基于工作量控制的变紧急作业车间调度:一种仿真评估

IF 2.5 Q2 ENGINEERING, INDUSTRIAL
Mingze Yuan, Lin Ma, Ting Qu, Matthias Thürer
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引用次数: 0

摘要

在按订单生产的公司种类繁多的情况下,满足客户的时间要求是一项重大挑战。公司需要缩短交付周期,及时处理紧急工作,同时实现高交付可靠性。工作负载控制(WLC)中的关键决策阶段是订单发布和车间调度。据我们所知,最近的研究主要集中在订单发布阶段,而无意中忽略了车间调度阶段。同时,工作的紧迫性不仅与预产期有关,还受到车间动态的影响。具体而言,由于紧急作业的优先调度加快了上游作业的生产速度,因此作业路线中下游作业的紧迫性可能会降低。占用生产资源增加了非紧急工作在工作站的等待时间。这种现象导致了工作紧迫性的改变。因此,对紧急工作的错误判断可能导致实际的紧急工作没有得到及时处理。作为回应,作者将重点放在车间调度阶段,并在WLC的背景下考虑紧急操作的瞬态状态。在每个工作站的输入缓冲区重新调整作业的紧急性,首先将其定义为紧急操作和非紧急操作。仿真结果表明,考虑紧急作业的瞬态有助于加快实际紧急作业的生产速度,并满足通用流程车间和纯作业车间的交付性能。此外,延迟表现的百分比在很大程度上受到规范水平的影响,尤其是在严重紧急情况下。这些对如何设计紧急作业以及如何在车间调度阶段设定规范水平具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Shop floor dispatching with variable urgent operations based on Workload Control: An assessment by simulation

Shop floor dispatching with variable urgent operations based on Workload Control: An assessment by simulation

Meeting customer time requirements poses a major challenge in the context of high-variety make-to-order companies. Companies need to reduce the lead time and process urgent jobs in time, while realising high delivery reliability. The key decision stages within Workload Control (WLC) are order release and shop floor dispatching. To the best of our knowledge, recent research has mainly focused on order release stage and inadvertently ignored shop floor dispatching stage. Meanwhile, urgency of job is not only related to its due date, but also affected by the dynamics of shop floor. Specifically, urgency of jobs may decrease at downstream operations in the job's routing, since priority dispatching for urgent jobs accelerates production speed at the upstream operations. And occupying production resources increases the waiting time of non-urgent jobs at workstation. This phenomenon leads to the change of urgency of jobs. Misjudgement of urgent jobs therefore may result in actual urgent jobs not being processed in time. In response, the authors focus on shop floor dispatching stage and consider the transient status of urgent operations in the context of WLC. The urgency of jobs is rejudged at the input buffer of each workstation, which is firstly defined as urgent operations and non-urgent operations. Using simulation, the results show that considering the transient status of urgent operations contributes to speeding up production for actual urgent jobs and meeting delivery performance both in General Flow Shop and Pure Job Shop. In addition, percentage tardy performance is greatly affected by norm levels, especially at the severe urgent level. These have important implications on how urgent operations should be designed and how norm level should be set at shop floor dispatching stage.

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来源期刊
IET Collaborative Intelligent Manufacturing
IET Collaborative Intelligent Manufacturing Engineering-Industrial and Manufacturing Engineering
CiteScore
9.10
自引率
2.40%
发文量
25
审稿时长
20 weeks
期刊介绍: IET Collaborative Intelligent Manufacturing is a Gold Open Access journal that focuses on the development of efficient and adaptive production and distribution systems. It aims to meet the ever-changing market demands by publishing original research on methodologies and techniques for the application of intelligence, data science, and emerging information and communication technologies in various aspects of manufacturing, such as design, modeling, simulation, planning, and optimization of products, processes, production, and assembly. The journal is indexed in COMPENDEX (Elsevier), Directory of Open Access Journals (DOAJ), Emerging Sources Citation Index (Clarivate Analytics), INSPEC (IET), SCOPUS (Elsevier) and Web of Science (Clarivate Analytics).
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