计算机科学
理论计算机科学
嵌入
关系数据库
图形
可比性图
统计关系学习
折线图
数据挖掘
电压图
人工智能
作者
Shikhar Vashishth,Soumya Sanyal,Vikram Nitin,Partha Talukdar
出处
期刊:Cornell University - arXiv
日期:2019-01-01
被引量:350
标识
DOI:10.48550/arxiv.1911.03082
摘要
Graph Convolutional Networks (GCNs) have recently been shown to be quite successful in modeling graph-structured data. However, the primary focus has been on handling simple undirected graphs. Multi-relational graphs are a more general and prevalent form of graphs where each edge has a label and direction associated with it. Most of the existing approaches to handle such graphs suffer from over-parameterization and are restricted to learning representations of nodes only. In this paper, we propose CompGCN, a novel Graph Convolutional framework which jointly embeds both nodes and relations in a relational graph. CompGCN leverages a variety of entity-relation composition operations from Knowledge Graph Embedding techniques and scales with the number of relations. It also generalizes several of the existing multi-relational GCN methods. We evaluate our proposed method on multiple tasks such as node classification, link prediction, and graph classification, and achieve demonstrably superior results. We make the source code of CompGCN available to foster reproducible research.
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