Author
Listed:
- Yong Lin Ren
(Concordia Institute for Information Systems Engineering, Concordia University, Montreal, QC H3G 1M8, Canada)
- Anjali Awasthi
(Concordia Institute for Information Systems Engineering, Concordia University, Montreal, QC H3G 1M8, Canada)
Abstract
Background : This paper develops a novel, interdisciplinary framework for optimizing high-speed rail (HSR) freight logistics hubs in the Ottawa–Quebec City corridor, addressing critical gaps in geospatial mismatches, static optimization limitations, and narrow sustainability scopes found in the existing literature. Methods: The research methodology integrates a hybrid graph neural network-reinforcement learning (GNN-RL) architecture that encodes 412 nodes into a dynamic graph with adaptive edge weights, fractal accessibility (α = 1.78) derived from fractional calculus (α = 0.75) to model non-linear urban growth patterns, and a multi-criteria sustainability evaluation framework embedding shadow pricing for externalities. Methodologically, the framework is validated through global sensitivity analysis and comparative testing against classical optimization models using real-world geospatial, operational, and economic datasets from the corridor. Results : Key findings demonstrate the framework’s superiority. Empirical results show an obvious reduction in emissions and lower logistics costs compared to classical models, with Pareto-optimal hubs identified. These hubs achieve the most GDP coverage of the corridor, reconciling economic efficiency with environmental resilience and social equity. Conclusions : This research establishes a replicable methodology for mid-latitude freight corridors, advancing low-carbon logistics through the integration of GNN-RL optimization, fractal spatial analysis, and sustainability assessment—bridging economic viability, environmental decarbonization, and social equity in HSR freight network design.
Suggested Citation
Yong Lin Ren & Anjali Awasthi, 2025.
"Logistics Hub Location for High-Speed Rail Freight Transport—Case Ottawa–Quebec City Corridor,"
Logistics, MDPI, vol. 9(4), pages 1-31, November.
Handle:
RePEc:gam:jlogis:v:9:y:2025:i:4:p:158-:d:1787491
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