Land Mobile GNSS Availability and Multipath Evaluation Tool
Инструмент оценки доступности GNSS и многолучевого распространения для наземного транспорта
2005-09-01
SCID: 54.1/nup84a3t
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GNSS availabilityland transportationmultipath evaluationsatellite visibilityurban canyon
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Abstract (AI)
Applications of global navigation satellite system (GNSS) in land transportation systems are already extensively deployed and will certainly continue to grow especially in the framework of intelligent transport systems. However, one of the best-known drawbacks of such a system is the lack of satellite visibility in dense urban areas as well as in some specific embedded railway environments. This restricts considerably GNSS use for extended safety related applications. In this paper, a new tool is proposed to predict the availability of a satellite constellation from the point of view of the land transportation user. Knowing the trajectory of a land vehicle, the tool predicts the number of satellites that will be received and produces a safety criterion able to qualify the GNSS localization result. A first version of the tool, already in operation, merges an image processing approach providing the knowledge of the land environment, and the output of a satellite tracking program predicting satellite positions in the sky. This allows us to determine, using a simple optical approach, the number of satellites received in line-of-sight or blocked, with regard to the nearby environment of the receiving antenna. Results obtained in railway as well as in road environments show that satellite signals received by multipath are often used by GNSS receivers in the localization process. Thus, propagation characteristics of the satellite signals in an urban canyon configuration were characterized to determine when a signal received by reflected ray is used by the receiver or not. A criterion related to the satellite elevation is defined to improve the overall performance of the predictive tool. Comparisons with real measurements are commented on. Both simulations and measurements are very similar.
Key Findings
1
A predictive tool estimates GNSS satellite availability for land vehicles using vehicle trajectories and satellite constellation geometry.
2
Railway and road evaluations show that GNSS receivers frequently use multipath signals for localization in constrained environments.
3
Simulations and real measurements show very similar results, supporting the tool’s predictive performance.
4
The tool combines image-based modeling of the surrounding land environment with satellite tracking to identify visible and obstructed satellites.
5
Urban-canyon signal propagation was characterized, and a satellite-elevation criterion was defined to determine when reflected signals are usable.
Research Object
GNSS satellite signal availability and multipath propagation for land transportation users in urban and railway environments
Research Subject
Prediction and safety qualification of GNSS localization performance based on satellite visibility, signal blockage, and reflected-signal use
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2005-09-01
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