Alert button
Picture for Lydia Tapia

Lydia Tapia

Alert button

Defensive Escort Teams via Multi-Agent Deep Reinforcement Learning

Add code
Bookmark button
Alert button
Oct 09, 2019
Arpit Garg, Yazied A. Hasan, Adam Yañez, Lydia Tapia

Figure 1 for Defensive Escort Teams via Multi-Agent Deep Reinforcement Learning
Figure 2 for Defensive Escort Teams via Multi-Agent Deep Reinforcement Learning
Figure 3 for Defensive Escort Teams via Multi-Agent Deep Reinforcement Learning
Figure 4 for Defensive Escort Teams via Multi-Agent Deep Reinforcement Learning
Viaarxiv icon

RL-RRT: Kinodynamic Motion Planning via Learning Reachability Estimators from RL Policies

Add code
Bookmark button
Alert button
Jul 12, 2019
Hao-Tien Lewis Chiang, Jasmine Hsu, Marek Fiser, Lydia Tapia, Aleksandra Faust

Figure 1 for RL-RRT: Kinodynamic Motion Planning via Learning Reachability Estimators from RL Policies
Figure 2 for RL-RRT: Kinodynamic Motion Planning via Learning Reachability Estimators from RL Policies
Figure 3 for RL-RRT: Kinodynamic Motion Planning via Learning Reachability Estimators from RL Policies
Figure 4 for RL-RRT: Kinodynamic Motion Planning via Learning Reachability Estimators from RL Policies
Viaarxiv icon

PEARL: PrEference Appraisal Reinforcement Learning for Motion Planning

Add code
Bookmark button
Alert button
Nov 30, 2018
Aleksandra Faust, Hao-Tien Lewis Chiang, Lydia Tapia

Figure 1 for PEARL: PrEference Appraisal Reinforcement Learning for Motion Planning
Figure 2 for PEARL: PrEference Appraisal Reinforcement Learning for Motion Planning
Figure 3 for PEARL: PrEference Appraisal Reinforcement Learning for Motion Planning
Figure 4 for PEARL: PrEference Appraisal Reinforcement Learning for Motion Planning
Viaarxiv icon

Resilient Computing with Reinforcement Learning on a Dynamical System: Case Study in Sorting

Add code
Bookmark button
Alert button
Sep 25, 2018
Aleksandra Faust, James B. Aimone, Conrad D. James, Lydia Tapia

Figure 1 for Resilient Computing with Reinforcement Learning on a Dynamical System: Case Study in Sorting
Figure 2 for Resilient Computing with Reinforcement Learning on a Dynamical System: Case Study in Sorting
Figure 3 for Resilient Computing with Reinforcement Learning on a Dynamical System: Case Study in Sorting
Figure 4 for Resilient Computing with Reinforcement Learning on a Dynamical System: Case Study in Sorting
Viaarxiv icon

Deep Neural Networks for Swept Volume Prediction Between Configurations

Add code
Bookmark button
Alert button
May 29, 2018
Hao-Tien Lewis Chiang, Aleksandra Faust, Lydia Tapia

Figure 1 for Deep Neural Networks for Swept Volume Prediction Between Configurations
Figure 2 for Deep Neural Networks for Swept Volume Prediction Between Configurations
Figure 3 for Deep Neural Networks for Swept Volume Prediction Between Configurations
Figure 4 for Deep Neural Networks for Swept Volume Prediction Between Configurations
Viaarxiv icon

PRM-RL: Long-range Robotic Navigation Tasks by Combining Reinforcement Learning and Sampling-based Planning

Add code
Bookmark button
Alert button
May 16, 2018
Aleksandra Faust, Oscar Ramirez, Marek Fiser, Kenneth Oslund, Anthony Francis, James Davidson, Lydia Tapia

Figure 1 for PRM-RL: Long-range Robotic Navigation Tasks by Combining Reinforcement Learning and Sampling-based Planning
Figure 2 for PRM-RL: Long-range Robotic Navigation Tasks by Combining Reinforcement Learning and Sampling-based Planning
Figure 3 for PRM-RL: Long-range Robotic Navigation Tasks by Combining Reinforcement Learning and Sampling-based Planning
Figure 4 for PRM-RL: Long-range Robotic Navigation Tasks by Combining Reinforcement Learning and Sampling-based Planning
Viaarxiv icon