International audienceNavigating in complex and highly dynamic environments such as crowds is still a major challenge for autonomous vehicle such as autonomous wheelchairs or even autonomous cars. This article presents a new way of navigating in crowds by using behavioral clustering for the surrounding agents and representing the crowd as a set of moving polygons. Once the environment has been modelled in this way and the robot has all the information it needs, we then propose a navigation algorithm that is able to guide the vehicle through the scene. The key-points of this algorithm are that (1) it can avoid densely-populated areas in order to minimize the risk of being on a collision course with any of the surrounding dynamic obstacles, (...
This paper describes a trajectory planning algorithm for mobile robot navigation in crowded environm...
International audienceThe ACANTO project is developing robotic assistants to aid the mobility and re...
Mobile service robots are increasingly used in indoor environments (e.g., shopping malls or museums)...
International audienceNavigating in complex and highly dynamic environments such as crowds is still ...
This thesis presents a novel path planning algorithm for robotic crowd navigation through a pedestri...
We consider the problem of navigating a mobile robot through dense human crowds. We begin by explori...
Crowded human environments such as pedestrian scenes constitute challenging domains for mobile robot...
International audienceCrowded environments pose a challenge to the comfort and safety of those with ...
Autonomous navigation in highly populated areas remains a challenging task for robots because of the...
International audienceThis letter presents the result of a study aiming at investigating to what ext...
International audienceService robots have a great potential of improving human quality of life by ai...
International audienceA crucial requirement for service robots is to be able to move in dynamic envi...
We consider mobile robot navigation in dense human crowds. In particular, we explore two questions. ...
Autonomous navigation in crowded spaces poses a challenge for mobile robots due to the highly dynami...
Autonomous Mobile robots are increasingly populating our human environments. A safe and efficient na...
This paper describes a trajectory planning algorithm for mobile robot navigation in crowded environm...
International audienceThe ACANTO project is developing robotic assistants to aid the mobility and re...
Mobile service robots are increasingly used in indoor environments (e.g., shopping malls or museums)...
International audienceNavigating in complex and highly dynamic environments such as crowds is still ...
This thesis presents a novel path planning algorithm for robotic crowd navigation through a pedestri...
We consider the problem of navigating a mobile robot through dense human crowds. We begin by explori...
Crowded human environments such as pedestrian scenes constitute challenging domains for mobile robot...
International audienceCrowded environments pose a challenge to the comfort and safety of those with ...
Autonomous navigation in highly populated areas remains a challenging task for robots because of the...
International audienceThis letter presents the result of a study aiming at investigating to what ext...
International audienceService robots have a great potential of improving human quality of life by ai...
International audienceA crucial requirement for service robots is to be able to move in dynamic envi...
We consider mobile robot navigation in dense human crowds. In particular, we explore two questions. ...
Autonomous navigation in crowded spaces poses a challenge for mobile robots due to the highly dynami...
Autonomous Mobile robots are increasingly populating our human environments. A safe and efficient na...
This paper describes a trajectory planning algorithm for mobile robot navigation in crowded environm...
International audienceThe ACANTO project is developing robotic assistants to aid the mobility and re...
Mobile service robots are increasingly used in indoor environments (e.g., shopping malls or museums)...