Alert button
Picture for Tiehua Zhang

Tiehua Zhang

Alert button

Exploiting Spatial-temporal Data for Sleep Stage Classification via Hypergraph Learning

Add code
Bookmark button
Alert button
Sep 05, 2023
Yuze Liu, Ziming Zhao, Tiehua Zhang, Kang Wang, Xin Chen, Xiaowei Huang, Jun Yin, Zhishu Shen

Figure 1 for Exploiting Spatial-temporal Data for Sleep Stage Classification via Hypergraph Learning
Figure 2 for Exploiting Spatial-temporal Data for Sleep Stage Classification via Hypergraph Learning
Figure 3 for Exploiting Spatial-temporal Data for Sleep Stage Classification via Hypergraph Learning
Viaarxiv icon

Learning from Heterogeneity: A Dynamic Learning Framework for Hypergraphs

Add code
Bookmark button
Alert button
Jul 07, 2023
Tiehua Zhang, Yuze Liu, Zhishu Shen, Xingjun Ma, Xin Chen, Xiaowei Huang, Jun Yin, Jiong Jin

Figure 1 for Learning from Heterogeneity: A Dynamic Learning Framework for Hypergraphs
Figure 2 for Learning from Heterogeneity: A Dynamic Learning Framework for Hypergraphs
Figure 3 for Learning from Heterogeneity: A Dynamic Learning Framework for Hypergraphs
Figure 4 for Learning from Heterogeneity: A Dynamic Learning Framework for Hypergraphs
Viaarxiv icon

DSHGT: Dual-Supervisors Heterogeneous Graph Transformer -- A pioneer study of using heterogeneous graph learning for detecting software vulnerabilities

Add code
Bookmark button
Alert button
Jun 02, 2023
Tiehua Zhang, Rui Xu, Jianping Zhang, Yuzhe Tian, Xin Chen, Xiaowei Huang, Jun Yin, Xi Zheng

Figure 1 for DSHGT: Dual-Supervisors Heterogeneous Graph Transformer -- A pioneer study of using heterogeneous graph learning for detecting software vulnerabilities
Figure 2 for DSHGT: Dual-Supervisors Heterogeneous Graph Transformer -- A pioneer study of using heterogeneous graph learning for detecting software vulnerabilities
Figure 3 for DSHGT: Dual-Supervisors Heterogeneous Graph Transformer -- A pioneer study of using heterogeneous graph learning for detecting software vulnerabilities
Figure 4 for DSHGT: Dual-Supervisors Heterogeneous Graph Transformer -- A pioneer study of using heterogeneous graph learning for detecting software vulnerabilities
Viaarxiv icon

DCMT: A Direct Entire-Space Causal Multi-Task Framework for Post-Click Conversion Estimation

Add code
Bookmark button
Alert button
Feb 13, 2023
Feng Zhu, Mingjie Zhong, Xinxing Yang, Longfei Li, Lu Yu, Tiehua Zhang, Jun Zhou, Chaochao Chen, Fei Wu, Guanfeng Liu, Yan Wang

Figure 1 for DCMT: A Direct Entire-Space Causal Multi-Task Framework for Post-Click Conversion Estimation
Figure 2 for DCMT: A Direct Entire-Space Causal Multi-Task Framework for Post-Click Conversion Estimation
Figure 3 for DCMT: A Direct Entire-Space Causal Multi-Task Framework for Post-Click Conversion Estimation
Figure 4 for DCMT: A Direct Entire-Space Causal Multi-Task Framework for Post-Click Conversion Estimation
Viaarxiv icon

Towards Relation-centered Pooling and Convolution for Heterogeneous Graph Learning Networks

Add code
Bookmark button
Alert button
Oct 31, 2022
Tiehua Zhang, Yuze Liu, Yao Yao, Youhua Xia, Xin Chen, Xiaowei Huang, Jiong Jin

