A Variable Block Insertion Heuristic for the Blocking Flowshop Scheduling Problem with Total Flowtime Criterion

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Date

2016

Authors

M. Fatih Tasgetiren
Quanke Pan
Damla Kizilay
Kaizhou Gao

Journal Title

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Volume Title

Publisher

MDPI AG indexing@mdpi.com Postfach Basel CH-4005

Open Access Color

GOLD

Green Open Access

Yes

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No
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Abstract

In this paper we present a variable block insertion heuristic (VBIH) algorithm to solve the blocking flowshop scheduling problem with the total flowtime criterion. In the VBIH algorithm we define a minimum and a maximum block size. After constructing the initial sequence the VBIH algorithm starts with a minimum block size being equal to one. It removes the block from the current sequence and inserts it into the partial sequence sequentially with a predetermined move size. The sequence which is obtained after several block moves goes under a variable local search (VLS) which is based on traditional insertion and swap neighborhood structures. If the new sequence obtained after the VLS local search is better than the current sequence it replaces the current sequence. As long as it improves it keeps the same block size. However if it does not improve the block size is incremented by one and a simulated annealing-type of acceptance criterion is used to accept the current sequence. This process is repeated until the block size reaches at the maximum block size. Furthermore we present a novel constructive heuristic which is based on the profile fitting heuristic from the literature. The proposed constructive heuristic is able to further improve the best known solutions for some larger instances in a few seconds. Parameters of the constructive heuristic and the VBIH algorithm are determined through a design of experiment approach. Extensive computational results on the Taillard's well-known benchmark suite show that the proposed VBIH algorithm outperforms the discrete artificial bee colony algorithm which is one of the most efficient algorithms recently in the literature. Ultimately 52 out of the 150 best known solutions are further improved with substantial margins. © 2019 Elsevier B.V. All rights reserved.

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Keywords

Block Insertion Heuristic, Blocking Flowshop, Constructive Heuristics, Meta-heuristics, Variable Local Search, Design Of Experiments, Evolutionary Algorithms, Local Search (optimization), Scheduling, Simulated Annealing, Block Insertion Heuristic, Blocking Flowshop, Constructive Heuristics, Local Search, Meta Heuristics, Computational Efficiency, Design of experiments, Evolutionary algorithms, Local search (optimization), Scheduling, Simulated annealing, Block insertion heuristic, Blocking flowshop, Constructive heuristics, Local search, Meta heuristics, Computational efficiency, Industrial engineering. Management engineering, Deterministic scheduling theory in operations research, Meta-heuristics, QA75.5-76.95, T55.4-60.8, blocking flowshop, meta-heuristics; blocking flowshop; block insertion heuristic; variable local search; constructive heuristics, Approximation methods and heuristics in mathematical programming, meta-heuristics, Electronic computers. Computer science, Blocking flowshop, block insertion heuristic, constructive heuristics, variable local search

Fields of Science

0211 other engineering and technologies, 02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

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OpenCitations Citation Count
32

Source

Algorithms

Volume

9

Issue

Start Page

71

End Page

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Citations

CrossRef : 32

Scopus : 35

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Mendeley Readers : 20

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