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Graph neural networks: A review of methods and applications

Jie ZhouDepartment of Computer Science and Technology, Tsinghua University, Beijing, ChinaGanqu CuiDepartment of Computer Science and Technology, Tsinghua University, Beijing, ChinaShengding HuDepartment of Computer Science and Technology, Tsinghua University, Beijing, ChinaZhengyan ZhangDepartment of Computer Science and Technology, Tsinghua University, Beijing, ChinaCheng YangSchool of Computer Science, Beijing University of Posts and Telecommunications, ChinaZhiyuan LiuDepartment of Computer Science and Technology, Tsinghua University, Beijing, ChinaLifeng WangTencent Incorporation, Shenzhen, ChinaChangcheng LiTencent Incorporation, Shenzhen, ChinaMaosong SunDepartment of Computer Science and Technology, Tsinghua University, Beijing, China
2020en
ABI

Аннотация

Lots of learning tasks require dealing with graph data which contains rich relation information among elements. Modeling physics systems, learning molecular fingerprints, predicting protein interface, and classifying diseases demand a model to learn from graph inputs. In other domains such as learning from non-structural data like texts and images, reasoning on extracted structures (like the dependency trees of sentences and the scene graphs of images) is an important research topic which also needs graph reasoning models. Graph neural networks (GNNs) are neural models that capture the dependence of graphs via message passing between the nodes of graphs. In recent years, variants of GNNs such as graph convolutional network (GCN), graph attention network (GAT), graph recurrent network (GRN) have demonstrated ground-breaking performances on many deep learning tasks. In this survey, we propose a general design pipeline for GNN models and discuss the variants of each component, systematically categorize the applications, and propose four open problems for future research.

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