Alert button
Picture for Peter Sunehag

Peter Sunehag

Alert button

A Review of Cooperation in Multi-agent Learning

Add code
Bookmark button
Alert button
Dec 08, 2023
Yali Du, Joel Z. Leibo, Usman Islam, Richard Willis, Peter Sunehag

Viaarxiv icon

Diversity Through Exclusion (DTE): Niche Identification for Reinforcement Learning through Value-Decomposition

Add code
Bookmark button
Alert button
Feb 03, 2023
Peter Sunehag, Alexander Sasha Vezhnevets, Edgar Duéñez-Guzmán, Igor Mordach, Joel Z. Leibo

Figure 1 for Diversity Through Exclusion (DTE): Niche Identification for Reinforcement Learning through Value-Decomposition
Figure 2 for Diversity Through Exclusion (DTE): Niche Identification for Reinforcement Learning through Value-Decomposition
Figure 3 for Diversity Through Exclusion (DTE): Niche Identification for Reinforcement Learning through Value-Decomposition
Figure 4 for Diversity Through Exclusion (DTE): Niche Identification for Reinforcement Learning through Value-Decomposition
Viaarxiv icon

Melting Pot 2.0

Add code
Bookmark button
Alert button
Dec 13, 2022
John P. Agapiou, Alexander Sasha Vezhnevets, Edgar A. Duéñez-Guzmán, Jayd Matyas, Yiran Mao, Peter Sunehag, Raphael Köster, Udari Madhushani, Kavya Kopparapu, Ramona Comanescu, DJ Strouse, Michael B. Johanson, Sukhdeep Singh, Julia Haas, Igor Mordatch, Dean Mobbs, Joel Z. Leibo

Figure 1 for Melting Pot 2.0
Figure 2 for Melting Pot 2.0
Figure 3 for Melting Pot 2.0
Figure 4 for Melting Pot 2.0
Viaarxiv icon

Scalable Evaluation of Multi-Agent Reinforcement Learning with Melting Pot

Add code
Bookmark button
Alert button
Jul 14, 2021
Joel Z. Leibo, Edgar Duéñez-Guzmán, Alexander Sasha Vezhnevets, John P. Agapiou, Peter Sunehag, Raphael Koster, Jayd Matyas, Charles Beattie, Igor Mordatch, Thore Graepel

Figure 1 for Scalable Evaluation of Multi-Agent Reinforcement Learning with Melting Pot
Figure 2 for Scalable Evaluation of Multi-Agent Reinforcement Learning with Melting Pot
Figure 3 for Scalable Evaluation of Multi-Agent Reinforcement Learning with Melting Pot
Figure 4 for Scalable Evaluation of Multi-Agent Reinforcement Learning with Melting Pot
Viaarxiv icon

Learning to Incentivize Other Learning Agents

Add code
Bookmark button
Alert button
Jun 10, 2020
Jiachen Yang, Ang Li, Mehrdad Farajtabar, Peter Sunehag, Edward Hughes, Hongyuan Zha

Figure 1 for Learning to Incentivize Other Learning Agents
Figure 2 for Learning to Incentivize Other Learning Agents
Figure 3 for Learning to Incentivize Other Learning Agents
Figure 4 for Learning to Incentivize Other Learning Agents
Viaarxiv icon

Malthusian Reinforcement Learning

Add code
Bookmark button
Alert button
Dec 17, 2018
Joel Z. Leibo, Julien Perolat, Edward Hughes, Steven Wheelwright, Adam H. Marblestone, Edgar Duéñez-Guzmán, Peter Sunehag, Iain Dunning, Thore Graepel

Figure 1 for Malthusian Reinforcement Learning
Figure 2 for Malthusian Reinforcement Learning
Figure 3 for Malthusian Reinforcement Learning
Figure 4 for Malthusian Reinforcement Learning
Viaarxiv icon

Value-Decomposition Networks For Cooperative Multi-Agent Learning

Add code
Bookmark button
Alert button
Jun 16, 2017
Peter Sunehag, Guy Lever, Audrunas Gruslys, Wojciech Marian Czarnecki, Vinicius Zambaldi, Max Jaderberg, Marc Lanctot, Nicolas Sonnerat, Joel Z. Leibo, Karl Tuyls, Thore Graepel

Figure 1 for Value-Decomposition Networks For Cooperative Multi-Agent Learning
Figure 2 for Value-Decomposition Networks For Cooperative Multi-Agent Learning
Viaarxiv icon

Deep Reinforcement Learning in Large Discrete Action Spaces

Add code
Bookmark button
Alert button
Apr 04, 2016
Gabriel Dulac-Arnold, Richard Evans, Hado van Hasselt, Peter Sunehag, Timothy Lillicrap, Jonathan Hunt, Timothy Mann, Theophane Weber, Thomas Degris, Ben Coppin

Figure 1 for Deep Reinforcement Learning in Large Discrete Action Spaces
Figure 2 for Deep Reinforcement Learning in Large Discrete Action Spaces
Figure 3 for Deep Reinforcement Learning in Large Discrete Action Spaces
Figure 4 for Deep Reinforcement Learning in Large Discrete Action Spaces
Viaarxiv icon

Deep Reinforcement Learning with Attention for Slate Markov Decision Processes with High-Dimensional States and Actions

Add code
Bookmark button
Alert button
Dec 16, 2015
Peter Sunehag, Richard Evans, Gabriel Dulac-Arnold, Yori Zwols, Daniel Visentin, Ben Coppin

Figure 1 for Deep Reinforcement Learning with Attention for Slate Markov Decision Processes with High-Dimensional States and Actions
Figure 2 for Deep Reinforcement Learning with Attention for Slate Markov Decision Processes with High-Dimensional States and Actions
Figure 3 for Deep Reinforcement Learning with Attention for Slate Markov Decision Processes with High-Dimensional States and Actions
Figure 4 for Deep Reinforcement Learning with Attention for Slate Markov Decision Processes with High-Dimensional States and Actions
Viaarxiv icon

The Sample-Complexity of General Reinforcement Learning

Add code
Bookmark button
Alert button
Aug 22, 2013
Tor Lattimore, Marcus Hutter, Peter Sunehag

Figure 1 for The Sample-Complexity of General Reinforcement Learning
Figure 2 for The Sample-Complexity of General Reinforcement Learning
Figure 3 for The Sample-Complexity of General Reinforcement Learning
Viaarxiv icon