNT systems. The goal is to accelerate the design, development and planning of such systems, not only from a signal simulation capability based on COTS, but also making available fast-prototyping tools to check for receiver performance, focusing on signal processing aspects.
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This project will continue the Space GNSS Receiver maturation, but in this case, it will be done by DEIMOS in collaboration with University of Padua that will provide their P2OD SW. Also, with the advent of the availability of a new open service from Galileo, the High Accuracy Service (HAS), our proposal is to make use of E6-B signal to provide the precise corrections for PPP on-board. As…
Subcontractors
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