Research on embodied-AI has flourished in recent years to make AI accessible to real-world information. Visual exploration is a very fundamental task in embodied-AI applications such as object-goal navigation, embodied questioning and answering (EQA), and rearrangement. However, it is still a challenging task. The frontier-based method is successful but it is difficult to use for reinforcement learning (RL). Moreover, it heavily relies on two-dimensional grid-map representation, therefore difficult to apply free movement in three-dimensional environments. We propose a novel reward for RGB-D camera-based exploration to maximize the amount of new information contained in the observations obtained from the camera. The basic idea of our method ...
Awarded with the Dr. Waldemar Jucker award 2020 of the GSTWhile vision in living beings is an active...
International audienceDeep Reinforcement Learning (DRL) is highly efficient for solving complex task...
Realistic long-horizon tasks like image-goal navigation involve exploratory and exploitative phases....
Embodied AI has been recently gaining attention as it aims to foster the development of autonomous a...
We propose an active vision system for object acquisition. The core of our approach is a reinforceme...
This work addresses the problem of exploration and coverage using visual inputs. Exploration and cov...
Learning to navigate in a realistic setting where an agent must rely solely on visual inputs is a ch...
Effective exploration is a challenge in reinforcement learning (RL). Novelty-based exploration metho...
Deep reinforcement learning (RL) has been successfully applied to a variety of game-like environment...
International audienceIn this work, we present a memory-augmented approach for image-goal navigation...
International audience3D points acquisitions based on robust sensors such as tactile or laser sensor...
We study the task of embodied visual active learning, where an agent is set to explore a 3d environm...
Existing work on Deep reinforcement learning-based visual navigation mainly focuses on autonomous ag...
1 reading a book using a laptop watching TV reading a book Figure 1: We predict regions in 3D scenes...
In the context of visual navigation, the capacity to map a novel environment is necessary for an age...
Awarded with the Dr. Waldemar Jucker award 2020 of the GSTWhile vision in living beings is an active...
International audienceDeep Reinforcement Learning (DRL) is highly efficient for solving complex task...
Realistic long-horizon tasks like image-goal navigation involve exploratory and exploitative phases....
Embodied AI has been recently gaining attention as it aims to foster the development of autonomous a...
We propose an active vision system for object acquisition. The core of our approach is a reinforceme...
This work addresses the problem of exploration and coverage using visual inputs. Exploration and cov...
Learning to navigate in a realistic setting where an agent must rely solely on visual inputs is a ch...
Effective exploration is a challenge in reinforcement learning (RL). Novelty-based exploration metho...
Deep reinforcement learning (RL) has been successfully applied to a variety of game-like environment...
International audienceIn this work, we present a memory-augmented approach for image-goal navigation...
International audience3D points acquisitions based on robust sensors such as tactile or laser sensor...
We study the task of embodied visual active learning, where an agent is set to explore a 3d environm...
Existing work on Deep reinforcement learning-based visual navigation mainly focuses on autonomous ag...
1 reading a book using a laptop watching TV reading a book Figure 1: We predict regions in 3D scenes...
In the context of visual navigation, the capacity to map a novel environment is necessary for an age...
Awarded with the Dr. Waldemar Jucker award 2020 of the GSTWhile vision in living beings is an active...
International audienceDeep Reinforcement Learning (DRL) is highly efficient for solving complex task...
Realistic long-horizon tasks like image-goal navigation involve exploratory and exploitative phases....