An Efficient Integer Programming Model for Solving the Master Planning Problem of Container Vessel Stowage
- Jaike van Twiller(Author),
- Agnieszka Sivertsen(Author),
- Rune Møller Jensen(Author),
- Kent Høj Andersen(Author),
- Alexander Garrido(Editor),
- Carlos Paternina(Editor)
- Roskilde University,
- Sealytix,
- ,
- Aarhus University,
- Tecnológico de Monterrey,
- San Diego State University
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 236-253 (17 pages)Publication milestones
- Published - 08/2024
Publication status
Published - 08/2024
Volume
15168Publisher
Springer, United States, GermanyBook series
- Book series name: Lecture Notes in Computer Science
Volume: 15168
ISSN: 0302-9743
ISBN (Print)
978-3-031-71993-6_16ISBN (Electronic)
978-3-031-71993-6_16Publication IDs
- Scopus: 85205093516
Host publication title
Computational LogisticsAbstract
A crucial role of container shipping is maximizing container uptake onto vessels, optimizing the efficiency of a fundamental part of the global supply chain. In practice, liner shipping companies include block stowage patterns that ensure that containers in above and below deck partitions of bays have the same destination. Despite preventing restows, increasing free space, and benefits for crane makespan and hydrostatics, this practical planning requirement is rarely included in stowage optimization models. In our paper, we introduce a novel 0-1 IP model that searches in the space of valid paired block stowage patterns, named template planning, which ensures sufficient vessel capacity and limits to crane makespan, trim, and bending moment. Our results show that template planning outperforms traditional allocation planning concerning optimality and runtime efficiency while preserving a sufficiently accurate representation of master planning constraints and objectives.
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Access to documents
Accepted author manuscript, 1.2 MB
Related Event
Title
International Conference on Computational Logistics
Event type
ConferenceDegree of recognition
International eventDate
09/09/2024 - 11/09/2024Location
MonterreyMexico
