4.7 Article

A fuzzy-mixed-integer goal programming model for a parallel-machine scheduling problem with sequence-dependent setup times and release dates

Journal

ROBOTICS AND COMPUTER-INTEGRATED MANUFACTURING
Volume 25, Issue 4-5, Pages 853-859

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rcim.2008.12.005

Keywords

Parallel machine scheduling; Mixed-integer goal programming; Fuzzy theory; Sequence-dependent setup time; Release date

Funding

  1. Iran National Science Foundation (INSF)

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This paper presents a new mixed-integer goal programming (MIGP) model for a parallel-machine scheduling problem with sequence-dependent setup times and release dates. Two objectives are considered in the model to minimize the total weighted flow time and the total weighted tardiness simultaneously. Due to the complexity of the above model and uncertainty involved in real-world scheduling problems, it is sometimes unrealistic or even impossible to acquire exact input data. Hence, we consider the parallel-machine scheduling problem with sequence-dependent set-up times under the hypothesis of fuzzy processing time's knowledge and two fuzzy objectives as the MIGP model. In addition, a quite effective and applicable methodology for solving the above fuzzy model are presented. At the end, the effectiveness of the proposed model and the denoted methodology is demonstrated through some test problems. (C) 2008 Elsevier Ltd. All rights reserved.

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