An iterated local search algorithm for distributed assembly permutation flowshop problem

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Date

2020

Authors

Ying-Ying Huang
Quan-ke Pan
XiaoLu Hu
Mehmet Fatih Tasgetiren
Jiang-ping Huang

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Publisher

IEEE

Open Access Color

Green Open Access

No

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Abstract

Nowadays the distributed assembly permutation flowshop problem (DAPFSP) has important applications in practice. In this paper we propose a group iterated local search (gILS) algorithm to solve the problem with total flowtime (TF) criterion. We use the heuristic method based on a ascending order which is originated from the NEH. In order to simplify and optimize the algorithm we introduce two kinds of local search methods based on products and jobs respectively. In addition considering the diversity of search area we propose a probabilistic random selection based on the TF value and the number of iterations to determine the optimized solution. Acceptance criterion is a simple comparison to determine whether a new solution is acceptable or not. Finally we calculate 180 instances with our proposed algorithm and compare the results with those from the recent effective algorithms. The results verify the superiority of the presented gILS algorithm.

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Keywords

Distributed flowshop scheduling, Assembly line scheduling, Iterated local search, Total flowtime, SEQUENCE-DEPENDENT SETUP, SCHEDULING PROBLEM, GENETIC ALGORITHM, Distributed Flowshop Scheduling, Total Flowtime, Assembly Line Scheduling, Iterated Local Search

Fields of Science

0211 other engineering and technologies, 02 engineering and technology

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OpenCitations Citation Count
2

Source

39th Chinese Control Conference (CCC)

Volume

2020-July

Issue

Start Page

1548

End Page

1552
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CrossRef : 1

Scopus : 2

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