Title :
Delay-robustness in distributed control of timed discrete-event systems based on supervisor localization
Author :
Renyuan Zhang ; Kai Cai ; Wonham, W.M.
Author_Institution :
Sch. of Autom., Northwestern Polytech. Univ., Xi´an, China
Abstract :
Recently we studied communication delay in distributed control of untimed discrete-event systems based on supervisor localization. We proposed a property called delay-robustness: the overall system behavior controlled by distributed controllers with communication delay is logically equivalent to its delay-free counterpart. In this paper we extend our previous work to timed discrete-event systems, in which communication delays are counted by a special clock event tick. First, we propose a timed channel model and define timed delay-robustness; for the latter, a polynomial verification procedure is presented. Next, if the delay-robust property does not hold, we introduce bounded delay-robustness, and present an algorithm to compute the maximal delay bound (measured by number of ticks) for transmitting a channeled event. Finally, we demonstrate delay-robustness on the example of an underload tap-changing transformer.
Keywords :
delays; discrete event systems; distributed control; bounded delay-robustness; clock event tick; communication delay; distributed control; maximal delay bound; polynomial verification procedure; supervisor localization; timed channel model; timed discrete-event systems; underload tap-changing transformer; untimed discrete-event systems; Channel models; Controllability; Decentralized control; Delays; Educational institutions; Polynomials; Supervisory control;
Conference_Titel :
Decision and Control (CDC), 2014 IEEE 53rd Annual Conference on
Conference_Location :
Los Angeles, CA
Print_ISBN :
978-1-4799-7746-8
DOI :
10.1109/CDC.2014.7040444