Title :
Reconfigurable fault tolerant deadlock avoidance controller synthesis for assembly production processes
Author :
Hsieh, Fu-Shiung
Author_Institution :
Overseas Chinese Inst. of Technol., Taichung, Taiwan
Abstract :
Guarantee of deadlock-free operations is a prerequisite for achieving high resource utilization in flexible manufacturing systems. As production processes may contend for shared resources, the addition or removal of production processes has impacts on the liveness property of the systems. Uncertainties in manufacturing systems may result in unavailability of resources and may in turn lead to deadlocks and have negative impacts on the scheduled activities and performance. The design of deadlock avoidance control logics for manufacturing systems with unreliable machines to meet changeable, high-variety of product demands is a challenging problem. We develop deadlock avoidance control synthesis algorithms that are: (1) reconfigurable to incorporate or remove production processes while maintaining the liveness property, (2) robust to cope with uncertainties, and (3) scalable for realistic cases
Keywords :
Petri nets; assembly planning; fault tolerance; flexible manufacturing systems; production control; scheduling; assembly production process; controlled assembly Petri net; deadlock avoidance control; deadlock-free operations; flexible manufacturing systems; high resource utilization; liveness property; manufacturing systems; reconfigurable fault tolerant deadlock avoidance controller synthesis; scalability; scheduled activities; shared resources; uncertainties; unreliable machines; Control systems; Fault tolerance; Flexible manufacturing systems; Job shop scheduling; Logic design; Manufacturing systems; Production systems; Resource management; System recovery; Uncertainty;
Conference_Titel :
Systems, Man, and Cybernetics, 2000 IEEE International Conference on
Conference_Location :
Nashville, TN
Print_ISBN :
0-7803-6583-6
DOI :
10.1109/ICSMC.2000.884465