Title :
A flexible method to tolerate value sensor failures
Author :
Girault, Alain ; Yu, Huafeng
Author_Institution :
INRIA Rhone-Alpes, Saint-Ismier
Abstract :
Tolerating the value failures of sensors is an important problem in automated control processes and plants. In this paper, we address this problem in a theoretical framework in order to demonstrate the feasibility of an automatic method based on discrete controller synthesis. We consider a fault-intolerant program whose job is to control an automated process, here a liquid tank equipped with level sensors that can be subject to value faults. This fault-intolerant program is modeled as a finite labeled transition system. We then specify formally a fault hypothesis, i.e., how many sensors can fail simultaneously. We use discrete controller synthesis to obtain automatically a program, having the same behavior as the initial fault-intolerant one, and satisfying the fault tolerance requirements under the fault hypothesis. We advocate that, thanks to the use of discrete controller synthesis, our method offers flexibility, reliability, separation of concern, and it is automatic.
Keywords :
control system synthesis; discrete systems; fault tolerance; sensors; automated control processes; discrete controller synthesis; fault hypothesis; fault-intolerant program; finite labeled transition system; liquid tank; value sensor failure tolerance; Automatic control; Boolean functions; Closed loop systems; Control system synthesis; Control systems; Data structures; Distributed control; Fault tolerance; Fault tolerant systems; Process control; Sensors with value failures; automatic fault tolerance; discrete controller synthesis;
Conference_Titel :
Emerging Technologies and Factory Automation, 2006. ETFA '06. IEEE Conference on
Conference_Location :
Prague
Print_ISBN :
0-7803-9758-4
DOI :
10.1109/ETFA.2006.355435