Merging is a challenging task for automated vehicles. This paper proposes a strategy for connected automated vehicles (CAVs) to guide merging on-ramp vehicles efficiently while ensuring safe interactions with the mainline vehicles. Point-mass kinematic models are used to describe 2-D vehicle motion and receding horizon control is used to generate optimal trajectories of interacting vehicles. The strategy determines the optimal merging time instant for merging vehicles and acceleration of all involved vehicles to minimize deviation from the preceding vehicles' speed, deviation from preferred inter-vehicle gaps, accelerations, and the time spent merging. The strategy builds on a pre-determined order of vehicles passing the conflict zone but i...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
Merging is a challenging task for automated vehicles. This paper proposes a strategy for connected a...
Connected Automated Vehicles (CAVs) have the potential to improve traffic operations when they coope...
This paper aims to optimize on-ramp merging processes for connected automated vehicles by utilizing ...
This paper aims to optimize on-ramp merging processes for connected automated vehicles by utilizing ...
This work develops two trajectory planning strategies for future connected automated vehicles (CAVs)...
One of the designs for future highways with mixed flow of connected automated vehicles (CAVs) and ma...
Improper handling of vehicle on-ramp merging may hinder traffic flow and contribute to lower fuel ec...
One of the designs for future highways with mixed flow of connected automated vehicles (CAVs) and ma...
Summarization: A major challenging issue related to the emerging mixed traffic vehicular system, com...
Connected and automated vehicles (CAVs) have attracted much attention of researchers because of its ...
The highway on-ramp merging area is one of the major sections that form traffic bottlenecks. In a co...
The use of connected autonomous vehicles (CAVs) can help reduce gaps between vehicles. However, smal...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
Merging is a challenging task for automated vehicles. This paper proposes a strategy for connected a...
Connected Automated Vehicles (CAVs) have the potential to improve traffic operations when they coope...
This paper aims to optimize on-ramp merging processes for connected automated vehicles by utilizing ...
This paper aims to optimize on-ramp merging processes for connected automated vehicles by utilizing ...
This work develops two trajectory planning strategies for future connected automated vehicles (CAVs)...
One of the designs for future highways with mixed flow of connected automated vehicles (CAVs) and ma...
Improper handling of vehicle on-ramp merging may hinder traffic flow and contribute to lower fuel ec...
One of the designs for future highways with mixed flow of connected automated vehicles (CAVs) and ma...
Summarization: A major challenging issue related to the emerging mixed traffic vehicular system, com...
Connected and automated vehicles (CAVs) have attracted much attention of researchers because of its ...
The highway on-ramp merging area is one of the major sections that form traffic bottlenecks. In a co...
The use of connected autonomous vehicles (CAVs) can help reduce gaps between vehicles. However, smal...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...
This paper presents a trajectory planning strategy for connected automated vehicles (CAVs) to cooper...