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Using a random restart hill-climbing algorithm to reduce component assembly time in printed circuit boards

机译:使用随机重启爬坡算法来减少印刷电路板中的组件组装时间

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This paper presents a heuristic for reducing component placement time in assembling a printed circuit board using the random restart hill-climbing method. The assembly problem is divided into four different and related sub-problems: definition of the component placement sequence, definition of the distribution of the components in the magazines, definition of the pickup sequence, definition of the nozzle sequence. The random restart hill-climbing method was used in two different stages: in the first stage to optimize the component placement sequence and the component distribution sequence in the magazines, in a global optimization process; in the second stage, to optimize the placement sequence and the pickup sequence in the local process. The results show the best performance of the proposed method compared with three other methods: one using a genetic algorithm, another using a memetic algorithm and a third solution provided by machine manufacturing.
机译:本文提出了一种使用随机重启爬坡方法来减少组装印刷电路板时减少元件放置时间的启发式方法。组装问题分为四个不同且相关的子问题:零件放置顺序的定义,盒中零件分布的定义,拾取顺序的定义,喷嘴顺序的定义。随机重启爬山方法用于两个不同的阶段:第一阶段是在全局优化过程中优化零件在杂志中的放置顺序和零件分配顺序;在第二阶段,以优化本地处理中的放置顺序和拾取顺序。结果表明,与其他三种方法相比,该方法的最佳性能:一种是使用遗传算法,另一种是使用模因算法,第三种是机器制造提供的解决方案。

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