2003•Unpublished venueRequires access

Supervisory control of interacting discrete event systems

Sherif Abdelwahed, Walter Murray Wonham

Open publisher page 17 citations

Abstract

In this paper we present a theory for decentralized supervisory control of a general class of multiprocess discrete event systems referred to as interacting discrete event systems (IDES). An IDES is a discrete event system that consists of a number of components working concurrently and possibly restricted by a well-defined interaction specification. We extend the notion of decentralized supervisory control to this class of systems by adding a supervisor for the interaction specification. Conditions that guarantee the optimality of the decentralized supervision of this class of systems are established and a complexity analysis of the proposed procedure is presented.

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What this paper is about

In this paper we present a theory for decentralized supervisory control of a general class of multiprocess discrete event systems referred to as interacting discrete event systems (IDES). An IDES is a discrete event system that consists of a number of components working concurrently and possibly restricted by a well-defined interaction specification. We extend the notion of decentralized supervisory control to this class of systems by adding a supervisor for the interaction specification. Conditions that guarantee the optimality of the decentralized supervision of this class of systems are established and a complexity analysis of the proposed procedure is presented.

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OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper we present a theory for decentralized supervisory control of a general class of multiprocess discrete event systems referred to as interacting discrete event systems (IDES). An IDES is a discrete event system that consists of a number of components working concurrently and possibly restricted by a well-defined interaction specification. We extend the notion of decentralized supervisory control to this class of systems by adding a supervisor for the interaction specification. Conditions that guarantee the optimality of the decentralized supervision of this class of systems are established and a complexity analysis of the proposed procedure is presented.

Key concepts: Supervisor, Supervisory control, Supervisory control theory, Discrete event dynamic system, Event (particle physics), Class (philosophy), Computer science, Control (management)

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