A Variable Iterated Local Search Algorithm for Energy-Efficient No-idle Flowshop Scheduling Problem

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Date

2019

Authors

M. Fatih Tasgetiren
Hande Oztop
Liang Gao
Quan-Ke Pan
Xinyu Li

Journal Title

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Volume Title

Publisher

ELSEVIER SCIENCE BV

Open Access Color

GOLD

Green Open Access

No

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No
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Top 10%
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Average
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Top 10%

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Abstract

No-idle permutation flowshop scheduling problem (NIPFSP) is a well-known NP-hard problem in which each machine must perform the jobs consecutively without any idle time. Even though various algorithms have been proposed for this problem energy efficiency has not been considered in these studies. In this paper we consider a bi-objective energy-efficient NIPFSP (EE-NIPFSP) with the objectives of makespan and total energy consumption. In the studied EE-NIPFSP we employ a speed scaling approach in which there are various speed levels for the jobs. We propose a novel mixed-integer linear programming model for the problem and we obtain Pareto-optimal solution sets for small instances using the augmented E-constraint method. As the studied problem is NP-hard three metaheuristic algorithms are also proposed namely a multi-objective variable iterated local search (MOVILS) algorithm a multi-objective genetic algorithm (MOGA) and a MOGA with local search (MOGA-LS) for the problem. Then the performance of the proposed algorithms is assessed on both small and large instances in terms of various quality measures. The results show that the proposed algorithms are very effective for the EE-NIPFSP in terms of solution quality. Especially MOVILS and MOGA-LS algorithms are more efficient to solve large instances when compared to the MOGA. (C) 2019 The Authors. Published by Elsevier Ltd.

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Keywords

no-idle flowshop scheduling, energy-efficient scheduling, multi-objective optimization, iterated local search, genetic algorithm, DIFFERENTIAL EVOLUTION, POWER-CONSUMPTION, MAKESPAN

Fields of Science

0211 other engineering and technologies, 02 engineering and technology

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OpenCitations Citation Count
10

Source

25th International Conference on Production Research Manufacturing Innovation (ICPR) - Cyber Physical Manufacturing

Volume

39

Issue

Start Page

1185

End Page

1193
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Scopus : 14

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