Alert button
Picture for Alisson H. Kolling

Alisson H. Kolling

Alert button

DoCRL: Double Critic Deep Reinforcement Learning for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Medium Transition

Add code
Bookmark button
Alert button
Aug 18, 2023
Ricardo B. Grando, Junior C. de Jesus, Victor A. Kich, Alisson H. Kolling, Rodrigo S. Guerra, Paulo L. J. Drews-Jr

Figure 1 for DoCRL: Double Critic Deep Reinforcement Learning for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Medium Transition
Figure 2 for DoCRL: Double Critic Deep Reinforcement Learning for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Medium Transition
Figure 3 for DoCRL: Double Critic Deep Reinforcement Learning for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Medium Transition
Viaarxiv icon

Jubileo: An Open-Source Robot and Framework for Research in Human-Robot Social Interaction

Add code
Bookmark button
Alert button
Sep 27, 2022
Jair A. Bottega, Victor A. Kich, Alisson H. Kolling, Jardel D. S. Dyonisio, Pedro L. Corçaque, Rodrigo da S. Guerra, Daniel F. T. Gamarra

Figure 1 for Jubileo: An Open-Source Robot and Framework for Research in Human-Robot Social Interaction
Figure 2 for Jubileo: An Open-Source Robot and Framework for Research in Human-Robot Social Interaction
Figure 3 for Jubileo: An Open-Source Robot and Framework for Research in Human-Robot Social Interaction
Figure 4 for Jubileo: An Open-Source Robot and Framework for Research in Human-Robot Social Interaction
Viaarxiv icon

Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Deep Reinforcement Learning Through Environmental Generalization

Add code
Bookmark button
Alert button
Sep 13, 2022
Ricardo B. Grando, Junior C. de Jesus, Victor A. Kich, Alisson H. Kolling, Rodrigo S. Guerra, Paulo L. J. Drews-Jr

Figure 1 for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Deep Reinforcement Learning Through Environmental Generalization
Figure 2 for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Deep Reinforcement Learning Through Environmental Generalization
Figure 3 for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Deep Reinforcement Learning Through Environmental Generalization
Figure 4 for Mapless Navigation of a Hybrid Aerial Underwater Vehicle with Deep Reinforcement Learning Through Environmental Generalization
Viaarxiv icon

Deterministic and Stochastic Analysis of Deep Reinforcement Learning for Low Dimensional Sensing-based Navigation of Mobile Robots

Add code
Bookmark button
Alert button
Sep 13, 2022
Ricardo B. Grando, Junior C. de Jesus, Victor A. Kich, Alisson H. Kolling, Rodrigo S. Guerra, Paulo L. J. Drews-Jr

Figure 1 for Deterministic and Stochastic Analysis of Deep Reinforcement Learning for Low Dimensional Sensing-based Navigation of Mobile Robots
Figure 2 for Deterministic and Stochastic Analysis of Deep Reinforcement Learning for Low Dimensional Sensing-based Navigation of Mobile Robots
Figure 3 for Deterministic and Stochastic Analysis of Deep Reinforcement Learning for Low Dimensional Sensing-based Navigation of Mobile Robots
Figure 4 for Deterministic and Stochastic Analysis of Deep Reinforcement Learning for Low Dimensional Sensing-based Navigation of Mobile Robots
Viaarxiv icon

Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction

Add code
Bookmark button
Alert button
Aug 13, 2022
Jair A. Bottega, Raul Steinmetz, Alisson H. Kolling, Victor A. Kich, Junior C. de Jesus, Ricardo B. Grando, Daniel F. T. Gamarra

Figure 1 for Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction
Figure 2 for Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction
Figure 3 for Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction
Figure 4 for Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction
Viaarxiv icon