A discrete artificial bee colony algorithm for the energy-efficient no-wait flowshop scheduling problem

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Date

2019

Authors

M. Fatih Tasgetiren
Damla Yüksel
Liang Gao
Quanke Pan
Peigen Li

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Volume Title

Publisher

Elsevier B.V.

Open Access Color

GOLD

Green Open Access

No

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Abstract

No-wait permutation flow shop scheduling problem (NWPFSP) is a variant of permutation flow shop scheduling problem (PFSP) where the processing of each job must be continuous from start to end without any interruption. That is once a job starts its processing it has to be processed until the last machine without any interruption. The aim of this study is to propose an energy-efficient NWPFSP for the determination of a trade-off between total flow time and total energy consumption by obtaining the Pareto optimal set that is the non-dominated solution set. A bi-objective mixed-integer programming model is developed where the machines can operate at different speed levels. Since the problem is NP-complete an energy-efficient discrete artificial bee colony (DABC) and an energy-efficient genetic algorithm (MOGA) also a variant of this algorithm (MOGALS) are developed as heuristic methods. First the performance of these algorithms for comparison with the mathematical model is represented in small size instances in the scope of cardinality and quality of the non-dominated solutions then it is shown that DABC performs better than two other algorithms in larger instances. © 2020 Elsevier B.V. All rights reserved.

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Keywords

Bi-objective Optimization, Energy-efficient Scheduling, Heuristic Optimization, No-wait Permutation Flow Shop Scheduling Problem

Fields of Science

0209 industrial biotechnology, 0211 other engineering and technologies, 02 engineering and technology

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OpenCitations Citation Count
12

Source

25th International Conference on Production Research Manufacturing Innovation: Cyber Physical Manufacturing ICPR 2019

Volume

39

Issue

Start Page

1223

End Page

1231
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CrossRef : 12

Scopus : 11

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