Title :
An Iterative Synthesis Approach to Petri Net-Based Deadlock Prevention Policy for Flexible Manufacturing Systems
Author :
Uzam, Murat ; Zhou, MengChu
Author_Institution :
Nigde Universitesi
fDate :
5/1/2007 12:00:00 AM
Abstract :
This paper proposes an iterative synthesis approach to Petri net (PN)-based deadlock prevention policy for flexible manufacturing systems (FMS). Given the PN model (PNM) of an FMS prone to deadlock, the goal is to synthesize a live controlled PNM. Its use for FMS control guarantees its deadlock-free operation and high performance in terms of resource utilization and system throughput. The proposed method is an iterative approach. At each iteration, a first-met bad marking is singled out from the reachability graph of a given PNM. The objective is to prevent this marking from being reached via a place invariant of the PN. A well-established invariant-based control method is used to derive a control place. This process is carried out until the net model becomes live. The proposed method is generally applicable, easy to use, effective, and straightforward although its off-line computation is of exponential complexity. Two FMS are used to show its effectiveness and applicability
Keywords :
Petri nets; concurrent engineering; flexible manufacturing systems; reachability analysis; resource allocation; Petri net; deadlock prevention policy; flexible manufacturing systems; iterative synthesis; reachability graph; resource utilization; system throughput; Control system synthesis; Control systems; Flexible manufacturing systems; Iterative methods; Job production systems; Manufacturing systems; Reachability analysis; Resource management; System recovery; Throughput; Deadlock; Petri net (PN); deadlock prevention; flexible manufacturing systems (FMS); reachability analysis;
Journal_Title :
Systems, Man and Cybernetics, Part A: Systems and Humans, IEEE Transactions on
DOI :
10.1109/TSMCA.2007.893484