Alert button
Picture for Brian McWilliams

Brian McWilliams

Alert button

MusicRL: Aligning Music Generation to Human Preferences

Add code
Bookmark button
Alert button
Feb 06, 2024
Geoffrey Cideron, Sertan Girgin, Mauro Verzetti, Damien Vincent, Matej Kastelic, Zalán Borsos, Brian McWilliams, Victor Ungureanu, Olivier Bachem, Olivier Pietquin, Matthieu Geist, Léonard Hussenot, Neil Zeghidour, Andrea Agostinelli

Viaarxiv icon

TwHIN-BERT: A Socially-Enriched Pre-trained Language Model for Multilingual Tweet Representations

Add code
Bookmark button
Alert button
Sep 15, 2022
Xinyang Zhang, Yury Malkov, Omar Florez, Serim Park, Brian McWilliams, Jiawei Han, Ahmed El-Kishky

Figure 1 for TwHIN-BERT: A Socially-Enriched Pre-trained Language Model for Multilingual Tweet Representations
Figure 2 for TwHIN-BERT: A Socially-Enriched Pre-trained Language Model for Multilingual Tweet Representations
Figure 3 for TwHIN-BERT: A Socially-Enriched Pre-trained Language Model for Multilingual Tweet Representations
Figure 4 for TwHIN-BERT: A Socially-Enriched Pre-trained Language Model for Multilingual Tweet Representations
Viaarxiv icon

The Generalized Eigenvalue Problem as a Nash Equilibrium

Add code
Bookmark button
Alert button
Jun 10, 2022
Ian Gemp, Charlie Chen, Brian McWilliams

Figure 1 for The Generalized Eigenvalue Problem as a Nash Equilibrium
Figure 2 for The Generalized Eigenvalue Problem as a Nash Equilibrium
Figure 3 for The Generalized Eigenvalue Problem as a Nash Equilibrium
Figure 4 for The Generalized Eigenvalue Problem as a Nash Equilibrium
Viaarxiv icon

Pushing the limits of self-supervised ResNets: Can we outperform supervised learning without labels on ImageNet?

Add code
Bookmark button
Alert button
Jan 13, 2022
Nenad Tomasev, Ioana Bica, Brian McWilliams, Lars Buesing, Razvan Pascanu, Charles Blundell, Jovana Mitrovic

Figure 1 for Pushing the limits of self-supervised ResNets: Can we outperform supervised learning without labels on ImageNet?
Figure 2 for Pushing the limits of self-supervised ResNets: Can we outperform supervised learning without labels on ImageNet?
Figure 3 for Pushing the limits of self-supervised ResNets: Can we outperform supervised learning without labels on ImageNet?
Figure 4 for Pushing the limits of self-supervised ResNets: Can we outperform supervised learning without labels on ImageNet?
Viaarxiv icon

EigenGame Unloaded: When playing games is better than optimizing

Add code
Bookmark button
Alert button
Feb 08, 2021
Ian Gemp, Brian McWilliams, Claire Vernade, Thore Graepel

Figure 1 for EigenGame Unloaded: When playing games is better than optimizing
Figure 2 for EigenGame Unloaded: When playing games is better than optimizing
Figure 3 for EigenGame Unloaded: When playing games is better than optimizing
Figure 4 for EigenGame Unloaded: When playing games is better than optimizing
Viaarxiv icon

Representation Learning via Invariant Causal Mechanisms

Add code
Bookmark button
Alert button
Oct 15, 2020
Jovana Mitrovic, Brian McWilliams, Jacob Walker, Lars Buesing, Charles Blundell

Figure 1 for Representation Learning via Invariant Causal Mechanisms
Figure 2 for Representation Learning via Invariant Causal Mechanisms
Figure 3 for Representation Learning via Invariant Causal Mechanisms
Figure 4 for Representation Learning via Invariant Causal Mechanisms
Viaarxiv icon

EigenGame: PCA as a Nash Equilibrium

Add code
Bookmark button
Alert button
Oct 01, 2020
Ian Gemp, Brian McWilliams, Claire Vernade, Thore Graepel

Figure 1 for EigenGame: PCA as a Nash Equilibrium
Figure 2 for EigenGame: PCA as a Nash Equilibrium
Figure 3 for EigenGame: PCA as a Nash Equilibrium
Figure 4 for EigenGame: PCA as a Nash Equilibrium
Viaarxiv icon

Social diversity and social preferences in mixed-motive reinforcement learning

Add code
Bookmark button
Alert button
Feb 12, 2020
Kevin R. McKee, Ian Gemp, Brian McWilliams, Edgar A. Duéñez-Guzmán, Edward Hughes, Joel Z. Leibo

Figure 1 for Social diversity and social preferences in mixed-motive reinforcement learning
Figure 2 for Social diversity and social preferences in mixed-motive reinforcement learning
Figure 3 for Social diversity and social preferences in mixed-motive reinforcement learning
Figure 4 for Social diversity and social preferences in mixed-motive reinforcement learning
Viaarxiv icon

Social Diversity and Social Preferences in Mixed-Motive Reinforcement Learning

Add code
Bookmark button
Alert button
Feb 06, 2020
Kevin R. McKee, Ian Gemp, Brian McWilliams, Edgar A. Duéñez-Guzmán, Edward Hughes, Joel Z. Leibo

Figure 1 for Social Diversity and Social Preferences in Mixed-Motive Reinforcement Learning
Figure 2 for Social Diversity and Social Preferences in Mixed-Motive Reinforcement Learning
Figure 3 for Social Diversity and Social Preferences in Mixed-Motive Reinforcement Learning
Figure 4 for Social Diversity and Social Preferences in Mixed-Motive Reinforcement Learning
Viaarxiv icon

Spectrogram Feature Losses for Music Source Separation

Add code
Bookmark button
Alert button
Jan 18, 2019
Abhimanyu Sahai, Romann Weber, Brian McWilliams

Figure 1 for Spectrogram Feature Losses for Music Source Separation
Figure 2 for Spectrogram Feature Losses for Music Source Separation
Figure 3 for Spectrogram Feature Losses for Music Source Separation
Figure 4 for Spectrogram Feature Losses for Music Source Separation
Viaarxiv icon