DocumentCode :
814823
Title :
Two-Stage Method for Synthesizing Liveness-Enforcing Supervisors for Flexible Manufacturing Systems Using Petri Nets
Author :
Li, ZhiWu ; Zhou, MengChu
Author_Institution :
Sch. of Electro-Mech. Eng., Xidian Univ., Xi´´an
Volume :
2
Issue :
4
fYear :
2006
Firstpage :
313
Lastpage :
325
Abstract :
This paper develops a two-stage approach to synthesizing liveness-enforcing supervisors for flexible manufacturing systems (FMS) that can be modeled by a class of Petri nets. First, we find siphons that need to be controlled using a mixed integer programming (MIP) method. This way avoids complete siphon enumeration that is more time-consuming for a sizable plant model than the MIP method. Monitors are added for only those siphons that require them. Second, we rearrange the output arcs of the monitors on condition that liveness is still preserved. The liveness is verified by an MIP-based deadlock detection method instead of much time-consuming reachability analysis. Experimental studies show that the proposed approach is more efficient than the existing ones and can result in more permissive and structurally simpler liveness-enforcing supervisors than all the known existing methods. This paper makes the application of siphon-based deadlock control methods to industrial-size FMS possible
Keywords :
Petri nets; flexible manufacturing systems; integer programming; MIP-based deadlock detection; Petri nets; deadlock prevention; flexible manufacturing systems; liveness-enforcing supervisors; mixed integer programming; siphon enumeration; Automata; Automatic control; Control systems; Electrical equipment industry; Flexible manufacturing systems; Industrial control; Petri nets; Production systems; Resource management; System recovery; Deadlock prevention; Petri net; elementary siphon; flexible manufacturing system; siphon;
fLanguage :
English
Journal_Title :
Industrial Informatics, IEEE Transactions on
Publisher :
ieee
ISSN :
1551-3203
Type :
jour
DOI :
10.1109/TII.2006.885185
Filename :
4011903
Link To Document :
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