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Handling modular containers in a physical internet environment

delete2024-12-05
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PRE
AI
E
Enna Hirata
N
Nailah Firdausiyah *
W
Widha Kusumaningdyah
DOI:10.1057/s41278-024-00307-ydelete
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Abstract

Abstract

En 中文
The shipping industry is currently the sixth largest source of global emissions, generating one billion tons of greenhouse gases annually. Physical Internet is a leading solution to enhance the efficiency of shipping operations and reduce CO2 emissions. In a physical internet framework, this research compares and simulates two sequencing strategies, based on the Dijkstra algorithm, designed to optimize the routing of terminal vehicles in managing modular containers at terminals. Our results indicate that the proposed method could save the total travel time of Automated Guided Vehicles by 1.2% and lead to a 0.5% reduction in global CO2 emissions if implemented in the top 100 container ports in the world. We show that the physical internet contributes positively to mitigating climate change in maritime transport, towards eventually achieving cargo neutrality. Furthermore, our proposed mathematical model provides decision aid for handling modular containers in terminals.
Keywords:
Physical internet
Modular containers
Container sequencing strategies
Dijkstra algorithm
Climate change

Journal

Maritime Economics and Logistics cover
Maritime Economics and Logistics
IF:
4.8
Papers:
494
Citations:
1.5K

Organization

B
Brawijaya University
Scholars:
3.1K
Papers: 1.4K
Citations: 10
K
kobe university
Scholars:
1.6W
Papers: 1.2W
Citations: 8