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Integrated methodology for board assignment and component allocation in printed circuit board assembly

机译:印刷电路板组件中的电路板分配和组件分配的集成方法

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摘要

An approach to minimize makespan for assigning boards to production lines is described. Because of sequence-dependent set-up times, board assignment and component allocation have to be performed concurrently. An integrated methodology is developed to obtain a solution to these two problems. The methodology consists of seven phases: printed circuit board grouping, family decomposition, subfamily sequencing, Keep Tool Needed Soonest (KTNS) procedure, component set-up determination, component allocation and board assignment. Application of the methodology to industrial problems demonstrates that it can solve large-scale problems efficiently. In addition, the effect of two key parameters, feeder capacity and threshold value, on the performance of the solution procedure was examined. The results indicate that feeder capacity has an impact on total workload imbalance but not on the global makespan. Threshold value, a measure of effectiveness of joining a component type to a component group for a printed circuit board family, has a significant effect on the global makespan. The interactions of threshold value, and variations in printed circuit board requirement and component usage also affect global makespan.
机译:描述了一种最小化用于将板分配给生产线的制造期的方法。由于取决于序列的设置时间,因此必须同时执行电路板分配和组件分配。开发了一种综合方法来解决这两个问题。该方法包括七个阶段:印刷电路板分组,族分解,子族排序,保持Knest Tool Soonest(KTNS)程序,组件设置确定,组件分配和电路板分配。该方法论在工业问题上的应用表明,它可以有效地解决大规模问题。此外,还研究了进料器容量和阈值这两个关键参数对解决程序性能的影响。结果表明,接驳器容量对总工作量失衡有影响,但对全球工期没有影响。阈值是将组件类型连接到印刷电路板系列的组件组的有效性的一种度量,它对整体制造期具有重大影响。阈值的相互作用以及印刷电路板要求和组件使用的变化也会影响整体制造期。

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