Open Access
2014 Multiobjective Fuzzy Mixed Assembly Line Sequencing Optimization Model
Farzad Tahriri, Siti Zawiah Md Dawal, Zahari Taha
J. Appl. Math. 2014(SI16): 1-19 (2014). DOI: 10.1155/2014/179085

Abstract

It can be deduced from previous studies that there exists a research gap in assembly line sequencing optimization model for mixed-model production lines. In particular, there is a lack of studies which focus on the integration between job shop and assembly lines using fuzzy techniques. Hence, this paper is aimed at addressing the multiobjective mixed-model assembly line sequencing problem by integrating job shop and assembly production lines for factories with modular layouts. The primary goal is to minimize the make-span, setup time, and cost simultaneously in mixed-model assembly lines. Such conflicting goals arise when switching between different products. A genetic algorithm (GA) approach is used to solve this problem, in which trapezoidal fuzzy numbers are implemented for variables such as operation and travelling time in order to generate results with higher accuracy and representative of real-case data.

Citation

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Farzad Tahriri. Siti Zawiah Md Dawal. Zahari Taha. "Multiobjective Fuzzy Mixed Assembly Line Sequencing Optimization Model." J. Appl. Math. 2014 (SI16) 1 - 19, 2014. https://doi.org/10.1155/2014/179085

Information

Published: 2014
First available in Project Euclid: 1 October 2014

zbMATH: 07131379
Digital Object Identifier: 10.1155/2014/179085

Rights: Copyright © 2014 Hindawi

Vol.2014 • No. SI16 • 2014
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