Alert button
Picture for Sicheng Li

Sicheng Li

Alert button

NeRFCodec: Neural Feature Compression Meets Neural Radiance Fields for Memory-Efficient Scene Representation

Add code
Bookmark button
Alert button
Apr 02, 2024
Sicheng Li, Hao Li, Yiyi Liao, Lu Yu

Viaarxiv icon

ECNet: Effective Controllable Text-to-Image Diffusion Models

Add code
Bookmark button
Alert button
Mar 27, 2024
Sicheng Li, Keqiang Sun, Zhixin Lai, Xiaoshi Wu, Feng Qiu, Haoran Xie, Kazunori Miyata, Hongsheng Li

Viaarxiv icon

DORec: Decomposed Object Reconstruction Utilizing 2D Self-Supervised Features

Add code
Bookmark button
Alert button
Oct 19, 2023
Jun Wu, Sicheng Li, Sihui Ji, Yue Wang, Rong Xiong, Yiyi Liao

Viaarxiv icon

SteerNeRF: Accelerating NeRF Rendering via Smooth Viewpoint Trajectory

Add code
Bookmark button
Alert button
Dec 15, 2022
Sicheng Li, Hao Li, Yue Wang, Yiyi Liao, Lu Yu

Figure 1 for SteerNeRF: Accelerating NeRF Rendering via Smooth Viewpoint Trajectory
Figure 2 for SteerNeRF: Accelerating NeRF Rendering via Smooth Viewpoint Trajectory
Figure 3 for SteerNeRF: Accelerating NeRF Rendering via Smooth Viewpoint Trajectory
Figure 4 for SteerNeRF: Accelerating NeRF Rendering via Smooth Viewpoint Trajectory
Viaarxiv icon

Multi-Scale Spatial Temporal Graph Convolutional Network for Skeleton-Based Action Recognition

Add code
Bookmark button
Alert button
Jun 27, 2022
Zhan Chen, Sicheng Li, Bing Yang, Qinghan Li, Hong Liu

Figure 1 for Multi-Scale Spatial Temporal Graph Convolutional Network for Skeleton-Based Action Recognition
Figure 2 for Multi-Scale Spatial Temporal Graph Convolutional Network for Skeleton-Based Action Recognition
Figure 3 for Multi-Scale Spatial Temporal Graph Convolutional Network for Skeleton-Based Action Recognition
Figure 4 for Multi-Scale Spatial Temporal Graph Convolutional Network for Skeleton-Based Action Recognition
Viaarxiv icon

MIA-Former: Efficient and Robust Vision Transformers via Multi-grained Input-Adaptation

Add code
Bookmark button
Alert button
Dec 21, 2021
Zhongzhi Yu, Yonggan Fu, Sicheng Li, Chaojian Li, Yingyan Lin

Figure 1 for MIA-Former: Efficient and Robust Vision Transformers via Multi-grained Input-Adaptation
Figure 2 for MIA-Former: Efficient and Robust Vision Transformers via Multi-grained Input-Adaptation
Figure 3 for MIA-Former: Efficient and Robust Vision Transformers via Multi-grained Input-Adaptation
Figure 4 for MIA-Former: Efficient and Robust Vision Transformers via Multi-grained Input-Adaptation
Viaarxiv icon

ShiftAddNet: A Hardware-Inspired Deep Network

Add code
Bookmark button
Alert button
Oct 24, 2020
Haoran You, Xiaohan Chen, Yongan Zhang, Chaojian Li, Sicheng Li, Zihao Liu, Zhangyang Wang, Yingyan Lin

Figure 1 for ShiftAddNet: A Hardware-Inspired Deep Network
Figure 2 for ShiftAddNet: A Hardware-Inspired Deep Network
Figure 3 for ShiftAddNet: A Hardware-Inspired Deep Network
Figure 4 for ShiftAddNet: A Hardware-Inspired Deep Network
Viaarxiv icon

LotteryFL: Personalized and Communication-Efficient Federated Learning with Lottery Ticket Hypothesis on Non-IID Datasets

Add code
Bookmark button
Alert button
Aug 07, 2020
Ang Li, Jingwei Sun, Binghui Wang, Lin Duan, Sicheng Li, Yiran Chen, Hai Li

Figure 1 for LotteryFL: Personalized and Communication-Efficient Federated Learning with Lottery Ticket Hypothesis on Non-IID Datasets
Figure 2 for LotteryFL: Personalized and Communication-Efficient Federated Learning with Lottery Ticket Hypothesis on Non-IID Datasets
Figure 3 for LotteryFL: Personalized and Communication-Efficient Federated Learning with Lottery Ticket Hypothesis on Non-IID Datasets
Figure 4 for LotteryFL: Personalized and Communication-Efficient Federated Learning with Lottery Ticket Hypothesis on Non-IID Datasets
Viaarxiv icon

MAT: A Multi-strength Adversarial Training Method to Mitigate Adversarial Attacks

Add code
Bookmark button
Alert button
May 11, 2018
Chang Song, Hsin-Pai Cheng, Huanrui Yang, Sicheng Li, Chunpeng Wu, Qing Wu, Hai Li, Yiran Chen

Figure 1 for MAT: A Multi-strength Adversarial Training Method to Mitigate Adversarial Attacks
Figure 2 for MAT: A Multi-strength Adversarial Training Method to Mitigate Adversarial Attacks
Figure 3 for MAT: A Multi-strength Adversarial Training Method to Mitigate Adversarial Attacks
Figure 4 for MAT: A Multi-strength Adversarial Training Method to Mitigate Adversarial Attacks
Viaarxiv icon