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首页> 外文期刊>Proceedings of the Workshop on Principles of Advanced and Distributed Simulation >SIMULATION-BASED OPTIMIZATION IN MAKE-TO-ORDER PRODUCTION: SCHEDULING FOR A SPECIAL-PURPOSE GLASS MANUFACTURER
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SIMULATION-BASED OPTIMIZATION IN MAKE-TO-ORDER PRODUCTION: SCHEDULING FOR A SPECIAL-PURPOSE GLASS MANUFACTURER

机译:订单生产中基于仿真的优化:特殊用途玻璃制造商的计划

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摘要

We consider the problem of determining schedules for make-to-order production of companies that manufacture special purpose glasses. Due to sensitive raw materials and high quality specifications, scheduling is affected by disturbances arising from stochastic processing times and stochastic scrap rates. Scarce machine capacities, limited availability of transportation equipment, and technical or organizational temporal constraints lead to a complex planning problem. Hence, discrete-event simulation is valuable for analyzing the impact and robustness of alternative schedules, but it fails in efficiently guiding the search for optimal control parameters. In order to overcome this drawback, we propose a simulation-based optimization approach that relies on coupling simulation and optimization through a relaxation-based schedule generation procedure. Schedules are generated employing a mixed-integer programming model for which input parameters and additional constraints are iteratively derived using a simulation model. We evaluate our approach considering real-world instances and present preliminary computational results indicating its effectiveness.
机译:我们考虑确定生产特殊用途眼镜的公司的按订单生产时间表的问题。由于敏感的原材料和高质量的规格,调度受到随机处理时间和随机废品率的干扰。机器容量不足,运输设备的可用性有限以及技术或组织的时间限制导致了复杂的计划问题。因此,离散事件模拟对于分析替代计划的影响和鲁棒性非常有价值,但未能有效指导寻找最佳控制参数。为了克服此缺点,我们提出了一种基于仿真的优化方法,该方法依赖于通过基于松弛的计划生成过程进行仿真和优化的耦合。使用混合整数编程模型生成调度表,对于该调度模型,使用仿真模型迭代地得出输入参数和其他约束。我们在考虑实际实例的情况下评估了我们的方法,并提出了初步的计算结果以表明其有效性。

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