This paper presents a low-cost real-time lane-determination system that fuses micro-electromechanical systems inertial sensors (accelerometers and gyroscopes), global navigation satellite system (GNSS), and commercially available road network maps. The system can be used for intelligent transportation systems, telematics applications, and autonomous driving. The system does not depend on visual markings or highly precise GNSS technology, such as DGPS or RTK, and it does not need explicit lane-level resolution maps. High-resolution estimation of the vehicle's position, velocity, and orientation is implemented by fusing inertial sensors with GNSS in a loosely coupled mode using extended Kalman filter. A curve-to-curve road-level map-matching ...
For their complete realization, autonomous vehicles (AVs) fundamentally rely on the Global Navigatio...
A vehicular position and attitude estimation technique is presented that tightly couples multi-anten...
Land vehicle navigation system technology is a subject of great interest today. Global Positioning S...
Nowadays, it is common that road vehicle navigation systems employ maps to represent the vehicle pos...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
Vehicle self-positioning is of significant importance for intelligent transportation applications. H...
An inherent problem in navigation is that position can never be known exactly, only estimated. The a...
Lane-level positioning and map matching are some of the biggest challenges for navigation systems. A...
The low-cost global navigation satellite systems combined with an inertial navigation system (GNSS/I...
The lane-level localization of vehicles with low-cost sensors is a challenging task. In situations i...
International audienceCar navigation performance improvement is a subject of great interest nowadays...
Self-localization is a crucial task for intelligent vehicles. Existing localization methods usually ...
With the emerging interest of autonomous vehicles (AV), the performance and reliability of the land ...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
For their complete realization, autonomous vehicles (AVs) fundamentally rely on the Global Navigatio...
A vehicular position and attitude estimation technique is presented that tightly couples multi-anten...
Land vehicle navigation system technology is a subject of great interest today. Global Positioning S...
Nowadays, it is common that road vehicle navigation systems employ maps to represent the vehicle pos...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
Vehicle self-positioning is of significant importance for intelligent transportation applications. H...
An inherent problem in navigation is that position can never be known exactly, only estimated. The a...
Lane-level positioning and map matching are some of the biggest challenges for navigation systems. A...
The low-cost global navigation satellite systems combined with an inertial navigation system (GNSS/I...
The lane-level localization of vehicles with low-cost sensors is a challenging task. In situations i...
International audienceCar navigation performance improvement is a subject of great interest nowadays...
Self-localization is a crucial task for intelligent vehicles. Existing localization methods usually ...
With the emerging interest of autonomous vehicles (AV), the performance and reliability of the land ...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
For their complete realization, autonomous vehicles (AVs) fundamentally rely on the Global Navigatio...
A vehicular position and attitude estimation technique is presented that tightly couples multi-anten...
Land vehicle navigation system technology is a subject of great interest today. Global Positioning S...