Alert button
Picture for Alexandre Bayen

Alexandre Bayen

Alert button

Enabling Mixed Autonomy Traffic Control

Add code
Bookmark button
Alert button
Oct 28, 2023
Matthew Nice, Matt Bunting, Alex Richardson, Gergely Zachar, Jonathan W. Lee, Alexandre Bayen, Maria Laura Delle Monache, Benjamin Seibold, Benedetto Piccoli, Jonathan Sprinkle, Dan Work

Viaarxiv icon

So you think you can track?

Add code
Bookmark button
Alert button
Sep 13, 2023
Derek Gloudemans, Gergely Zachár, Yanbing Wang, Junyi Ji, Matt Nice, Matt Bunting, William Barbour, Jonathan Sprinkle, Benedetto Piccoli, Maria Laura Delle Monache, Alexandre Bayen, Benjamin Seibold, Daniel B. Work

Figure 1 for So you think you can track?
Figure 2 for So you think you can track?
Figure 3 for So you think you can track?
Figure 4 for So you think you can track?
Viaarxiv icon

Decentralized Vehicle Coordination: The Berkeley DeepDrive Drone Dataset

Add code
Bookmark button
Alert button
Sep 22, 2022
Fangyu Wu, Dequan Wang, Minjune Hwang, Chenhui Hao, Jiawei Lu, Jiamu Zhang, Christopher Chou, Trevor Darrell, Alexandre Bayen

Figure 1 for Decentralized Vehicle Coordination: The Berkeley DeepDrive Drone Dataset
Figure 2 for Decentralized Vehicle Coordination: The Berkeley DeepDrive Drone Dataset
Figure 3 for Decentralized Vehicle Coordination: The Berkeley DeepDrive Drone Dataset
Figure 4 for Decentralized Vehicle Coordination: The Berkeley DeepDrive Drone Dataset
Viaarxiv icon

Multi-Adversarial Safety Analysis for Autonomous Vehicles

Add code
Bookmark button
Alert button
Dec 29, 2021
Gilbert Bahati, Marsalis Gibson, Alexandre Bayen

Figure 1 for Multi-Adversarial Safety Analysis for Autonomous Vehicles
Figure 2 for Multi-Adversarial Safety Analysis for Autonomous Vehicles
Figure 3 for Multi-Adversarial Safety Analysis for Autonomous Vehicles
Viaarxiv icon

The Surprising Effectiveness of MAPPO in Cooperative, Multi-Agent Games

Add code
Bookmark button
Alert button
Mar 02, 2021
Chao Yu, Akash Velu, Eugene Vinitsky, Yu Wang, Alexandre Bayen, Yi Wu

Figure 1 for The Surprising Effectiveness of MAPPO in Cooperative, Multi-Agent Games
Figure 2 for The Surprising Effectiveness of MAPPO in Cooperative, Multi-Agent Games
Figure 3 for The Surprising Effectiveness of MAPPO in Cooperative, Multi-Agent Games
Figure 4 for The Surprising Effectiveness of MAPPO in Cooperative, Multi-Agent Games
Viaarxiv icon

A Graph Convolutional Network with Signal Phasing Information for Arterial Traffic Prediction

Add code
Bookmark button
Alert button
Dec 25, 2020
Victor Chan, Qijian Gan, Alexandre Bayen

Figure 1 for A Graph Convolutional Network with Signal Phasing Information for Arterial Traffic Prediction
Figure 2 for A Graph Convolutional Network with Signal Phasing Information for Arterial Traffic Prediction
Figure 3 for A Graph Convolutional Network with Signal Phasing Information for Arterial Traffic Prediction
Figure 4 for A Graph Convolutional Network with Signal Phasing Information for Arterial Traffic Prediction
Viaarxiv icon

Emergent Complexity and Zero-shot Transfer via Unsupervised Environment Design

Add code
Bookmark button
Alert button
Dec 03, 2020
Michael Dennis, Natasha Jaques, Eugene Vinitsky, Alexandre Bayen, Stuart Russell, Andrew Critch, Sergey Levine

Figure 1 for Emergent Complexity and Zero-shot Transfer via Unsupervised Environment Design
Figure 2 for Emergent Complexity and Zero-shot Transfer via Unsupervised Environment Design
Figure 3 for Emergent Complexity and Zero-shot Transfer via Unsupervised Environment Design
Figure 4 for Emergent Complexity and Zero-shot Transfer via Unsupervised Environment Design
Viaarxiv icon

Optimizing Mixed Autonomy Traffic Flow With Decentralized Autonomous Vehicles and Multi-Agent RL

Add code
Bookmark button
Alert button
Oct 30, 2020
Eugene Vinitsky, Nathan Lichtle, Kanaad Parvate, Alexandre Bayen

Figure 1 for Optimizing Mixed Autonomy Traffic Flow With Decentralized Autonomous Vehicles and Multi-Agent RL
Figure 2 for Optimizing Mixed Autonomy Traffic Flow With Decentralized Autonomous Vehicles and Multi-Agent RL
Figure 3 for Optimizing Mixed Autonomy Traffic Flow With Decentralized Autonomous Vehicles and Multi-Agent RL
Figure 4 for Optimizing Mixed Autonomy Traffic Flow With Decentralized Autonomous Vehicles and Multi-Agent RL
Viaarxiv icon

Robust Reinforcement Learning using Adversarial Populations

Add code
Bookmark button
Alert button
Aug 04, 2020
Eugene Vinitsky, Yuqing Du, Kanaad Parvate, Kathy Jang, Pieter Abbeel, Alexandre Bayen

Figure 1 for Robust Reinforcement Learning using Adversarial Populations
Figure 2 for Robust Reinforcement Learning using Adversarial Populations
Figure 3 for Robust Reinforcement Learning using Adversarial Populations
Figure 4 for Robust Reinforcement Learning using Adversarial Populations
Viaarxiv icon

Simulation to Scaled City: Zero-Shot Policy Transfer for Traffic Control via Autonomous Vehicles

Add code
Bookmark button
Alert button
Feb 22, 2019
Kathy Jang, Eugene Vinitsky, Behdad Chalaki, Ben Remer, Logan Beaver, Andreas Malikopoulos, Alexandre Bayen

Figure 1 for Simulation to Scaled City: Zero-Shot Policy Transfer for Traffic Control via Autonomous Vehicles
Figure 2 for Simulation to Scaled City: Zero-Shot Policy Transfer for Traffic Control via Autonomous Vehicles
Figure 3 for Simulation to Scaled City: Zero-Shot Policy Transfer for Traffic Control via Autonomous Vehicles
Figure 4 for Simulation to Scaled City: Zero-Shot Policy Transfer for Traffic Control via Autonomous Vehicles
Viaarxiv icon