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An integrated scheduling problem of PCB components on sequential pick-and-place machines : mathematical models and heuristic solutions

机译:顺序取放机器上PCB组件的集成调度问题:数学模型和启发式解决方案

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摘要

This paper formulates several mathematical models for determining the optimal sequence of component placements and assignment of component types to feeders simultaneously or the integrated scheduling problem for a type of surface mount technology placement machines, called the sequential pick-and-place (PAP) machine. A PAP machine has multiple stationary feeders storing components, a stationary working table holding a printed circuit board (PCB), and a movable placement head to pick up components from feeders and place them to a board. The objective of integrated problem is to minimize the total distance traveled by the placement head. Two integer nonlinear programming models are formulated first. Then, each of them is equivalently converted into an integer linear type. The models for the integrated problem are verified by two commercial packages. In addition, a hybrid genetic algorithm previously developed by the authors is adopted to solve the models. The algorithm not only generates the optimal solutions quickly for small-sized problems, but also outperforms the genetic algorithms developed by other researchers in terms of total traveling distance.
机译:本文提出了几种数学模型,用于确定最佳的零件放置顺序和同时将零件类型分配给给料机,或者确定一种类型的表面安装技术放置机器(称为顺序拾取和放置(PAP)机器)的综合调度问题。 PAP机器具有多个固定的进料器,用于存储元件,固定有印刷电路板(PCB)的固定工作台以及可移动的放置头,用于从进料器中拾取元件并将它们放置到板上。集成问题的目的是最小化贴装头移动的总距离。首先制定了两个整数非线性规划模型。然后,将它们中的每一个等效地转换为整数线性类型。集成问题的模型由两个商业软件包验证。此外,采用了作者先前开发的混合遗传算法来求解模型。该算法不仅可以快速生成针对小问题的最优解,而且在总行驶距离方面也优于其他研究人员开发的遗传算法。

著录项

  • 作者

    Ho, W; Ji, P;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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