Figure 1 for Towards Relation-centered Pooling and Convolution for Heterogeneous Graph Learning Networks
Figure 2 for Towards Relation-centered Pooling and Convolution for Heterogeneous Graph Learning Networks
Figure 3 for Towards Relation-centered Pooling and Convolution for Heterogeneous Graph Learning Networks
Figure 4 for Towards Relation-centered Pooling and Convolution for Heterogeneous Graph Learning Networks
Viaarxiv icon

FedRel: An Adaptive Federated Relevance Framework for Spatial Temporal Graph Learning

Add code
Bookmark button
Alert button
Jun 07, 2022
Tiehua Zhang, Yuze Liu, Zhishu Shen, Rui Xu, Xin Chen, Xiaowei Huang, Xi Zheng

Figure 1 for FedRel: An Adaptive Federated Relevance Framework for Spatial Temporal Graph Learning
Figure 2 for FedRel: An Adaptive Federated Relevance Framework for Spatial Temporal Graph Learning
Figure 3 for FedRel: An Adaptive Federated Relevance Framework for Spatial Temporal Graph Learning
Figure 4 for FedRel: An Adaptive Federated Relevance Framework for Spatial Temporal Graph Learning
Viaarxiv icon

AstBERT: Enabling Language Model for Code Understanding with Abstract Syntax Tree

Add code
Bookmark button
Alert button
Jan 20, 2022
Rong Liang, Yujie Lu, Zhen Huang, Tiehua Zhang, Yuze Liu

Figure 1 for AstBERT: Enabling Language Model for Code Understanding with Abstract Syntax Tree
Figure 2 for AstBERT: Enabling Language Model for Code Understanding with Abstract Syntax Tree
Figure 3 for AstBERT: Enabling Language Model for Code Understanding with Abstract Syntax Tree
Figure 4 for AstBERT: Enabling Language Model for Code Understanding with Abstract Syntax Tree
Viaarxiv icon

GPS: A Policy-driven Sampling Approach for Graph Representation Learning

Add code
Bookmark button
Alert button
Jan 19, 2022
Tiehua Zhang, Yuze Liu, Xin Chen, Xiaowei Huang, Feng Zhu, Xi Zheng

Figure 1 for GPS: A Policy-driven Sampling Approach for Graph Representation Learning
Figure 2 for GPS: A Policy-driven Sampling Approach for Graph Representation Learning
Figure 3 for GPS: A Policy-driven Sampling Approach for Graph Representation Learning
Figure 4 for GPS: A Policy-driven Sampling Approach for Graph Representation Learning
Viaarxiv icon

STFL: A Temporal-Spatial Federated Learning Framework for Graph Neural Networks

Add code
Bookmark button
Alert button
Nov 12, 2021
Guannan Lou, Yuze Liu, Tiehua Zhang, Xi Zheng

Figure 1 for STFL: A Temporal-Spatial Federated Learning Framework for Graph Neural Networks
Figure 2 for STFL: A Temporal-Spatial Federated Learning Framework for Graph Neural Networks
Figure 3 for STFL: A Temporal-Spatial Federated Learning Framework for Graph Neural Networks
Figure 4 for STFL: A Temporal-Spatial Federated Learning Framework for Graph Neural Networks
Viaarxiv icon

Deep Learning-Based Autonomous Driving Systems: A Survey of Attacks and Defenses

Add code
Bookmark button
Alert button
Apr 10, 2021
Yao Deng, Tiehua Zhang, Guannan Lou, Xi Zheng, Jiong Jin, Qing-Long Han

Figure 1 for Deep Learning-Based Autonomous Driving Systems: A Survey of Attacks and Defenses
Figure 2 for Deep Learning-Based Autonomous Driving Systems: A Survey of Attacks and Defenses
Figure 3 for Deep Learning-Based Autonomous Driving Systems: A Survey of Attacks and Defenses
Figure 4 for Deep Learning-Based Autonomous Driving Systems: A Survey of Attacks and Defenses
Viaarxiv icon