ADSTGCN: A Dynamic Adaptive Deeper Spatio-Temporal Graph Convolutional Network for Multi-Step Traffic Forecasting

Author:

Cui Zhengyan1,Zhang Junjun1,Noh Giseop2,Park Hyun Jun2ORCID

Affiliation:

1. Department of Computer Information Engineering, Cheongju University, Cheongju 28503, Republic of Korea

2. Department of Artificial Intelligence Software, Cheongju University, Cheongju 28503, Republic of Korea

Abstract

Multi-step traffic forecasting has always been extremely challenging due to constantly changing traffic conditions. Advanced Graph Convolutional Networks (GCNs) are widely used to extract spatial information from traffic networks. Existing GCNs for traffic forecasting are usually shallow networks that only aggregate two- or three-order node neighbor information. Because of aggregating deeper neighborhood information, an over-smoothing phenomenon occurs, thus leading to the degradation of model forecast performance. In addition, most existing traffic forecasting graph networks are based on fixed nodes and therefore need more flexibility. Based on the current problem, we propose Dynamic Adaptive Deeper Spatio-Temporal Graph Convolutional Networks (ADSTGCN), a new traffic forecasting model. The model addresses over-smoothing due to network deepening by using dynamic hidden layer connections and adaptively adjusting the hidden layer weights to reduce model degradation. Furthermore, the model can adaptively learn the spatial dependencies in the traffic graph by building the parameter-sharing adaptive matrix, and it can also adaptively adjust the network structure to discover the unknown dynamic changes in the traffic network. We evaluated ADSTGCN using real-world traffic data from the highway and urban road networks, and it shows good performance.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference46 articles.

1. Spatial-Temporal Graph Neural Network for Traffic Forecasting: An Overview and Open Research Issues;Bui;Appl. Intell.,2022

2. Dynamic Traffic Correlations Based Spatio-Temporal Graph Convolutional Network for Urban Traffic Prediction;Xu;Inf. Sci.,2022

3. Spatial-Temporal Synchronous Graph Convolutional Networks: A New Framework for Spatial-Temporal Network Data Forecasting;Song;Proc. AAAI Conf. Artif. Intell.,2020

4. Traffic Flow Forecasting with Spatial-Temporal Graph Diffusion Network;Zhang;Proc. AAAI Conf. Artif. Intell.,2021

5. Multi-Range Attentive Bicomponent Graph Convolutional Network for Traffic Forecasting;Chen;Proc. AAAI Conf. Artif. Intell.,2020

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