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Multi-Modal Graph Interaction for Multi-Graph Convolution Network in Urban Spatiotemporal Forecasting

delete2022-09-29
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OA
AI
张铃玉 cover
张铃玉 (Lingyu Zhang)
G
Geng Xu
Z
Zhiwei Qin
H
Hongjun Wang
X
Xiao Wang
Y
Ying Zhang
J
Jian Liang
G
Guobin Wu
宋轩 cover
宋轩 (Xuan Song)
Y
Yunhai Wang *
DOI:10.3390/su141912397delete
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Abstract

Abstract

En 中文
Graph convolution network-based approaches have been recently used to model region-wise relationships in region-level prediction problems in urban computing. Each relationship represents a kind of spatial dependency, such as region-wise distance or functional similarity. To incorporate multiple relationships into a spatial feature extraction, we define the problem as a multi-modal machine learning problem on multi-graph convolution networks. Leveraging the advantage of multi-modal machine learning, we propose to develop modality interaction mechanisms for this problem in order to reduce the generalization error by reinforcing the learning of multi-modal coordinated representations. In this work, we propose two interaction techniques for handling features in lower layers and higher layers, respectively. In lower layers, we propose grouped GCN to combine the graph connectivity from different modalities for a more complete spatial feature extraction. In higher layers, we adapt multi-linear relationship networks to GCN by exploring the dimension transformation and freezing part of the covariance structure. The adapted approach, called multi-linear relationship GCN, learns more generalized features to overcome the train-test divergence induced by time shifting. We evaluated our model on a ride-hailing demand forecasting problem using two real-world datasets. The proposed technique outperforms state-of-the art baselines in terms of prediction accuracy, training efficiency, interpretability and model robustness.
Keywords:
multi-modal machine learning
graph convolution networks
multi-task learning
transfer learning

Journal

Sustainability cover
Sustainability
IF:
3.3
Papers:
10.6W
Citations:
28.4W

Organization

S
shandong university
Scholars:
9.4W
Papers: 6.4W
Citations: 94