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Contrastive learning for traffic flow forecasting based on multi graph convolution network.

Authors :
Guo, Kan
Tian, Daxin
Hu, Yongli
Sun, Yanfeng
Qian, Zhen
Zhou, Jianshan
Gao, Junbin
Yin, Baocai
Source :
IET Intelligent Transport Systems (Wiley-Blackwell); Feb2024, Vol. 18 Issue 2, p290-301, 12p
Publication Year :
2024

Abstract

Contrastive learning is an increasingly important research direction and has attracted considerable attention in the field of computer vision. It can greatly improve the representativeness of image features through data augmentation, unsupervised learning, and pre‐trained models. However, in the field of traffic flow forecasting, most graph‐based models focus on the construct of spatial–temporal relationships between road segments and ignore the use of temporal data augmentation and pre‐trained models, which can improve the representation ability of the forecasting model. Therefore, in this work, contrastive learning are used to expand the distribution of sequence samples and improve the quality and generalization of forecasting models. Based on this, a novel forecasting model called contrastive learning based on multi graph convolution network (CLMGCN) is proposed, which is combined with four components: multi graph convolution network, which learns the spatial–temporal feature of the input traffic data; temporal data augmentation, which obtains the augmentation data of the input traffic data; contrastive learning, which achieves the pre‐training phase and improve the quality of output feature of multi graph convolution network; output block, which utilizes the enhanced output feature of multi graph convolution network for predicting the future traffic data. Finally, by the experimental results of four public traffic flow datasets, it can be shown that CLMGCN achieves higher traffic forecasting accuracy with lower model complexity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1751956X
Volume :
18
Issue :
2
Database :
Complementary Index
Journal :
IET Intelligent Transport Systems (Wiley-Blackwell)
Publication Type :
Academic Journal
Accession number :
175282506
Full Text :
https://doi.org/10.1049/itr2.12451