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Solving Bi-objective Many-Constraint Bin Packing Problems in Automobile Sheet Metal Forming Processes

机译:解决汽车钣金成型过程中的双目标多约束箱装箱问题

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摘要

The solution of bi-objective bin packing problems with many constraints is of fundamental importance for a wide range of engineering applications such as wireless communication, logistics, or automobile sheet metal forming processes. When the bi-objective bin packing problem is single-constrained, state-of-the-art multi-objective genetic algorithms such as NSGA-II combined with standard constraint handling techniques can be used. In the case of many-constraint bin packing problems, problems with thousand of additional constraints, it is not easy to solve this kind of problem accurately and fast with classical methods. Our approach relies on two key ingredients, NSGA-II and a clustering algorithm in order to generate always feasible solutions independent of the number of constraints. The method allows to tackle bi-objective many-constraint bin packing problems. We will present results for challenging artificial bin packing problems which model typical bi-objective bin packing problems with many constraints arising in the automobile industry.
机译:具有许多约束的双目标箱装箱问题的解决方案对于诸如无线通信,物流或汽车钣金成型工艺等广泛的工程应用而言,具有根本的重要性。当双目标箱装箱问题是单约束时,可以使用最新的多目标遗传算法(例如NSGA-II)与标准约束处理技术相结合。在多约束装箱问题(具有数千个附加约束的问题)的情况下,用经典方法很难准确,快速地解决这种问题。我们的方法依赖于两个关键要素,即NSGA-II和聚类算法,以便生成不受约束数量限制的始终可行的解决方案。该方法允许解决双目标多约束箱包装问题。我们将提出具有挑战性的人工垃圾箱包装问题的结果,该问题将对典型的双目标垃圾箱包装问题进行建模,并在汽车工业中产生许多限制。

著录项

  • 来源
  • 会议地点 Nantes(FR);Nantes(FR)
  • 作者单位

    Department of Computer Science, High Performance and Web Computing Group, University of Basel, Switzerland;

    rnDepartment of Computer Science, High Performance and Web Computing Group, University of Basel, Switzerland;

    rnDepartment of Computer Science, High Performance and Web Computing Group, University of Basel, Switzerland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 理论、方法;
  • 关键词

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