International audienceIndustry 4.0 transforms classical industrial systems into more human-centric and digitized systems. Close human–robot collaboration is becoming more frequent, which means security and efficiency issues need to be carefully considered. In this paper, we propose to equip robots with exteroceptive sensors and online motion generation so that the robot is able to perceive and predict human trajectories and react to the motion of the human in order to reduce the occurrence of the collisions. The dataset for training is generated in a real environment in which a human and a robot are sharing their workspace. An Encoder–Decoder based network is proposed to predict the human hand trajectories. A Model Predictive Control (MPC) ...
In this paper, we propose an exteroceptive sensing based framework to achieve safe human-robot inter...
Human safety is the most important re-quirement for human robot cooperation (HRC). Al-though all kin...
Thesis: Ph. D. in Autonomous Systems, Massachusetts Institute of Technology, Department of Aeronauti...
International audienceIndustry 4.0 transforms classical industrial systems into more human-centric a...
International audienceIndustry 4.0 transforms classical industrial systems into more human-centric a...
International audienceWith new, safer manipulator robots, the probability of serious injury due to c...
International audienceWith new, safer manipulator robots, the probability of serious injury due to c...
Traditionally safety in industrial manufacturing environments has been addressed by rigid separation...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
Human–Robot Interaction (HRI) for collaborative robots has become an active research topic recently....
The raise of collaborative robotics has allowed to create new spaces where robots and humans work in...
In the context of human-robot collaboration in close proximity, safety and comfort are the two impor...
This paper presents a complete motion control system for industrial manipulators, designed to maximi...
In this paper, we propose an exteroceptive sensing based framework to achieve safe human-robot inter...
Human safety is the most important re-quirement for human robot cooperation (HRC). Al-though all kin...
Thesis: Ph. D. in Autonomous Systems, Massachusetts Institute of Technology, Department of Aeronauti...
International audienceIndustry 4.0 transforms classical industrial systems into more human-centric a...
International audienceIndustry 4.0 transforms classical industrial systems into more human-centric a...
International audienceWith new, safer manipulator robots, the probability of serious injury due to c...
International audienceWith new, safer manipulator robots, the probability of serious injury due to c...
Traditionally safety in industrial manufacturing environments has been addressed by rigid separation...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
With the development of robot technology and the arrival of industry 4.0 era, society pays more atte...
Human–Robot Interaction (HRI) for collaborative robots has become an active research topic recently....
The raise of collaborative robotics has allowed to create new spaces where robots and humans work in...
In the context of human-robot collaboration in close proximity, safety and comfort are the two impor...
This paper presents a complete motion control system for industrial manipulators, designed to maximi...
In this paper, we propose an exteroceptive sensing based framework to achieve safe human-robot inter...
Human safety is the most important re-quirement for human robot cooperation (HRC). Al-though all kin...
Thesis: Ph. D. in Autonomous Systems, Massachusetts Institute of Technology, Department of Aeronauti...