A physical packing sequence algorithm for the container loading problem with static mechanical equilibrium conditions


Autoria(s): Ramos, António; Oliveira, José; Lopes, Manuel Pereira
Data(s)

12/01/2015

12/01/2015

2014

Resumo

The container loading problem (CLP) is a combinatorial optimization problem for the spatial arrangement of cargo inside containers so as to maximize the usage of space. The algorithms for this problem are of limited practical applicability if real-world constraints are not considered, one of the most important of which is deemed to be stability. This paper addresses static stability, as opposed to dynamic stability, looking at the stability of the cargo during container loading. This paper proposes two algorithms. The first is a static stability algorithm based on static mechanical equilibrium conditions that can be used as a stability evaluation function embedded in CLP algorithms (e.g. constructive heuristics, metaheuristics). The second proposed algorithm is a physical packing sequence algorithm that, given a container loading arrangement, generates the actual sequence by which each box is placed inside the container, considering static stability and loading operation efficiency constraints.

Identificador

Ramos, A. G., Oliveira, J. F. and Lopes, M. P. (2014), A physical packing sequence algorithm for the container loading problem with static mechanical equilibrium conditions. International Transactions in Operational Research. doi: 10.1111/itor.12124

http://hdl.handle.net/10400.22/5380

10.1111/itor.12124

Idioma(s)

eng

Publicador

John Wiley & Sons Ltd

Relação

StableCargo—PTDC/SEN-TRA/121715/2010

PTDC/EGE-GES/117692/2010

BEST CASE—SAESCTN-PIIC\ &DT/1/2011

International Transactions in Operational Research;

http://onlinelibrary.wiley.com/doi/10.1111/itor.12124/abstract

Direitos

openAccess

Palavras-Chave #Physical packing sequence #Container loading #3D packing #Static stability
Tipo

article