Mixed-Integer Programming Strategies for Reducing Rehandling in Multi-Customer Distribution Operations
DOI:
https://doi.org/10.18687/LACCEI2026.1.1.1664Palabras clave:
Mixed-integer programming, Container loading problem, Unloading constraints (multi-drop).Resumen
In the current context of global logistics, the optimization of operational costs is essential to maintain the competitiveness of supply chains. In particular, decisions related to load planning and unloading operations in multi-drop distribution systems play a crucial role in overall operational performance. In this regard, this paper addresses the Multi-Drop Container Loading Problem, integrating critical variables such as customer delivery sequences and the dimensional characteristics of the items. A mixed-integer programming model is proposed to efficiently organize the load, minimizing unnecessary rehandling during the unloading process through the incorporation of a last-in, first-out (LIFO) constraint. In addition, an auxiliary mathematical model is introduced to adjust the initial solution and ensure a physically coherent and stable load configuration. The proposed methodology is validated through case studies implemented in AMPL and Python Colab, demonstrating that the proposed approach not only optimizes the use of available space but also facilitates faster and more orderly unloading operations.Descargas
Publicado
2026-07-27
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Derechos de autor 2026 LACCEI
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Esta obra está bajo una Licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 Internacional.
LACCEI conserva el copyright de todos los artículos publicados bajo los términos de su acuerdo de transferencia de copyright. Como titular del copyright, LACCEI distribuye los artículos al público bajo la Licencia Internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0 (CC BY-NC-SA 4.0).
Cómo citar
Fernández Pérez, M., Díaz Chávez, S., Fernández Farfán, C., & Aragon Casas, L. (2026). Mixed-Integer Programming Strategies for Reducing Rehandling in Multi-Customer Distribution Operations. LACCEI, 1(14). https://doi.org/10.18687/LACCEI2026.1.1.1664