Map-Aided Software Enhancement for Autonomous GNSS Complementary Positioning System for Railway
Программное усовершенствование с использованием карт для автономной дополнительной системы позиционирования на основе ГНСС для железнодорожного транспорта
2019-10-14
SCID: 54.1/u4zzd2h5
Discuss with AI
GNSS complementary positioningKnown Blocked Scenarios algorithminertial measurement unitsmap-aided softwarerailway positioning
Figures from the paper
Abstract (AI)
Independently on the business case addressed, one of the main drawbacks of the railway use cases that need continuous Global Navigation Satellite Systems data is the lack of availability for the 100% of the time of the journey. Additionally, the integrity assessment of the position estimation given is also mandatory for safety critical applications. Thus, tunnels and multipath effects are one of the most challenging situations for the continuous positioning systems. In this context, an autonomous on-board Complementary Positioning System has been proposed to overcome the limitation of Global Navigation Satellite System based positioning systems. This paper proposes a positioning enhancement solution by means of fusing data from the satellite navigation system and inertial measurement units. That hybrid solution provides higher availability and accuracy to the positioning specially on known blocked scenarios, such as tunnels, or urban canyons, by means of a novel environment aware map aided software technique named Known Blocked Scenarios algorithm... This paper describes the Complementary Positioning System and the field test carried out in a challenging environment to validate the enhancement proposed by the authors, which demonstrate the benefits that this system has in known harsh environments for railways.
Key Findings
1
A novel environment-aware map-aided Known Blocked Scenarios algorithm improves positioning in known GNSS-blocked environments, including tunnels and urban canyons.
2
Field tests in a challenging railway environment demonstrated improved positioning availability and accuracy compared with GNSS-based positioning alone.
3
Railway GNSS-based positioning suffers from unavailable signals during tunnels and multipath-prone environments, while safety-critical applications also require position integrity assessment.
4
The proposed autonomous onboard Complementary Positioning System fuses satellite-navigation data with inertial measurements to enhance railway positioning.
5
The results support the system’s benefits for continuous positioning in harsh, known railway environments.
Research Object
autonomous on-board GNSS complementary positioning system for railway applications
Research Subject
availability, accuracy, and integrity of railway positioning in GNSS-denied or degraded environments, enhanced through fusion of satellite-navigation and inertial data with map-aided detection of known blocked scenarios
Publication Details
Publication Date
2019-10-14
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest