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A Computational Method for Identifying the Optimum Buffer Size in the Era of Zero Defect Manufacturing

机译:用于识别零缺陷制造时代的最佳缓冲区大小的计算方法

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Decreasing defects, waste time, meeting customer demand and being adaptable are the goals of a Zero Defect Manufacturing (ZDM) strategy. Scheduling is an important tool to perform that. It should take in account buffer size allocation. In this study, a method to solve the Buffer Sizing Problem (BSP), which is NP-hard problem. The current research work focuses on finding the optimal buffer allocation using Tabu-search (TS) algorithm. The goal is to minimize buffers' sizes while maintaining a certain productivity. The evaluation of the alternative buffer solutions were performed using the following performance indicators; Makespan, Tardiness and the Buffers Cost. In the developed method the following are considered: multitasking machines subjected to non-deterministic failure, non-homogeneous buffer sizing, and non-sequential production line. The propose approach was tested via a real life industrial use case from a leading Swiss company in high precision sensors. The simulation results showed that the proposed methodology can effectively design the buffer strategy for complex production lines.
机译:减少缺陷,浪费时间,满足客户需求和适应性是零缺陷制造(ZDM)策略的目标。调度是执行该的重要工具。它应该考虑缓冲区大小分配。在本研究中,一种解决缓冲器尺寸问题(BSP)的方法,这是NP难题。目前的研究工作侧重于使用Tabu-Search(TS)算法找到最佳缓冲区分配。目标是尽量减少缓冲区大小,同时保持一定的生产率。使用以下性能指标进行替代缓冲溶液的评价; Makespan,迟到和缓冲成本。在开发的方法中,考虑以下内容:经受非确定性故障,非均匀缓冲尺寸和非顺序生产线的多任务机。该提议方法通过现实生活工业用途案例从高精度传感器的领先瑞士公司进行测试。仿真结果表明,该方法可以有效地设计复杂生产线的缓冲策略。

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