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作 者:陈亚绒[1] 何华鑫 黄成军 黄沈权[1] CHEN Ya-rong;HE Hua-xin;HUANG Cheng-jun;HUANG Shen-quan(College of Mechanical and Electronic Engineering,Wenzhou University,Wenzhou 325035,China)
出 处:《系统工程》2021年第5期134-142,共9页Systems Engineering
基 金:国家自然科学基金资助项目(51705370);浙江省高等教育十三五教学改革项目(jg20190406)。
摘 要:针对具有瓶颈资源的一般流水车间,考虑与工件排序相关的安装时间,以最小化产出时间与拖期率为目标,设计了瓶颈驱动的集成负荷控制方法。通过FlexSim^(@)建模仿真比较了仅在车间调度层或投放层考虑安装时间节约的局部策略以及同时在订单投放层与车间调度层考虑安装时间节约的集中策略的绩效差异。结果表明,集中策略优于局部策略。本文提出的既考虑瓶颈资源当前加工工件类型也考虑上游即将到达工件类型的投放规则可以更好地节约安装时间,改善集中策略的绩效。An integrated workload control method by bottleneck driven is designed for general flow shop with bottleneck resource, considering sequence-dependent setup times and aiming at minimizing throughput time and tardy rate. The performance differences between the local strategy considering setup times saving only at the shop scheduling level and the centralized strategy considering setup times saving at the order release level and shop scheduling level are compared by FlexSim^(@). The results show that the centralized strategy is superior to the local strategy. In this paper, the release rule that considers both the current job type and the upstream job type can save the setup time and improve the performance of the centralized strategy.
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