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Hybrid Approach for Solving Real-World Bin Packing Problem Instances Using Quantum Annealers

Emerging Technologies 2023-08-04 v3 Artificial Intelligence Quantum Physics

Abstract

Efficient packing of items into bins is a common daily task. Known as Bin Packing Problem, it has been intensively studied in the field of artificial intelligence, thanks to the wide interest from industry and logistics. Since decades, many variants have been proposed, with the three-dimensional Bin Packing Problem as the closest one to real-world use cases. We introduce a hybrid quantum-classical framework for solving real-world three-dimensional Bin Packing Problems (Q4RealBPP), considering different realistic characteristics, such as: i) package and bin dimensions, ii) overweight restrictions, iii) affinities among item categories and iv) preferences for item ordering. Q4RealBPP permits the solving of real-world oriented instances of 3dBPP, contemplating restrictions well appreciated by industrial and logistics sectors.

Keywords

Cite

@article{arxiv.2303.01977,
  title  = {Hybrid Approach for Solving Real-World Bin Packing Problem Instances Using Quantum Annealers},
  author = {Sebastián V. Romero and Eneko Osaba and Esther Villar-Rodriguez and Izaskun Oregi and Yue Ban},
  journal= {arXiv preprint arXiv:2303.01977},
  year   = {2023}
}

Comments

11 pages, 5 figures. Paper submitted for its review in Scientific Reports

R2 v1 2026-06-28T08:59:45.704Z