Alert button
Picture for Qiangui Huang

Qiangui Huang

Alert button

Scalable Primitives for Generalized Sensor Fusion in Autonomous Vehicles

Add code
Bookmark button
Alert button
Dec 01, 2021
Sammy Sidhu, Linda Wang, Tayyab Naseer, Ashish Malhotra, Jay Chia, Aayush Ahuja, Ella Rasmussen, Qiangui Huang, Ray Gao

Figure 1 for Scalable Primitives for Generalized Sensor Fusion in Autonomous Vehicles
Figure 2 for Scalable Primitives for Generalized Sensor Fusion in Autonomous Vehicles
Figure 3 for Scalable Primitives for Generalized Sensor Fusion in Autonomous Vehicles
Figure 4 for Scalable Primitives for Generalized Sensor Fusion in Autonomous Vehicles
Viaarxiv icon

SafetyNet: Safe planning for real-world self-driving vehicles using machine-learned policies

Add code
Bookmark button
Alert button
Sep 28, 2021
Matt Vitelli, Yan Chang, Yawei Ye, Maciej Wołczyk, Błażej Osiński, Moritz Niendorf, Hugo Grimmett, Qiangui Huang, Ashesh Jain, Peter Ondruska

Figure 1 for SafetyNet: Safe planning for real-world self-driving vehicles using machine-learned policies
Figure 2 for SafetyNet: Safe planning for real-world self-driving vehicles using machine-learned policies
Figure 3 for SafetyNet: Safe planning for real-world self-driving vehicles using machine-learned policies
Figure 4 for SafetyNet: Safe planning for real-world self-driving vehicles using machine-learned policies
Viaarxiv icon

Recurrent Slice Networks for 3D Segmentation of Point Clouds

Add code
Bookmark button
Alert button
Mar 29, 2018
Qiangui Huang, Weiyue Wang, Ulrich Neumann

Figure 1 for Recurrent Slice Networks for 3D Segmentation of Point Clouds
Figure 2 for Recurrent Slice Networks for 3D Segmentation of Point Clouds
Figure 3 for Recurrent Slice Networks for 3D Segmentation of Point Clouds
Figure 4 for Recurrent Slice Networks for 3D Segmentation of Point Clouds
Viaarxiv icon

Learning to Prune Filters in Convolutional Neural Networks

Add code
Bookmark button
Alert button
Jan 23, 2018
Qiangui Huang, Kevin Zhou, Suya You, Ulrich Neumann

Figure 1 for Learning to Prune Filters in Convolutional Neural Networks
Figure 2 for Learning to Prune Filters in Convolutional Neural Networks
Figure 3 for Learning to Prune Filters in Convolutional Neural Networks
Figure 4 for Learning to Prune Filters in Convolutional Neural Networks
Viaarxiv icon

SGPN: Similarity Group Proposal Network for 3D Point Cloud Instance Segmentation

Add code
Bookmark button
Alert button
Nov 23, 2017
Weiyue Wang, Ronald Yu, Qiangui Huang, Ulrich Neumann

Figure 1 for SGPN: Similarity Group Proposal Network for 3D Point Cloud Instance Segmentation
Figure 2 for SGPN: Similarity Group Proposal Network for 3D Point Cloud Instance Segmentation
Figure 3 for SGPN: Similarity Group Proposal Network for 3D Point Cloud Instance Segmentation
Figure 4 for SGPN: Similarity Group Proposal Network for 3D Point Cloud Instance Segmentation
Viaarxiv icon

Shape Inpainting using 3D Generative Adversarial Network and Recurrent Convolutional Networks

Add code
Bookmark button
Alert button
Nov 17, 2017
Weiyue Wang, Qiangui Huang, Suya You, Chao Yang, Ulrich Neumann

Figure 1 for Shape Inpainting using 3D Generative Adversarial Network and Recurrent Convolutional Networks
Figure 2 for Shape Inpainting using 3D Generative Adversarial Network and Recurrent Convolutional Networks
Figure 3 for Shape Inpainting using 3D Generative Adversarial Network and Recurrent Convolutional Networks
Figure 4 for Shape Inpainting using 3D Generative Adversarial Network and Recurrent Convolutional Networks
Viaarxiv icon

Automatic Vertebra Labeling in Large-Scale 3D CT using Deep Image-to-Image Network with Message Passing and Sparsity Regularization

Add code
Bookmark button
Alert button
May 17, 2017
Dong Yang, Tao Xiong, Daguang Xu, Qiangui Huang, David Liu, S. Kevin Zhou, Zhoubing Xu, JinHyeong Park, Mingqing Chen, Trac D. Tran, Sang Peter Chin, Dimitris Metaxas, Dorin Comaniciu

Figure 1 for Automatic Vertebra Labeling in Large-Scale 3D CT using Deep Image-to-Image Network with Message Passing and Sparsity Regularization
Figure 2 for Automatic Vertebra Labeling in Large-Scale 3D CT using Deep Image-to-Image Network with Message Passing and Sparsity Regularization
Figure 3 for Automatic Vertebra Labeling in Large-Scale 3D CT using Deep Image-to-Image Network with Message Passing and Sparsity Regularization
Figure 4 for Automatic Vertebra Labeling in Large-Scale 3D CT using Deep Image-to-Image Network with Message Passing and Sparsity Regularization
Viaarxiv icon

Scene Labeling using Gated Recurrent Units with Explicit Long Range Conditioning

Add code
Bookmark button
Alert button
Mar 28, 2017
Qiangui Huang, Weiyue Wang, Kevin Zhou, Suya You, Ulrich Neumann

Figure 1 for Scene Labeling using Gated Recurrent Units with Explicit Long Range Conditioning
Figure 2 for Scene Labeling using Gated Recurrent Units with Explicit Long Range Conditioning
Figure 3 for Scene Labeling using Gated Recurrent Units with Explicit Long Range Conditioning
Figure 4 for Scene Labeling using Gated Recurrent Units with Explicit Long Range Conditioning
Viaarxiv icon