Alert button
Picture for Wenzheng Chen

Wenzheng Chen

Alert button

4D Gaussian Splatting: Towards Efficient Novel View Synthesis for Dynamic Scenes

Add code
Bookmark button
Alert button
Feb 07, 2024
Yuanxing Duan, Fangyin Wei, Qiyu Dai, Yuhang He, Wenzheng Chen, Baoquan Chen

Viaarxiv icon

Towards Viewpoint Robustness in Bird's Eye View Segmentation

Add code
Bookmark button
Alert button
Sep 11, 2023
Tzofi Klinghoffer, Jonah Philion, Wenzheng Chen, Or Litany, Zan Gojcic, Jungseock Joo, Ramesh Raskar, Sanja Fidler, Jose M. Alvarez

Figure 1 for Towards Viewpoint Robustness in Bird's Eye View Segmentation
Figure 2 for Towards Viewpoint Robustness in Bird's Eye View Segmentation
Figure 3 for Towards Viewpoint Robustness in Bird's Eye View Segmentation
Figure 4 for Towards Viewpoint Robustness in Bird's Eye View Segmentation
Viaarxiv icon

Flexible Isosurface Extraction for Gradient-Based Mesh Optimization

Add code
Bookmark button
Alert button
Aug 10, 2023
Tianchang Shen, Jacob Munkberg, Jon Hasselgren, Kangxue Yin, Zian Wang, Wenzheng Chen, Zan Gojcic, Sanja Fidler, Nicholas Sharp, Jun Gao

Figure 1 for Flexible Isosurface Extraction for Gradient-Based Mesh Optimization
Figure 2 for Flexible Isosurface Extraction for Gradient-Based Mesh Optimization
Figure 3 for Flexible Isosurface Extraction for Gradient-Based Mesh Optimization
Figure 4 for Flexible Isosurface Extraction for Gradient-Based Mesh Optimization
Viaarxiv icon

Omni-Line-of-Sight Imaging for Holistic Shape Reconstruction

Add code
Bookmark button
Alert button
Apr 21, 2023
Binbin Huang, Xingyue Peng, Siyuan Shen, Suan Xia, Ruiqian Li, Yanhua Yu, Yuehan Wang, Shenghua Gao, Wenzheng Chen, Shiying Li, Jingyi Yu

Figure 1 for Omni-Line-of-Sight Imaging for Holistic Shape Reconstruction
Figure 2 for Omni-Line-of-Sight Imaging for Holistic Shape Reconstruction
Figure 3 for Omni-Line-of-Sight Imaging for Holistic Shape Reconstruction
Figure 4 for Omni-Line-of-Sight Imaging for Holistic Shape Reconstruction
Viaarxiv icon

Neural Fields meet Explicit Geometric Representation for Inverse Rendering of Urban Scenes

Add code
Bookmark button
Alert button
Apr 06, 2023
Zian Wang, Tianchang Shen, Jun Gao, Shengyu Huang, Jacob Munkberg, Jon Hasselgren, Zan Gojcic, Wenzheng Chen, Sanja Fidler

Figure 1 for Neural Fields meet Explicit Geometric Representation for Inverse Rendering of Urban Scenes
Figure 2 for Neural Fields meet Explicit Geometric Representation for Inverse Rendering of Urban Scenes
Figure 3 for Neural Fields meet Explicit Geometric Representation for Inverse Rendering of Urban Scenes
Figure 4 for Neural Fields meet Explicit Geometric Representation for Inverse Rendering of Urban Scenes
Viaarxiv icon

Relightable Neural Human Assets from Multi-view Gradient Illuminations

Add code
Bookmark button
Alert button
Dec 16, 2022
Taotao Zhou, Kai He, Di Wu, Teng Xu, Qixuan Zhang, Kuixiang Shao, Wenzheng Chen, Lan Xu, Jingyi Yu

Figure 1 for Relightable Neural Human Assets from Multi-view Gradient Illuminations
Figure 2 for Relightable Neural Human Assets from Multi-view Gradient Illuminations
Figure 3 for Relightable Neural Human Assets from Multi-view Gradient Illuminations
Figure 4 for Relightable Neural Human Assets from Multi-view Gradient Illuminations
Viaarxiv icon

HumanGen: Generating Human Radiance Fields with Explicit Priors

Add code
Bookmark button
Alert button
Dec 10, 2022
Suyi Jiang, Haoran Jiang, Ziyu Wang, Haimin Luo, Wenzheng Chen, Lan Xu

Figure 1 for HumanGen: Generating Human Radiance Fields with Explicit Priors
Figure 2 for HumanGen: Generating Human Radiance Fields with Explicit Priors
Figure 3 for HumanGen: Generating Human Radiance Fields with Explicit Priors
Figure 4 for HumanGen: Generating Human Radiance Fields with Explicit Priors
Viaarxiv icon

GET3D: A Generative Model of High Quality 3D Textured Shapes Learned from Images

Add code
Bookmark button
Alert button
Sep 22, 2022
Jun Gao, Tianchang Shen, Zian Wang, Wenzheng Chen, Kangxue Yin, Daiqing Li, Or Litany, Zan Gojcic, Sanja Fidler

Figure 1 for GET3D: A Generative Model of High Quality 3D Textured Shapes Learned from Images
Figure 2 for GET3D: A Generative Model of High Quality 3D Textured Shapes Learned from Images
Figure 3 for GET3D: A Generative Model of High Quality 3D Textured Shapes Learned from Images
Figure 4 for GET3D: A Generative Model of High Quality 3D Textured Shapes Learned from Images
Viaarxiv icon