The high request for autonomous human-robot interaction (HRI), combined with the potential of machine learning (ML) techniques, allow us to deploy ML mechanisms in robot control. However, the use of ML can make robots' behavior unclear to the observer during the learning phase. Recently, transparency in HRI has been investigated to make such interactions more comprehensible. In this work, we propose a model to improve the transparency during reinforcement learning (RL) tasks for HRI scenarios: the model supports transparency by having the robot show nonverbal emotional-behavioral cues. Our model considered human feedback as the reward of the RL algorithm and it presents emotional-behavioral responses based on the progress of the robot learn...
We examine affective vocalizations provided by human teach-ers to robotic learners. In unscripted on...
International audienceDynamic uncontrolled human-robot interaction requires robots to be able to ada...
We are approaching a future where robots and humans will co-exist and co-adapt. To understand how ca...
The high request for autonomous human-robot interaction (HRI), combined with the potential of machin...
The high request for autonomous human-robot interaction (HRI), combined with the potential of machin...
As technology continues to evolve at a rapid pace, robots are becoming an increasingly common sight ...
AbstractWhile Reinforcement Learning (RL) is not traditionally designed for interactive supervisory ...
designed for interactive supervisory input from a human teacher, several works in both robot and sof...
As robots become a mass consumer product, they will need to learn new skills by interacting with typ...
AbstractWhile Reinforcement Learning (RL) is not traditionally designed for interactive supervisory ...
Abstract. Computer models can be used to investigate the role of emotion in learning. Here we presen...
Humans can leverage physical interaction to teach robot arms. This physical interaction takes multip...
Abstract In this paper, we present a human-robot teaching framework that uses “vir-tual ” games as a...
International audienceDynamic uncontrolled human-robot interaction requires robots to be able to ada...
We examine affective vocalizations provided by human teach-ers to robotic learners. In unscripted on...
We examine affective vocalizations provided by human teach-ers to robotic learners. In unscripted on...
International audienceDynamic uncontrolled human-robot interaction requires robots to be able to ada...
We are approaching a future where robots and humans will co-exist and co-adapt. To understand how ca...
The high request for autonomous human-robot interaction (HRI), combined with the potential of machin...
The high request for autonomous human-robot interaction (HRI), combined with the potential of machin...
As technology continues to evolve at a rapid pace, robots are becoming an increasingly common sight ...
AbstractWhile Reinforcement Learning (RL) is not traditionally designed for interactive supervisory ...
designed for interactive supervisory input from a human teacher, several works in both robot and sof...
As robots become a mass consumer product, they will need to learn new skills by interacting with typ...
AbstractWhile Reinforcement Learning (RL) is not traditionally designed for interactive supervisory ...
Abstract. Computer models can be used to investigate the role of emotion in learning. Here we presen...
Humans can leverage physical interaction to teach robot arms. This physical interaction takes multip...
Abstract In this paper, we present a human-robot teaching framework that uses “vir-tual ” games as a...
International audienceDynamic uncontrolled human-robot interaction requires robots to be able to ada...
We examine affective vocalizations provided by human teach-ers to robotic learners. In unscripted on...
We examine affective vocalizations provided by human teach-ers to robotic learners. In unscripted on...
International audienceDynamic uncontrolled human-robot interaction requires robots to be able to ada...
We are approaching a future where robots and humans will co-exist and co-adapt. To understand how ca...