DocumentCode :
1530287
Title :
A Markov Chain Framework for Cycle Time Approximation of Toolsets
Author :
Akhavan-Tabatabaei, Raha ; Fathi, Youssef ; Shanthikumar, J. G.
Author_Institution :
Department of Industrial Engineering, Los Andes University, Bogota, Colombia
Volume :
25
Issue :
4
fYear :
2012
Firstpage :
589
Lastpage :
597
Abstract :
Cycle time is a key performance measure in semiconductor manufacturing. Currently, discrete event simulation and queueing theory are the most common approaches to estimating the cycle time of a fabrication facility. However, the performance of both approaches has been unsatisfactory due to many factors, including the inability to perform in an environment where informal and unwritten operational rules exist. Such rules create dependence between the arrival and service processes of a toolset, and, hence, render the classical queueing models inaccurate. We propose a Markov chain framework that attempts to approximate the cycle time of a toolset in the presence of informal operational rules, and we compare our approach with classical queueing models through a series of numerical examples.
Keywords :
Approximation methods; Markov processes; Queueing analysis; Stochastic processes; Markov processes; queueing analysis; stochastic processes;
fLanguage :
English
Journal_Title :
Semiconductor Manufacturing, IEEE Transactions on
Publisher :
ieee
ISSN :
0894-6507
Type :
jour
DOI :
10.1109/TSM.2012.2202252
Filename :
6210394
Link To Document :
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