Maximising Space Utilisation in Australia's Container Terminals Using Simulation-Driven Automation Author Names: Optimising Container Parking in Australian Terminals: A Simulation-Based Automation Approach
Paper
| Paper/Presentation Title | Maximising Space Utilisation in Australia's Container Terminals Using Simulation-Driven Automation Author Names: Optimising Container Parking in Australian Terminals: A Simulation-Based Automation Approach |
|---|---|
| Presentation Type | Paper |
| Authors | Abdulla, S., Ali, K. and Ali, M. |
| Journal or Proceedings Title | Australasian Coasts & Ports 2025 Conference – Adelaide, SA, 18 - 21 August 2025 |
| Number of Pages | 4 |
| Year | 2025 |
| Place of Publication | Adelaide, SA |
| Web Address (URL) of Paper | https://www.researchgate.net/publication/397411346_Maximising_Space_Utilisation_in_Australia's_Container_Terminals_Using_Simulation-Driven_Automation_Author_Names_Optimising_Container_Parking_in_Australian_Terminals_A_Simulation-Based_Automation_Appro#fullTextFileContent |
| Web Address (URL) of Conference Proceedings | https://www.researchgate.net/publication/397411346_Maximising_Space_Utilisation_in_Australia's_Container_Terminals_Using_Simulation-Driven_Automation_Author_Names_Optimising_Container_Parking_in_Australian_Terminals_A_Simulation-Based_Automation_Appro#fullTextFileContent |
| Conference/Event | 2025 Australasian Coasts and Ports Conference At: Adeliade ,Australia |
| Event Details | 2025 Australasian Coasts and Ports Conference At: Adeliade ,Australia |
| Abstract | Australia's container terminals are facing increasing pressure due to rising trade volumes, leading to congestion and inefficiencies in space utilisation. Maximising terminal capacity through effective container parking strategies is critical to ensuring seamless operations. This research aims to discover innovative methods to maximise yard space in Australian container terminals, enabling them to store more containers within existing land constraints. The study investigates cutting-edge techniques for optimising container storage, including vertical space utilisation, modern yard layout concepts, and advanced container stacking strategies. By leveraging these approaches, the objective is to provide insights that allow terminals to handle a higher volume of containers, improving their operational effectiveness and competitiveness in international shipping. This paper presents a simulation-based approach using AnyLogic to evaluate an automated container parking system for optimised space allocation and improved terminal performance. The model incorporates real-world operational constraints such as container stacking rules, crane operations, and dynamic space requirements. Various automation strategies, including intelligent parking algorithms and real-time decision-making frameworks, are tested to assess their impact on space utilisation, container retrieval efficiency, and overall throughput. Simulation results demonstrate that automation significantly enhances terminal capacity by reducing container relocation moves, minimising idle times, and optimising yard storage density. Additionally, findings indicate that automated container management can lead to cost savings, improved turnaround times, and enhanced operational sustainability. The study provides valuable insights for port authorities, terminal operators, and policymakers seeking data-driven strategies to improve container terminal efficiency. |
| Keywords | Container terminal automation, space optimisation, AnyLogic simulation, intelligent parkingsystems, port efficiency |
| Contains Sensitive Content | Does not contain sensitive content |
| ANZSRC Field of Research 2020 | 400702. Automation engineering |
| Byline Affiliations | UniSQ College (English Language) |
| UniSQ College | |
| UniSQ College (Pathways) | |
| Centre for Applied Climate Sciences | |
| Centre for Astrophysics |
https://research.usq.edu.au/item/100947/maximising-space-utilisation-in-australia-s-container-terminals-using-simulation-driven-automation-author-names-optimising-container-parking-in-australian-terminals-a-simulation-based-automation
3
total views0
total downloads3
views this month0
downloads this month