Alert button
Picture for Kentaro Oguchi

Kentaro Oguchi

Alert button

Generalizing Cooperative Eco-driving via Multi-residual Task Learning

Add code
Bookmark button
Alert button
Mar 07, 2024
Vindula Jayawardana, Sirui Li, Cathy Wu, Yashar Farid, Kentaro Oguchi

Figure 1 for Generalizing Cooperative Eco-driving via Multi-residual Task Learning
Figure 2 for Generalizing Cooperative Eco-driving via Multi-residual Task Learning
Figure 3 for Generalizing Cooperative Eco-driving via Multi-residual Task Learning
Figure 4 for Generalizing Cooperative Eco-driving via Multi-residual Task Learning
Viaarxiv icon

Cooperverse: A Mobile-Edge-Cloud Framework for Universal Cooperative Perception with Mixed Connectivity and Automation

Add code
Bookmark button
Alert button
Feb 06, 2023
Zhengwei Bai, Guoyuan Wu, Matthew J. Barth, Yongkang Liu, Emrah Akin Sisbot, Kentaro Oguchi

Figure 1 for Cooperverse: A Mobile-Edge-Cloud Framework for Universal Cooperative Perception with Mixed Connectivity and Automation
Figure 2 for Cooperverse: A Mobile-Edge-Cloud Framework for Universal Cooperative Perception with Mixed Connectivity and Automation
Figure 3 for Cooperverse: A Mobile-Edge-Cloud Framework for Universal Cooperative Perception with Mixed Connectivity and Automation
Figure 4 for Cooperverse: A Mobile-Edge-Cloud Framework for Universal Cooperative Perception with Mixed Connectivity and Automation
Viaarxiv icon

VINet: Lightweight, Scalable, and Heterogeneous Cooperative Perception for 3D Object Detection

Add code
Bookmark button
Alert button
Dec 14, 2022
Zhengwei Bai, Guoyuan Wu, Matthew J. Barth, Yongkang Liu, Emrah Akin Sisbot, Kentaro Oguchi

Figure 1 for VINet: Lightweight, Scalable, and Heterogeneous Cooperative Perception for 3D Object Detection
Figure 2 for VINet: Lightweight, Scalable, and Heterogeneous Cooperative Perception for 3D Object Detection
Figure 3 for VINet: Lightweight, Scalable, and Heterogeneous Cooperative Perception for 3D Object Detection
Figure 4 for VINet: Lightweight, Scalable, and Heterogeneous Cooperative Perception for 3D Object Detection
Viaarxiv icon

A Survey and Framework of Cooperative Perception: From Heterogeneous Singleton to Hierarchical Cooperation

Add code
Bookmark button
Alert button
Aug 22, 2022
Zhengwei Bai, Guoyuan Wu, Matthew J. Barth, Yongkang Liu, Emrah Akin Sisbot, Kentaro Oguchi, Zhitong Huang

Figure 1 for A Survey and Framework of Cooperative Perception: From Heterogeneous Singleton to Hierarchical Cooperation
Figure 2 for A Survey and Framework of Cooperative Perception: From Heterogeneous Singleton to Hierarchical Cooperation
Figure 3 for A Survey and Framework of Cooperative Perception: From Heterogeneous Singleton to Hierarchical Cooperation
Figure 4 for A Survey and Framework of Cooperative Perception: From Heterogeneous Singleton to Hierarchical Cooperation
Viaarxiv icon

Cyber Mobility Mirror: A Deep Learning-based Real-World Object Perception Platform Using Roadside LiDAR

Add code
Bookmark button
Alert button
Apr 07, 2022
Zhengwei Bai, Saswat Priyadarshi Nayak, Xuanpeng Zhao, Guoyuan Wu, Matthew J. Barth, Xuewei Qi, Yongkang Liu, Emrah Akin Sisbot, Kentaro Oguchi

Figure 1 for Cyber Mobility Mirror: A Deep Learning-based Real-World Object Perception Platform Using Roadside LiDAR
Figure 2 for Cyber Mobility Mirror: A Deep Learning-based Real-World Object Perception Platform Using Roadside LiDAR
Figure 3 for Cyber Mobility Mirror: A Deep Learning-based Real-World Object Perception Platform Using Roadside LiDAR
Figure 4 for Cyber Mobility Mirror: A Deep Learning-based Real-World Object Perception Platform Using Roadside LiDAR
Viaarxiv icon

