In plain words: Instead of linking items in pairs, this network lets one link join any group of related items, then mixes information across those groups to learn a representation. It beat standard pair-based graph networks on citation and object-recognition tasks, especially with mixed data types.
Abstract
In this paper, we present a hypergraph neural networks (HGNN) framework for data representation learning, which can encode high-order data correlation in a hypergraph structure. Confronting the challenges of learning representation for complex data in real practice, we propose to incorporate such data structure in a hypergraph, which is more flexible on data modeling, especially when dealing with complex data. In this method, a hyperedge convolution operation is designed to handle the data correlation during representation learning. In this way, traditional hypergraph learning procedure can be conducted using hyperedge convolution operations efficiently. HGNN is able to learn the hidden layer representation considering the high-order data structure, which is a general framework considering the complex data correlations. We have conducted experiments on citation network classification and visual object recognition tasks and compared HGNN with graph convolutional networks and other traditional methods. Experimental results demonstrate that the proposed HGNN method outperforms recent state-of-the-art methods. We can also reveal from the results that the proposed HGNN is superior when dealing with multi-modal data compared with existing methods.
Yifan Feng, Haoxuan You, Zizhao Zhang, Rongrong Ji, Yue Gao
arXiv:1809.09401 · cs.LG, stat.ML · submitted Sep 25, 2018 · updated Feb 23, 2019
abstract · pdf · html · Accepted in AAAI'2019