Alert button
Picture for Xiao Li

Xiao Li

Alert button

An Efficient Semi-Automated Scheme for Infrastructure LiDAR Annotation

Add code
Bookmark button
Alert button
Jan 25, 2023
Aotian Wu, Pan He, Xiao Li, Ke Chen, Sanjay Ranka, Anand Rangarajan

Figure 1 for An Efficient Semi-Automated Scheme for Infrastructure LiDAR Annotation
Figure 2 for An Efficient Semi-Automated Scheme for Infrastructure LiDAR Annotation
Figure 3 for An Efficient Semi-Automated Scheme for Infrastructure LiDAR Annotation
Figure 4 for An Efficient Semi-Automated Scheme for Infrastructure LiDAR Annotation
Viaarxiv icon

A Provable Splitting Approach for Symmetric Nonnegative Matrix Factorization

Add code
Bookmark button
Alert button
Jan 25, 2023
Xiao Li, Zhihui Zhu, Qiuwei Li, Kai Liu

Figure 1 for A Provable Splitting Approach for Symmetric Nonnegative Matrix Factorization
Figure 2 for A Provable Splitting Approach for Symmetric Nonnegative Matrix Factorization
Figure 3 for A Provable Splitting Approach for Symmetric Nonnegative Matrix Factorization
Figure 4 for A Provable Splitting Approach for Symmetric Nonnegative Matrix Factorization
Viaarxiv icon

Principled and Efficient Transfer Learning of Deep Models via Neural Collapse

Add code
Bookmark button
Alert button
Jan 04, 2023
Xiao Li, Sheng Liu, Jinxin Zhou, Xinyu Lu, Carlos Fernandez-Granda, Zhihui Zhu, Qing Qu

Figure 1 for Principled and Efficient Transfer Learning of Deep Models via Neural Collapse
Figure 2 for Principled and Efficient Transfer Learning of Deep Models via Neural Collapse
Figure 3 for Principled and Efficient Transfer Learning of Deep Models via Neural Collapse
Figure 4 for Principled and Efficient Transfer Learning of Deep Models via Neural Collapse
Viaarxiv icon

Recognizing Object by Components with Human Prior Knowledge Enhances Adversarial Robustness of Deep Neural Networks

Add code
Bookmark button
Alert button
Dec 04, 2022
Xiao Li, Ziqi Wang, Bo Zhang, Fuchun Sun, Xiaolin Hu

Figure 1 for Recognizing Object by Components with Human Prior Knowledge Enhances Adversarial Robustness of Deep Neural Networks
Figure 2 for Recognizing Object by Components with Human Prior Knowledge Enhances Adversarial Robustness of Deep Neural Networks
Figure 3 for Recognizing Object by Components with Human Prior Knowledge Enhances Adversarial Robustness of Deep Neural Networks
Figure 4 for Recognizing Object by Components with Human Prior Knowledge Enhances Adversarial Robustness of Deep Neural Networks
Viaarxiv icon

DyRRen: A Dynamic Retriever-Reranker-Generator Model for Numerical Reasoning over Tabular and Textual Data

Add code
Bookmark button
Alert button
Nov 23, 2022
Xiao Li, Yin Zhu, Sichen Liu, Jiangzhou Ju, Yuzhong Qu, Gong Cheng

Figure 1 for DyRRen: A Dynamic Retriever-Reranker-Generator Model for Numerical Reasoning over Tabular and Textual Data
Figure 2 for DyRRen: A Dynamic Retriever-Reranker-Generator Model for Numerical Reasoning over Tabular and Textual Data
Figure 3 for DyRRen: A Dynamic Retriever-Reranker-Generator Model for Numerical Reasoning over Tabular and Textual Data
Figure 4 for DyRRen: A Dynamic Retriever-Reranker-Generator Model for Numerical Reasoning over Tabular and Textual Data
Viaarxiv icon

Reconfigurable Intelligent Surface: Power Consumption Modeling and Practical Measurement Validation

Add code
Bookmark button
Alert button
Nov 01, 2022
Jinghe Wang, Wankai Tang, Jing Cheng Liang, Lei Zhang, Jun Yan Dai, Xiao Li, Shi Jin, Qiang Cheng, Tie Jun Cui

Figure 1 for Reconfigurable Intelligent Surface: Power Consumption Modeling and Practical Measurement Validation
Figure 2 for Reconfigurable Intelligent Surface: Power Consumption Modeling and Practical Measurement Validation
Figure 3 for Reconfigurable Intelligent Surface: Power Consumption Modeling and Practical Measurement Validation
Figure 4 for Reconfigurable Intelligent Surface: Power Consumption Modeling and Practical Measurement Validation
Viaarxiv icon

Estimating Neural Reflectance Field from Radiance Field using Tree Structures

Add code
Bookmark button
Alert button
Oct 09, 2022
Xiu Li, Xiao Li, Yan Lu

Figure 1 for Estimating Neural Reflectance Field from Radiance Field using Tree Structures
Figure 2 for Estimating Neural Reflectance Field from Radiance Field using Tree Structures
Figure 3 for Estimating Neural Reflectance Field from Radiance Field using Tree Structures
Figure 4 for Estimating Neural Reflectance Field from Radiance Field using Tree Structures
Viaarxiv icon

Are All Losses Created Equal: A Neural Collapse Perspective

Add code
Bookmark button
Alert button
Oct 08, 2022
Jinxin Zhou, Chong You, Xiao Li, Kangning Liu, Sheng Liu, Qing Qu, Zhihui Zhu

Figure 1 for Are All Losses Created Equal: A Neural Collapse Perspective
Figure 2 for Are All Losses Created Equal: A Neural Collapse Perspective
Figure 3 for Are All Losses Created Equal: A Neural Collapse Perspective
Figure 4 for Are All Losses Created Equal: A Neural Collapse Perspective
Viaarxiv icon

Neural Capture of Animatable 3D Human from Monocular Video

Add code
Bookmark button
Alert button
Aug 18, 2022
Gusi Te, Xiu Li, Xiao Li, Jinglu Wang, Wei Hu, Yan Lu

Figure 1 for Neural Capture of Animatable 3D Human from Monocular Video
Figure 2 for Neural Capture of Animatable 3D Human from Monocular Video
Figure 3 for Neural Capture of Animatable 3D Human from Monocular Video
Figure 4 for Neural Capture of Animatable 3D Human from Monocular Video
Viaarxiv icon

On the Privacy Effect of Data Enhancement via the Lens of Memorization

Add code
Bookmark button
Alert button
Aug 17, 2022
Xiao Li, Qiongxiu Li, Zhanhao Hu, Xiaolin Hu

Figure 1 for On the Privacy Effect of Data Enhancement via the Lens of Memorization
Figure 2 for On the Privacy Effect of Data Enhancement via the Lens of Memorization
Figure 3 for On the Privacy Effect of Data Enhancement via the Lens of Memorization
Figure 4 for On the Privacy Effect of Data Enhancement via the Lens of Memorization
Viaarxiv icon