Alert button
Picture for Peter Allen

Peter Allen

Alert button

Teleoperated Robot Grasping in Virtual Reality Spaces

Add code
Bookmark button
Alert button
Jan 30, 2023
Jiaheng Hu, David Watkins, Peter Allen

Figure 1 for Teleoperated Robot Grasping in Virtual Reality Spaces
Figure 2 for Teleoperated Robot Grasping in Virtual Reality Spaces
Figure 3 for Teleoperated Robot Grasping in Virtual Reality Spaces
Viaarxiv icon

Multiple View Performers for Shape Completion

Add code
Bookmark button
Alert button
Sep 13, 2022
David Watkins-Valls, Peter Allen, Krzysztof Choromanski, Jacob Varley, Nicholas Waytowich

Figure 1 for Multiple View Performers for Shape Completion
Figure 2 for Multiple View Performers for Shape Completion
Figure 3 for Multiple View Performers for Shape Completion
Figure 4 for Multiple View Performers for Shape Completion
Viaarxiv icon

CLAMGen: Closed-Loop Arm Motion Generation via Multi-view Vision-Based RL

Add code
Bookmark button
Alert button
Mar 24, 2021
Iretiayo Akinola, Zizhao Wang, Peter Allen

Figure 1 for CLAMGen: Closed-Loop Arm Motion Generation via Multi-view Vision-Based RL
Figure 2 for CLAMGen: Closed-Loop Arm Motion Generation via Multi-view Vision-Based RL
Figure 3 for CLAMGen: Closed-Loop Arm Motion Generation via Multi-view Vision-Based RL
Figure 4 for CLAMGen: Closed-Loop Arm Motion Generation via Multi-view Vision-Based RL
Viaarxiv icon

Maximizing BCI Human Feedback using Active Learning

Add code
Bookmark button
Alert button
Aug 11, 2020
Zizhao Wang, Junyao Shi, Iretiayo Akinola, Peter Allen

Figure 1 for Maximizing BCI Human Feedback using Active Learning
Figure 2 for Maximizing BCI Human Feedback using Active Learning
Figure 3 for Maximizing BCI Human Feedback using Active Learning
Figure 4 for Maximizing BCI Human Feedback using Active Learning
Viaarxiv icon

MAT: Multi-Fingered Adaptive Tactile Grasping via Deep Reinforcement Learning

Add code
Bookmark button
Alert button
Oct 10, 2019
Bohan Wu, Iretiayo Akinola, Jacob Varley, Peter Allen

Figure 1 for MAT: Multi-Fingered Adaptive Tactile Grasping via Deep Reinforcement Learning
Figure 2 for MAT: Multi-Fingered Adaptive Tactile Grasping via Deep Reinforcement Learning
Figure 3 for MAT: Multi-Fingered Adaptive Tactile Grasping via Deep Reinforcement Learning
Figure 4 for MAT: Multi-Fingered Adaptive Tactile Grasping via Deep Reinforcement Learning
Viaarxiv icon

Accelerated Robot Learning via Human Brain Signals

Add code
Bookmark button
Alert button
Oct 01, 2019
Iretiayo Akinola, Zizhao Wang, Junyao Shi, Xiaomin He, Pawan Lapborisuth, Jingxi Xu, David Watkins-Valls, Paul Sajda, Peter Allen

Figure 1 for Accelerated Robot Learning via Human Brain Signals
Figure 2 for Accelerated Robot Learning via Human Brain Signals
Figure 3 for Accelerated Robot Learning via Human Brain Signals
Figure 4 for Accelerated Robot Learning via Human Brain Signals
Viaarxiv icon

Learning Your Way Without Map or Compass: Panoramic Target Driven Visual Navigation

Add code
Bookmark button
Alert button
Sep 20, 2019
David Watkins-Valls, Jingxi Xu, Nicholas Waytowich, Peter Allen

Figure 1 for Learning Your Way Without Map or Compass: Panoramic Target Driven Visual Navigation
Figure 2 for Learning Your Way Without Map or Compass: Panoramic Target Driven Visual Navigation
Figure 3 for Learning Your Way Without Map or Compass: Panoramic Target Driven Visual Navigation
Figure 4 for Learning Your Way Without Map or Compass: Panoramic Target Driven Visual Navigation
Viaarxiv icon

Multi-Modal Geometric Learning for Grasping and Manipulation

Add code
Bookmark button
Alert button
Feb 27, 2019
David Watkins-Valls, Jacob Varley, Peter Allen

Figure 1 for Multi-Modal Geometric Learning for Grasping and Manipulation
Figure 2 for Multi-Modal Geometric Learning for Grasping and Manipulation
Figure 3 for Multi-Modal Geometric Learning for Grasping and Manipulation
Figure 4 for Multi-Modal Geometric Learning for Grasping and Manipulation
Viaarxiv icon

Human Robot Interface for Assistive Grasping

Add code
Bookmark button
Alert button
Apr 06, 2018
David Watkins-Valls, Chaiwen Chou, Caroline Weinberg, Jacob Varley, Kenneth Lyons, Sanjay Joshi, Lynne Weber, Joel Stein, Peter Allen

Figure 1 for Human Robot Interface for Assistive Grasping
Figure 2 for Human Robot Interface for Assistive Grasping
Figure 3 for Human Robot Interface for Assistive Grasping
Figure 4 for Human Robot Interface for Assistive Grasping
Viaarxiv icon