Title :
Fault Recovery in Discrete-Event Systems using Observer-Based Supervisors
Author :
Wang, Chenhuan ; Zad, Shahin Hasbtrudi
Abstract :
In this paper, we study the synthesis of fault recovery procedures in discrete—event systems, following a state—based approach. It is assumed that the faults are unobservable but can be diagnosed within a bounded delay. A modular switching supervisory scheme is proposed to satisfy the system design specifications. The design consists of observer-based supervisor modules. One of the modules enforces design specifications during the normal mode of operation and after a fault occurs but before the fault is diagnosed. The rest of the modules are designed for recovery from faults — one module for each fault. When a fault is diagnosed, the corresponding recovery module takes sole control of the plant. The issue of the nonblocking property of the system under supervision is also studied.
Keywords :
Discrete—event systems; Fault recovery; Supervisory control; Control systems; Degradation; Delay; Discrete event systems; Feedback loop; Law; Legal factors; Sensor systems; State estimation; Supervisory control; Discrete—event systems; Fault recovery; Supervisory control;
Conference_Titel :
INDICON, 2005 Annual IEEE
Conference_Location :
Chennai, India
Print_ISBN :
0-7803-9503-4
DOI :
10.1109/INDCON.2005.1590208