Alert button
Picture for Victor Vaquero

Victor Vaquero

Alert button

Real-time safety assessment of trajectories for autonomous driving

Add code
Bookmark button
Alert button
May 05, 2021
Hoang Tung Dinh, Danilo Romano, Patrick Abrahao Menani, Victor Vaquero, Quentin De Clercq, Ramanujan Venkatadri, Nelson Quintana, Mario Torres

Figure 1 for Real-time safety assessment of trajectories for autonomous driving
Figure 2 for Real-time safety assessment of trajectories for autonomous driving
Figure 3 for Real-time safety assessment of trajectories for autonomous driving
Figure 4 for Real-time safety assessment of trajectories for autonomous driving
Viaarxiv icon

FuseMODNet: Real-Time Camera and LiDAR based Moving Object Detection for robust low-light Autonomous Driving

Add code
Bookmark button
Alert button
Nov 21, 2019
Hazem Rashed, Mohamed Ramzy, Victor Vaquero, Ahmad El Sallab, Ganesh Sistu, Senthil Yogamani

Figure 1 for FuseMODNet: Real-Time Camera and LiDAR based Moving Object Detection for robust low-light Autonomous Driving
Figure 2 for FuseMODNet: Real-Time Camera and LiDAR based Moving Object Detection for robust low-light Autonomous Driving
Figure 3 for FuseMODNet: Real-Time Camera and LiDAR based Moving Object Detection for robust low-light Autonomous Driving
Figure 4 for FuseMODNet: Real-Time Camera and LiDAR based Moving Object Detection for robust low-light Autonomous Driving
Viaarxiv icon

Improving Map Re-localization with Deep 'Movable' Objects Segmentation on 3D LiDAR Point Clouds

Add code
Bookmark button
Alert button
Oct 08, 2019
Victor Vaquero, Kai Fischer, Francesc Moreno-Noguer, Alberto Sanfeliu, Stefan Milz

Figure 1 for Improving Map Re-localization with Deep 'Movable' Objects Segmentation on 3D LiDAR Point Clouds
Figure 2 for Improving Map Re-localization with Deep 'Movable' Objects Segmentation on 3D LiDAR Point Clouds
Figure 3 for Improving Map Re-localization with Deep 'Movable' Objects Segmentation on 3D LiDAR Point Clouds
Figure 4 for Improving Map Re-localization with Deep 'Movable' Objects Segmentation on 3D LiDAR Point Clouds
Viaarxiv icon

Hallucinating Dense Optical Flow from Sparse Lidar for Autonomous Vehicles

Add code
Bookmark button
Alert button
Aug 30, 2018
Victor Vaquero, Alberto Sanfeliu, Francesc Moreno-Noguer

Figure 1 for Hallucinating Dense Optical Flow from Sparse Lidar for Autonomous Vehicles
Figure 2 for Hallucinating Dense Optical Flow from Sparse Lidar for Autonomous Vehicles
Figure 3 for Hallucinating Dense Optical Flow from Sparse Lidar for Autonomous Vehicles
Figure 4 for Hallucinating Dense Optical Flow from Sparse Lidar for Autonomous Vehicles
Viaarxiv icon

Deep Lidar CNN to Understand the Dynamics of Moving Vehicles

Add code
Bookmark button
Alert button
Aug 30, 2018
Victor Vaquero, Alberto Sanfeliu, Francesc Moreno-Noguer

Figure 1 for Deep Lidar CNN to Understand the Dynamics of Moving Vehicles
Figure 2 for Deep Lidar CNN to Understand the Dynamics of Moving Vehicles
Figure 3 for Deep Lidar CNN to Understand the Dynamics of Moving Vehicles
Figure 4 for Deep Lidar CNN to Understand the Dynamics of Moving Vehicles
Viaarxiv icon

Deconvolutional Networks for Point-Cloud Vehicle Detection and Tracking in Driving Scenarios

Add code
Bookmark button
Alert button
Aug 23, 2018
Victor Vaquero, Ivan del Pino, Francesc Moreno-Noguer, Joan Solà, Alberto Sanfeliu, Juan Andrade-Cetto

Figure 1 for Deconvolutional Networks for Point-Cloud Vehicle Detection and Tracking in Driving Scenarios
Figure 2 for Deconvolutional Networks for Point-Cloud Vehicle Detection and Tracking in Driving Scenarios
Figure 3 for Deconvolutional Networks for Point-Cloud Vehicle Detection and Tracking in Driving Scenarios
Figure 4 for Deconvolutional Networks for Point-Cloud Vehicle Detection and Tracking in Driving Scenarios
Viaarxiv icon

Joint Coarse-And-Fine Reasoning for Deep Optical Flow

Add code
Bookmark button
Alert button
Aug 22, 2018
Victor Vaquero, German Ros, Francesc Moreno-Noguer, Antonio M. Lopez, Alberto Sanfeliu

Figure 1 for Joint Coarse-And-Fine Reasoning for Deep Optical Flow
Figure 2 for Joint Coarse-And-Fine Reasoning for Deep Optical Flow
Figure 3 for Joint Coarse-And-Fine Reasoning for Deep Optical Flow
Figure 4 for Joint Coarse-And-Fine Reasoning for Deep Optical Flow
Viaarxiv icon