A scheduling mechanism for hybrid flow shops with reworks under general queue time limits

  • Cho, Yooney
  • Kim, Hyeon-Il
  • Kim, Yeo-Reum
  • Yoo, Seock-Kyu
  • Kim, Byoung-Hee
  • ... Lee, Dong-Ho
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초록

This study addresses multi-stage hybrid flow shop scheduling in which a job is reworked if the queue time between two arbitrary stages exceeds an upper limit. The problem is to determine the allocations of jobs to machines at each stage and the start times of jobs and rework setups/operations when incurred. A mixed integer programming model is proposed for each of the makespan and the total tardiness measures. Then, because the problem is NP-hard, a scheduling mechanism is proposed that consists of three phases: (a) filtering the jobs to be delayed; (b) searching the jobs to be reworked; and (c) dispatching non-delayed and delayed jobs sequentially. Simulation results show that the mechanism proposed in this study outperforms the conventional dispatching approach in the high rework setup time case for the makespan problem and low/high setup time cases for the tardiness problem. The best priority rules of the mechanism under each of the measures are also reported.

키워드

Manufacturing managementhybrid flow shopschedulingqueue time limitsreworksmechanismSEMICONDUCTOR WAFER FABRICATION2-MACHINE FLOWSHOPCONSTRAINTSMINIMIZATIONALGORITHMSSIMULATIONMACHINESYSTEMLINES
제목
A scheduling mechanism for hybrid flow shops with reworks under general queue time limits
저자
Cho, YooneyKim, Hyeon-IlKim, Yeo-ReumYoo, Seock-KyuKim, Byoung-HeeLee, Dong-Ho
DOI
10.1177/09544054231182174
발행일
2024-05
유형
Article; Early Access
저널명
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture
238
6-7
페이지
962 ~ 970