A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement

This paper presents a novel linear mathematical model for integrated cell formation and task scheduling in the cellular manufacturing system (CMS). It is suitable for the dual-resource constrained setting, such as garment process, component assembly, and electronics manufacturing. The model can hand...

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Main Authors: Jufeng Wang, Chunfeng Liu, Kai Li
Format: Article
Language:English
Published: Taylor & Francis Group 2019-04-01
Series:Automatika
Subjects:
Online Access:http://dx.doi.org/10.1080/00051144.2019.1603264
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spelling doaj-6faa83067fd54795a5878fb157bd1b652020-11-25T00:50:35ZengTaylor & Francis GroupAutomatika0005-11441848-33802019-04-0160217218010.1080/00051144.2019.16032641603264A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movementJufeng Wang0Chunfeng Liu1Kai Li2China Jiliang UniversityHangzhou Dianzi UniversityHefei University of TechnologyThis paper presents a novel linear mathematical model for integrated cell formation and task scheduling in the cellular manufacturing system (CMS). It is suitable for the dual-resource constrained setting, such as garment process, component assembly, and electronics manufacturing. The model can handle the manufacturing project composing of some tasks with precedence constraints. It provides a method to assign the multi-skilled workers to appropriate machines. The workers are allowed to move among the machines such that the processing time of tasks might be reduced. A hybrid simulated annealing (HSA) is proposed to minimize the makespan of manufacturing project in the CMS. The approach combines the priority rule based heuristic algorithm (PRBHA) and revised forward recursion algorithm (RFRA) with conventional simulated annealing (SA). The result of extensive numerical experiments shows that the proposed HSA outperforms the conventional SA accurately and efficiently.http://dx.doi.org/10.1080/00051144.2019.1603264Cellular manufacturing systemtask schedulingprecedence constraintsimulated annealingheuristic
collection DOAJ
language English
format Article
sources DOAJ
author Jufeng Wang
Chunfeng Liu
Kai Li
spellingShingle Jufeng Wang
Chunfeng Liu
Kai Li
A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
Automatika
Cellular manufacturing system
task scheduling
precedence constraint
simulated annealing
heuristic
author_facet Jufeng Wang
Chunfeng Liu
Kai Li
author_sort Jufeng Wang
title A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
title_short A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
title_full A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
title_fullStr A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
title_full_unstemmed A hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
title_sort hybrid simulated annealing for scheduling in dual-resource cellular manufacturing system considering worker movement
publisher Taylor & Francis Group
series Automatika
issn 0005-1144
1848-3380
publishDate 2019-04-01
description This paper presents a novel linear mathematical model for integrated cell formation and task scheduling in the cellular manufacturing system (CMS). It is suitable for the dual-resource constrained setting, such as garment process, component assembly, and electronics manufacturing. The model can handle the manufacturing project composing of some tasks with precedence constraints. It provides a method to assign the multi-skilled workers to appropriate machines. The workers are allowed to move among the machines such that the processing time of tasks might be reduced. A hybrid simulated annealing (HSA) is proposed to minimize the makespan of manufacturing project in the CMS. The approach combines the priority rule based heuristic algorithm (PRBHA) and revised forward recursion algorithm (RFRA) with conventional simulated annealing (SA). The result of extensive numerical experiments shows that the proposed HSA outperforms the conventional SA accurately and efficiently.
topic Cellular manufacturing system
task scheduling
precedence constraint
simulated annealing
heuristic
url http://dx.doi.org/10.1080/00051144.2019.1603264
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