Chance-constrained programming with robustness for lot-sizing and scheduling problems under complex uncertainty

IF 1.9 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS
Jizhuang Hui, Shuai Wang, Zhu Bin, Guangwei Xiong, Jingxiang Lv
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引用次数: 0

Abstract

Purpose The purpose of this paper deals with a capacitated multi-item dynamic lot-sizing problem with the simultaneous sequence-dependent setup scheduling of the parallel resource under complex uncertainty. Design/methodology/approach An improved chance-constrained method is developed, in which confidence level of uncertain parameters is used to process uncertainty, and based on this, the reliability of the constraints is measured. Then, this study proposes a robust reconstruction method to transform the chance-constrained model into a deterministic model that is easy to solve, in which the robust transformation methods are used to deal with constraints with uncertainty on the right/left. Then, experimental studies using a real-world production data set provided by a gearbox synchronizer factory of an automobile supplier is carried out. Findings This study has demonstrated the merits of the proposed approach where the inventory of products tends to increase with the increase of confidence level. Due to a larger confidence level may result in a more strict constraint, which means that the decision-maker becomes more conservative, and thus tends to satisfy more external demands at the cost of an increase of production and stocks. Research limitations/implications Joint decisions of production lot-sizing and scheduling widely applied in industries can effectively avert the infeasibility of lot-size decisions, caused by capacity of lot-sing alone decision and complex uncertainty such as product demand and production cost. is also challenging. Originality/value This study provides more choices for the decision-makers and can also help production planners find bottleneck resources in the production system, thus developing a more feasible and reasonable production plan in a complex uncertain environment.
具有鲁棒性的机会约束规划求解复杂不确定性下的批量和调度问题
目的研究复杂不确定性条件下具有并行资源同步顺序依赖的多产品动态批量问题。设计/方法/途径提出了一种改进的机会约束方法,该方法利用不确定参数的置信度来处理不确定性,并在此基础上测量约束的可靠性。然后,本文提出了一种鲁棒重构方法,将机会约束模型转化为易于求解的确定性模型,其中鲁棒变换方法用于处理左右不确定性约束。然后,利用某汽车供应商的变速箱同步器工厂提供的真实生产数据集进行了实验研究。本研究证明了所提出的方法的优点,其中产品库存往往随着置信度的增加而增加。由于更大的置信水平可能导致更严格的约束,这意味着决策者变得更加保守,从而倾向于以增加生产和库存为代价来满足更多的外部需求。研究局限/启示生产批量与调度联合决策广泛应用于工业生产中,可以有效避免由于单独决策批量能力和产品需求、生产成本等复杂不确定性而导致的批量决策不可行性。也很有挑战性。独创性/价值本研究为决策者提供了更多的选择,也可以帮助生产计划者找到生产系统中的瓶颈资源,从而在复杂的不确定环境中制定出更可行、更合理的生产计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Assembly Automation
Assembly Automation 工程技术-工程:制造
CiteScore
4.30
自引率
14.30%
发文量
51
审稿时长
3.3 months
期刊介绍: Assembly Automation publishes peer reviewed research articles, technology reviews and specially commissioned case studies. Each issue includes high quality content covering all aspects of assembly technology and automation, and reflecting the most interesting and strategically important research and development activities from around the world. Because of this, readers can stay at the very forefront of industry developments. All research articles undergo rigorous double-blind peer review, and the journal’s policy of not publishing work that has only been tested in simulation means that only the very best and most practical research articles are included. This ensures that the material that is published has real relevance and value for commercial manufacturing and research organizations.
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