Minimizing makespan for the distributed hybrid flowshop scheduling problem with multiprocessor tasks
•This paper is the first research to solve the distributed hybrid flowshop scheduling problem.•The proposed SIG algorithm provides a practical means of solving this problem.•This study contributes significantly to expand the research on distributed scheduling problems. The trend of globalization has...
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| Published in: | Expert systems with applications Vol. 92; pp. 132 - 141 |
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| Main Authors: | , |
| Format: | Journal Article |
| Language: | English |
| Published: |
New York
Elsevier Ltd
01.02.2018
Elsevier BV |
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| ISSN: | 0957-4174, 1873-6793 |
| Online Access: | Get full text |
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| Abstract | •This paper is the first research to solve the distributed hybrid flowshop scheduling problem.•The proposed SIG algorithm provides a practical means of solving this problem.•This study contributes significantly to expand the research on distributed scheduling problems.
The trend of globalization has recently seen the study of distributed scheduling problems. This study attempts to solve the distributed hybrid flowshop scheduling problem with multiprocessor tasks, and is the first attempt to address this problem. To solve this strongly NP-hard problem, a mixed integer linear programming formulation and self-tuning iterated greedy (SIG) algorithm that incorporates an adaptive cocktail decoding mechanism are presented to minimize the makespan. Comprehensive computational results demonstrate that the proposed SIG algorithm is extremely efficient and effective. This paper successfully expands the research area of distributed scheduling problems. |
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| AbstractList | The trend of globalization has recently seen the study of distributed scheduling problems. This study attempts to solve the distributed hybrid flowshop scheduling problem with multiprocessor tasks, and is the first attempt to address this problem. To solve this strongly NP-hard problem, a mixed integer linear programming formulation and self-tuning iterated greedy (SIG) algorithm that incorporates an adaptive cocktail decoding mechanism are presented to minimize the makespan. Comprehensive computational results demonstrate that the proposed SIG algorithm is extremely efficient and effective. This paper successfully expands the research area of distributed scheduling problems. •This paper is the first research to solve the distributed hybrid flowshop scheduling problem.•The proposed SIG algorithm provides a practical means of solving this problem.•This study contributes significantly to expand the research on distributed scheduling problems. The trend of globalization has recently seen the study of distributed scheduling problems. This study attempts to solve the distributed hybrid flowshop scheduling problem with multiprocessor tasks, and is the first attempt to address this problem. To solve this strongly NP-hard problem, a mixed integer linear programming formulation and self-tuning iterated greedy (SIG) algorithm that incorporates an adaptive cocktail decoding mechanism are presented to minimize the makespan. Comprehensive computational results demonstrate that the proposed SIG algorithm is extremely efficient and effective. This paper successfully expands the research area of distributed scheduling problems. |
| Author | Lin, Shih-Wei Ying, Kuo-Ching |
| Author_xml | – sequence: 1 givenname: Kuo-Ching surname: Ying fullname: Ying, Kuo-Ching email: kcying@ntut.edu.tw organization: Department of Industrial Engineering and Management, National Taipei University of Technology, Taipei, Taiwan, ROC – sequence: 2 givenname: Shih-Wei surname: Lin fullname: Lin, Shih-Wei email: swlin@mail.cgu.edu.tw organization: Department of Information Management, Chang Gung University, Taoyuan, Taiwan, ROC |
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| Keywords | Adaptive cocktail decoding mechanism Self-tuning iterated greedy algorithm Scheduling Distributed hybrid flowshop |
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| Snippet | •This paper is the first research to solve the distributed hybrid flowshop scheduling problem.•The proposed SIG algorithm provides a practical means of solving... The trend of globalization has recently seen the study of distributed scheduling problems. This study attempts to solve the distributed hybrid flowshop... |
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| SubjectTerms | Adaptive algorithms Adaptive cocktail decoding mechanism Algorithms Decoding Distributed hybrid flowshop Globalization Greedy algorithms Integer programming Linear programming Mixed integer Multiprocessing Scheduling Scheduling algorithms Self-tuning iterated greedy algorithm Task scheduling |
| Title | Minimizing makespan for the distributed hybrid flowshop scheduling problem with multiprocessor tasks |
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