Alert button
Picture for Chenghong Wang

Chenghong Wang

Alert button

LinGCN: Structural Linearized Graph Convolutional Network for Homomorphically Encrypted Inference

Add code
Bookmark button
Alert button
Sep 30, 2023
Hongwu Peng, Ran Ran, Yukui Luo, Jiahui Zhao, Shaoyi Huang, Kiran Thorat, Tong Geng, Chenghong Wang, Xiaolin Xu, Wujie Wen, Caiwen Ding

Figure 1 for LinGCN: Structural Linearized Graph Convolutional Network for Homomorphically Encrypted Inference
Figure 2 for LinGCN: Structural Linearized Graph Convolutional Network for Homomorphically Encrypted Inference
Figure 3 for LinGCN: Structural Linearized Graph Convolutional Network for Homomorphically Encrypted Inference
Figure 4 for LinGCN: Structural Linearized Graph Convolutional Network for Homomorphically Encrypted Inference
Viaarxiv icon

AutoReP: Automatic ReLU Replacement for Fast Private Network Inference

Add code
Bookmark button
Alert button
Aug 20, 2023
Hongwu Peng, Shaoyi Huang, Tong Zhou, Yukui Luo, Chenghong Wang, Zigeng Wang, Jiahui Zhao, Xi Xie, Ang Li, Tony Geng, Kaleel Mahmood, Wujie Wen, Xiaolin Xu, Caiwen Ding

Figure 1 for AutoReP: Automatic ReLU Replacement for Fast Private Network Inference
Figure 2 for AutoReP: Automatic ReLU Replacement for Fast Private Network Inference
Figure 3 for AutoReP: Automatic ReLU Replacement for Fast Private Network Inference
Figure 4 for AutoReP: Automatic ReLU Replacement for Fast Private Network Inference
Viaarxiv icon

RRNet: Towards ReLU-Reduced Neural Network for Two-party Computation Based Private Inference

Add code
Bookmark button
Alert button
Feb 22, 2023
Hongwu Peng, Shanglin Zhou, Yukui Luo, Nuo Xu, Shijin Duan, Ran Ran, Jiahui Zhao, Shaoyi Huang, Xi Xie, Chenghong Wang, Tong Geng, Wujie Wen, Xiaolin Xu, Caiwen Ding

Figure 1 for RRNet: Towards ReLU-Reduced Neural Network for Two-party Computation Based Private Inference
Figure 2 for RRNet: Towards ReLU-Reduced Neural Network for Two-party Computation Based Private Inference
Figure 3 for RRNet: Towards ReLU-Reduced Neural Network for Two-party Computation Based Private Inference
Figure 4 for RRNet: Towards ReLU-Reduced Neural Network for Two-party Computation Based Private Inference
Viaarxiv icon

PolyMPCNet: Towards ReLU-free Neural Architecture Search in Two-party Computation Based Private Inference

Add code
Bookmark button
Alert button
Sep 20, 2022
Hongwu Peng, Shanglin Zhou, Yukui Luo, Shijin Duan, Nuo Xu, Ran Ran, Shaoyi Huang, Chenghong Wang, Tong Geng, Ang Li, Wujie Wen, Xiaolin Xu, Caiwen Ding

Figure 1 for PolyMPCNet: Towards ReLU-free Neural Architecture Search in Two-party Computation Based Private Inference
Figure 2 for PolyMPCNet: Towards ReLU-free Neural Architecture Search in Two-party Computation Based Private Inference
Figure 3 for PolyMPCNet: Towards ReLU-free Neural Architecture Search in Two-party Computation Based Private Inference
Figure 4 for PolyMPCNet: Towards ReLU-free Neural Architecture Search in Two-party Computation Based Private Inference
Viaarxiv icon

A Secure and Efficient Federated Learning Framework for NLP

Add code
Bookmark button
Alert button
Jan 28, 2022
Jieren Deng, Chenghong Wang, Xianrui Meng, Yijue Wang, Ji Li, Sheng Lin, Shuo Han, Fei Miao, Sanguthevar Rajasekaran, Caiwen Ding

Figure 1 for A Secure and Efficient Federated Learning Framework for NLP
Figure 2 for A Secure and Efficient Federated Learning Framework for NLP
Figure 3 for A Secure and Efficient Federated Learning Framework for NLP
Figure 4 for A Secure and Efficient Federated Learning Framework for NLP
Viaarxiv icon

SAPAG: A Self-Adaptive Privacy Attack From Gradients

Add code
Bookmark button
Alert button
Sep 14, 2020
Yijue Wang, Jieren Deng, Dan Guo, Chenghong Wang, Xianrui Meng, Hang Liu, Caiwen Ding, Sanguthevar Rajasekaran

Figure 1 for SAPAG: A Self-Adaptive Privacy Attack From Gradients
Figure 2 for SAPAG: A Self-Adaptive Privacy Attack From Gradients
Figure 3 for SAPAG: A Self-Adaptive Privacy Attack From Gradients
Figure 4 for SAPAG: A Self-Adaptive Privacy Attack From Gradients
Viaarxiv icon

ESMFL: Efficient and Secure Models for Federated Learning

Add code
Bookmark button
Alert button
Sep 03, 2020
Sheng Lin, Chenghong Wang, Hongjia Li, Jieren Deng, Yanzhi Wang, Caiwen Ding

Figure 1 for ESMFL: Efficient and Secure Models for Federated Learning
Figure 2 for ESMFL: Efficient and Secure Models for Federated Learning
Figure 3 for ESMFL: Efficient and Secure Models for Federated Learning
Figure 4 for ESMFL: Efficient and Secure Models for Federated Learning
Viaarxiv icon

MCMIA: Model Compression Against Membership Inference Attack in Deep Neural Networks

Add code
Bookmark button
Alert button
Aug 28, 2020
Yijue Wang, Chenghong Wang, Zigeng Wang, Shanglin Zhou, Hang Liu, Jinbo Bi, Caiwen Ding, Sanguthevar Rajasekaran

Figure 1 for MCMIA: Model Compression Against Membership Inference Attack in Deep Neural Networks
Figure 2 for MCMIA: Model Compression Against Membership Inference Attack in Deep Neural Networks
Figure 3 for MCMIA: Model Compression Against Membership Inference Attack in Deep Neural Networks
Figure 4 for MCMIA: Model Compression Against Membership Inference Attack in Deep Neural Networks
Viaarxiv icon