PillarGrid: Deep Learning-based Cooperative Perception for 3D Object Detection from Onboard-Roadside LiDAR

Add code
Bookmark button
Alert button
Mar 19, 2022
Zhengwei Bai, Guoyuan Wu, Matthew J. Barth, Yongkang Liu, Emrah Akin Sisbot, Kentaro Oguchi

Figure 1 for PillarGrid: Deep Learning-based Cooperative Perception for 3D Object Detection from Onboard-Roadside LiDAR
Figure 2 for PillarGrid: Deep Learning-based Cooperative Perception for 3D Object Detection from Onboard-Roadside LiDAR
Figure 3 for PillarGrid: Deep Learning-based Cooperative Perception for 3D Object Detection from Onboard-Roadside LiDAR
Figure 4 for PillarGrid: Deep Learning-based Cooperative Perception for 3D Object Detection from Onboard-Roadside LiDAR
Viaarxiv icon

Spatiotemporal Transformer Attention Network for 3D Voxel Level Joint Segmentation and Motion Prediction in Point Cloud

Add code
Bookmark button
Alert button
Feb 28, 2022
Zhensong Wei, Xuewei Qi, Zhengwei Bai, Guoyuan Wu, Saswat Nayak, Peng Hao, Matthew Barth, Yongkang Liu, Kentaro Oguchi

Figure 1 for Spatiotemporal Transformer Attention Network for 3D Voxel Level Joint Segmentation and Motion Prediction in Point Cloud
Figure 2 for Spatiotemporal Transformer Attention Network for 3D Voxel Level Joint Segmentation and Motion Prediction in Point Cloud
Figure 3 for Spatiotemporal Transformer Attention Network for 3D Voxel Level Joint Segmentation and Motion Prediction in Point Cloud
Figure 4 for Spatiotemporal Transformer Attention Network for 3D Voxel Level Joint Segmentation and Motion Prediction in Point Cloud
Viaarxiv icon

Infrastructure-Based Object Detection and Tracking for Cooperative Driving Automation: A Survey

Add code
Bookmark button
Alert button
Jan 28, 2022
Zhengwei Bai, Guoyuan Wu, Xuewei Qi, Yongkang Liu, Kentaro Oguchi, Matthew J. Barth

Figure 1 for Infrastructure-Based Object Detection and Tracking for Cooperative Driving Automation: A Survey
Figure 2 for Infrastructure-Based Object Detection and Tracking for Cooperative Driving Automation: A Survey
Figure 3 for Infrastructure-Based Object Detection and Tracking for Cooperative Driving Automation: A Survey
Viaarxiv icon

Cyber Mobility Mirror for Enabling Cooperative Driving Automation: A Co-Simulation Platform

Add code
Bookmark button
Alert button
Jan 24, 2022
Zhengwei Bai, Guoyuan Wu, Xuewei Qi, Kentaro Oguchi, Matthew J. Barth

Figure 1 for Cyber Mobility Mirror for Enabling Cooperative Driving Automation: A Co-Simulation Platform
Figure 2 for Cyber Mobility Mirror for Enabling Cooperative Driving Automation: A Co-Simulation Platform
Figure 3 for Cyber Mobility Mirror for Enabling Cooperative Driving Automation: A Co-Simulation Platform
Figure 4 for Cyber Mobility Mirror for Enabling Cooperative Driving Automation: A Co-Simulation Platform
Viaarxiv icon

Accelerated Policy Evaluation: Learning Adversarial Environments with Adaptive Importance Sampling

Add code
Bookmark button
Alert button
Jun 19, 2021
Mengdi Xu, Peide Huang, Fengpei Li, Jiacheng Zhu, Xuewei Qi, Kentaro Oguchi, Zhiyuan Huang, Henry Lam, Ding Zhao

Figure 1 for Accelerated Policy Evaluation: Learning Adversarial Environments with Adaptive Importance Sampling
Figure 2 for Accelerated Policy Evaluation: Learning Adversarial Environments with Adaptive Importance Sampling
Figure 3 for Accelerated Policy Evaluation: Learning Adversarial Environments with Adaptive Importance Sampling
Figure 4 for Accelerated Policy Evaluation: Learning Adversarial Environments with Adaptive Importance Sampling
Viaarxiv icon