A hybrid approach of simulation and metaheuristic for the polyhedra packing problem

IF 1.6 3区 工程技术 Q4 ENGINEERING, INDUSTRIAL International Journal of Industrial Engineering Computations Pub Date : 2022-01-01 DOI:10.5267/j.ijiec.2021.7.003
Germán Fernando Pantoja-Benavides, D. Álvarez-Martínez
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引用次数: 3

Abstract

This document presents a simulation-based method for the polyhedra packing problem (PPP). This problem refers to packing a set of irregular polyhedra (convex and concave) into a cuboid with the objective of minimizing the cuboid’s volume, considering non-overlapping and containment constraints. The PPP has applications in additive manufacturing and packing situations where volume is at a premium. The proposed approach uses Unity® as the simulation environment and considers nine intensification and two diversification movements. The intensification movements induce the items within the cuboid to form packing patterns allowing the cuboid to decrease its size with the help of gravity-like accelerations. On the other hand, the diversification movements are classic transition operators such as removal and filling of pieces and enlargement of the container, which allow searching on different solution neighborhoods. All simulated movements were hybridized with a probabilistic tabu search. The proposed methodology (with and without the hybridization) was compared by benchmarking with all previous works solving the PPP with irregular items. Results show that satisfactory solutions were reached in a short time; even a few published results were improved.
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多面体布局问题的模拟与元启发式混合方法
本文提出了一种基于仿真的多面体布局问题求解方法。该问题涉及将一组不规则多面体(凸和凹)填充到一个长方体中,目标是最小化长方体的体积,同时考虑非重叠和包含约束。PPP应用于增材制造和包装的情况下,体积是一个溢价。所提出的方法使用Unity®作为模拟环境,并考虑了九个强化和两个多样化运动。强化运动诱导长方体内的物品形成包装模式,允许长方体在类似重力的加速度的帮助下减小其尺寸。另一方面,多样化运动是经典的转移算子,如移除和填充碎片和扩大容器,允许搜索不同的解邻域。所有的模拟运动混合了一个概率禁忌搜索。提出的方法(带和不带杂交)通过基准测试与所有先前解决具有不规则项目的购买力平价的工作进行比较。结果表明,在较短的时间内得到了满意的解决方案;甚至一些已发表的结果也得到了改进。
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来源期刊
CiteScore
5.70
自引率
9.10%
发文量
35
审稿时长
20 weeks
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