A Novel Rescheduling Method for Dynamic Semiconductor Manufacturing Systems
Document Type
Article
Publication Date
5-1-2020
Abstract
This work is motivated by the need to adapt an optimal production schedule for dynamic and stochastic environments in semiconductor manufacturing systems. When unexpected events occur, such as machine breakdown and due date changes, manufacturers need to react quickly and revise the schedule accordingly. This paper presents a novel partial repair rescheduling solution that consists of a criterion and a scheduler. The former decides the segment of the original schedule to be repaired by detecting a match-up point. The impact of disturbances caused by unexpected events can be limited between the disturbing time and this match-up point. The scheduler generates a new schedule segment to replace the original and impacted one with single machine-oriented or machine-group-oriented match-up rescheduling algorithms. On practical demand, the proposed solution can be further updated due to the changing consideration of unexpected events and/or expanded performance criteria. The simulation results show that the proposed rescheduling methods have higher stability and efficiency than some well-known existing rescheduling methods.
Identifier
85059048009 (Scopus)
Publication Title
IEEE Transactions on Systems Man and Cybernetics Systems
External Full Text Location
https://doi.org/10.1109/TSMC.2017.2782009
e-ISSN
21682232
ISSN
21682216
First Page
1679
Last Page
1689
Issue
5
Volume
50
Grant
71690234
Fund Ref
Ministry of Education
Recommended Citation
Qiao, Fei; Ma, Yumin; Zhou, Mengchu; and Wu, Qidi, "A Novel Rescheduling Method for Dynamic Semiconductor Manufacturing Systems" (2020). Faculty Publications. 5325.
https://digitalcommons.njit.edu/fac_pubs/5325
