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A simheuristic approach for throughput maximization of asynchronous buffered stochastic mixed-model assembly lines

机译:异步缓冲的随机混合模型装配线的吞吐量最大化的模拟方法

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Mixed-model assembly lines are large scale production layouts that often operate under uncertainties such as stochastic product sequences. Balancing such lines can be particularly challenging as throughput estimation can be difficult to determine, especially when asynchronous pace and buffers are considered. Recent works have addressed problem variants with a given target throughput, but few authors consider a variant of the throughput maximization of mixed-model assembly line balancing problem. This paper addresses the balancing optimization problem for an assembly line with a given number of workstations and buffers between them. A make-to-order environment is considered, modeled as stochastic sequence of products with known demand rates. A novel specialized cycle time simulator (CTS) is introduced, as well as a simheuristic approach (PSH) that exploits CTS to assess the cycle time of an assembly line and provide good balancing solutions. The proposed simheuristic PSH is applied to a dataset with several buffer layouts, and its solutions are then compared to those of literature benchmarks. Performance comparisons show that PSH's solutions outperform the benchmarks' ones, with statistically significant differences. Furthermore, the solution quality difference was greater for instances with more buffers, highlighting PSH capacity to conveniently exploit buffers in assembly lines. Lastly, analyses on the average processing times of stations, obtained for each buffer layout, partially verifies and question established results of the "bowl phenomenon" on unpaced assembly lines. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混合模型装配线是大规模生产布局,通常在不确定性(例如随机产品序列)下运行。由于吞吐量估计可能难以确定,尤其是在考虑异步步调和缓冲区时,如何平衡这些线路可能尤其具有挑战性。最近的工作已经解决了具有给定目标吞吐量的问题变体,但是很少有作者考虑混合模型装配线平衡问题的吞吐量最大化的变体。本文针对具有给定数量的工作站和它们之间的缓冲区的装配线,解决了平衡优化问题。考虑按订单生产的环境,将其建模为具有已知需求率的产品的随机序列。介绍了一种新颖的专用周期时间模拟器(CTS),以及一种利用CTS评估装配线周期时间并提供良好平衡解决方案的模拟方法(PSH)。拟议的拟启发式PSH应用于具有多个缓冲区布局的数据集,然后将其解决方案与文献基准的解决方案进行比较。性能比较表明,PSH的解决方案优于基准解决方案,具有统计上的显着差异。此外,对于具有更多缓冲区的实例,解决方案质量差异更大,这突出了PSH能够方便地利用流水线中的缓冲区的能力。最后,对每个缓冲区布局获得的站的平均处理时间进行分析,部分验证和质疑无节奏装配线上“碗状现象”的既定结果。 (C)2019 Elsevier Ltd.保留所有权利。

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