Modeling and analysis of semiconductor manufacturing systems with degraded behavior using Petri nets and siphons

被引:24
作者
Jeng, MD [1 ]
Xie, XL
机构
[1] Natl Taiwan Ocean Univ, Dept Elect Engn, Chilung 202, Taiwan
[2] LGIPM, F-57045 Metz 1, France
[3] ENIM Ile Saulcy, INRIA, MACSI Team, F-57045 Metz 1, France
来源
IEEE TRANSACTIONS ON ROBOTICS AND AUTOMATION | 2001年 / 17卷 / 05期
关键词
deadlock analysis; degraded behavior; Petri nets; semiconductor manufacturing; siphons;
D O I
10.1109/70.964659
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Degraded behavior, such as reworks, failures, and maintenance, of a semiconductor manufacturing system (SMS) is not negligible in practice. When modeled by Petri nets, degraded behavior may be represented as initially unmarked elementary circuits, interpreted as local processing cycles. Most existing "well-behaved" net classes for manufacturing have problems of describing such cycles and thus may have difficulties in modeling SMSs. In this paper, we extend the class of nets in [10] into the class of RCN*merged nets that model SMSs with such cycles. To model an SMS, we first describe the behavior of each resource type using a state-machine module, called RCN. Any RCN can be constructed as a connection of acyclic subnets called blocks, where one of them denotes the normal behavior of the resource type and the others denote its degraded behavior. Next, an RCN* merged net for the entire system is built by fusing all modules, conforming to three constraints, along their common transition subnets, which represent their synchronization. In the analysis of RCN* merged nets, we prove that their liveness and reversibility depend on the absence of unmarked siphons, which are structural objects that mixed integer programming can check rapidly. Examples are given to illustrate the proposed approach.
引用
收藏
页码:576 / 588
页数:13
相关论文
共 25 条
[1]   ERGODICITY AND THROUGHPUT BOUNDS OF PETRI NETS WITH UNIQUE CONSISTENT FIRING COUNT VECTOR [J].
CAMPOS, J ;
CHIOLA, G ;
SILVA, M .
IEEE TRANSACTIONS ON SOFTWARE ENGINEERING, 1991, 17 (02) :117-125
[2]  
Cavalieri S, 1996, ETFA '96 - 1996 IEEE CONFERENCE ON EMERGING TECHNOLOGIES AND FACTORY AUTOMATION, PROCEEDINGS, VOLS 1 AND 2, P724, DOI 10.1109/ETFA.1996.573994
[3]  
CAVALIERI S, 1997, P IEEE INT C EM TECH, P369
[4]   Modeling and analysis of Equipment Managers in Manufacturing Execution Systems for semiconductor packaging [J].
Cheng, FT ;
Yang, HC ;
Kuo, TL ;
Feng, CC ;
Jeng, MD .
IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS PART B-CYBERNETICS, 2000, 30 (05) :772-782
[5]   Deadlock analysis of Petri nets using siphons and mathematical programming [J].
Chu, F ;
Xie, XL .
IEEE TRANSACTIONS ON ROBOTICS AND AUTOMATION, 1997, 13 (06) :793-804
[6]  
ESPARZA J, 1992, THEORET COMPUT SCI
[7]   A PETRI-NET BASED DEADLOCK PREVENTION POLICY FOR FLEXIBLE MANUFACTURING SYSTEMS [J].
EZPELETA, J ;
COLOM, JM ;
MARTINEZ, J .
IEEE TRANSACTIONS ON ROBOTICS AND AUTOMATION, 1995, 11 (02) :173-184
[8]   Modeling a die bonder with Petri nets: A case study [J].
Janneck, JW ;
Naedele, M .
IEEE TRANSACTIONS ON SEMICONDUCTOR MANUFACTURING, 1998, 11 (03) :404-409
[9]  
Jeng MD, 2000, IEEE T SYST MAN CY B, V30, P757, DOI 10.1109/3477.875450
[10]  
Jeng MD, 1998, IEEE T SEMICONDUCT M, V11, P358, DOI 10.1109/66.705371