Javascript must be enabled to continue!
Research on Railway Train Space Position Correction Algorithm Based on GNSS Correction Model
View through CrossRef
<p>The traditional railway train positioning methods mainly include three methods: speed sensor based, ground point responder response, and track circuit section occupancy detection. However, the traditional positioning method does not respond in a timely manner and is gradually being replaced by new positioning methods. With the development of high-speed rail in China, the Global Navigation Satellite System (GNSS) is gradually being implemented as a new positioning system for railway trains, and auxiliary technologies such as train accelerometers and odometry are integrated to ensure the safe operation of trains. However, GNSS can meet the positioning accuracy requirements in strong signal areas, but the positioning accuracy of trains is lower in weak signal or no satellite signal environments, resulting in certain positioning errors or noise, which cannot meet the needs of analysis and decision-making in geographic information systems. This paper uses the Unscented Kalman Filter algorithm to improve and design a GNSS based positioning correction model. Based on railway network GIS data, an electronic map spatial position correction matching method is proposed to improve and solve the problem of train positioning accuracy errors in weak signal environments. After experimental research, the GNSS positioning correction model and electronic map matching method designed in this paper can improve the fusion expression accuracy of train positioning on electronic maps, achieving the predetermined goal.</p>
<p> </p>
Title: Research on Railway Train Space Position Correction Algorithm Based on
GNSS Correction Model
Description:
<p>The traditional railway train positioning methods mainly include three methods: speed sensor based, ground point responder response, and track circuit section occupancy detection.
However, the traditional positioning method does not respond in a timely manner and is gradually being replaced by new positioning methods.
With the development of high-speed rail in China, the Global Navigation Satellite System (GNSS) is gradually being implemented as a new positioning system for railway trains, and auxiliary technologies such as train accelerometers and odometry are integrated to ensure the safe operation of trains.
However, GNSS can meet the positioning accuracy requirements in strong signal areas, but the positioning accuracy of trains is lower in weak signal or no satellite signal environments, resulting in certain positioning errors or noise, which cannot meet the needs of analysis and decision-making in geographic information systems.
This paper uses the Unscented Kalman Filter algorithm to improve and design a GNSS based positioning correction model.
Based on railway network GIS data, an electronic map spatial position correction matching method is proposed to improve and solve the problem of train positioning accuracy errors in weak signal environments.
After experimental research, the GNSS positioning correction model and electronic map matching method designed in this paper can improve the fusion expression accuracy of train positioning on electronic maps, achieving the predetermined goal.
</p>
<p> </p>.
Related Results
GNSS-Based Train Trajectory Simulation System
GNSS-Based Train Trajectory Simulation System
Integrating Global Navigation Satellite System (GNSS) into railway application has a great potential because of its various advantages, such as lower cost, less trackside equipment...
GNSS reflectometry for land remote sensing applications
GNSS reflectometry for land remote sensing applications
Soil moisture and vegetation biomass are two essential parameters from a scienti c and economical point of view. On one hand, they are key for the understanding of the hydrological...
GNSS-based orbit and geodetic parameter estimation by means of simulated GENESIS data
GNSS-based orbit and geodetic parameter estimation by means of simulated GENESIS data
The ESA GENESIS mission, which obtained green light at ESA's Council Meeting at Ministerial Level in November 2022 and which is expected to be launched in 2027, aims to significant...
Impact of GNSS singular events on the integrity of airport navigation systems
Impact of GNSS singular events on the integrity of airport navigation systems
Impact des évènements singuliers GNSS sur l'intégrité des systèmes de navigation aéroportuaires
Les systèmes GNSS sont actuellement utilisés en aviation civil...
Correcting geocenter motion in GNSS solutions by combining with satellite laser ranging data
Correcting geocenter motion in GNSS solutions by combining with satellite laser ranging data
Abstract
Geocenter motion in GNSS solutions is ill-defined because of the GNSS orbit modeling errors. Especially, the Z geocenter component derived from GNSS data...
Development of GNSS/INS/SLAM Algorithms for Navigation in Constrained Environments
Development of GNSS/INS/SLAM Algorithms for Navigation in Constrained Environments
Développement d'algorithmes GNSS/INS/SLAM pour la navigation en milieux contraints
Les exigences en termes de précision, intégrité, continuité et disponibilité de l...
A GNSS/INS/LiDAR Integration Scheme for UAV-Based Navigation in GNSS-Challenging Environments
A GNSS/INS/LiDAR Integration Scheme for UAV-Based Navigation in GNSS-Challenging Environments
Unmanned aerial vehicle (UAV) navigation has recently been the focus of many studies. The most challenging aspect of UAV navigation is maintaining accurate and reliable pose estima...
Comparison of Accuracy Aerial Photography UAV (Unmanned Aerial Vehicle) and GNSS (Global Navigation Satelitte System) for Mapping of Lambarih Village, Aceh Besar, Aceh
Comparison of Accuracy Aerial Photography UAV (Unmanned Aerial Vehicle) and GNSS (Global Navigation Satelitte System) for Mapping of Lambarih Village, Aceh Besar, Aceh
UAV (Unmaned Aerial Vehicle) atau yang biasa disebut drone saat ini telah banyak digunakan untuk pemetaan wilayah di Indonesia. Salah satu metode penentuan posisi satelit GNSS (Glo...

