DocumentCode
2226676
Title
A genetic algorithm for the distributed assembly permutation flowshop scheduling problem
Author
Li, Xiangtao ; Zhang, Xin ; Yin, Minghao ; Wang, Jianan
Author_Institution
College of computer science, Northeast Normal University, Jilin, 130117, P.R. China
fYear
2015
fDate
25-28 May 2015
Firstpage
3096
Lastpage
3101
Abstract
This paper investigates the problem of minimizing makespan for the distributed assembly permutation flowshop scheduling problem (DAPFSP)-a new generalization of the distributed permutation flowshop scheduling problem (DPFSP). DAPFSP consists of two stages: production and assembly. The first stage is production at several identical factories. Each factory is a permutation flowshop scheduling problem with multi-machine. And the second stage is to assemble jobs produced at the first stage into final products. We proposed a genetic algorithm for this problem. An enhanced crossover strategy and three different local searches are adopted. After the exhaustive computational and statistical analysis, we can conclude that the proposed methods are robust and outperformed the existing algorithm.
Keywords
Assembly; Genetic algorithms; Job shop scheduling; Production facilities; Sociology; Statistics; Crossover; Distributed assembly scheduling; Genetic algorithm; Local search; Permutation flowshop;
fLanguage
English
Publisher
ieee
Conference_Titel
Evolutionary Computation (CEC), 2015 IEEE Congress on
Conference_Location
Sendai, Japan
Type
conf
DOI
10.1109/CEC.2015.7257275
Filename
7257275
Link To Document