2002Unpublished venueRequires access

Control synthesis of Petri nets based on S-decreases

Haoxun Chen

Open publisher page 5 citations

Abstract

This paper describes a method for constructing a controller for a discrete event system modeled by a Petri net. The control goal is to force the net to obey a set of linear inequality constraints defined on the marking of the net. The controller is an extended Petri net, and can be computed based on the concept of minimal support S-decreases. It provides a systematic method for synthesizing a net-based controller when part of transitions in the net are uncontrollable.

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What this paper is about

This paper describes a method for constructing a controller for a discrete event system modeled by a Petri net. The control goal is to force the net to obey a set of linear inequality constraints defined on the marking of the net. The controller is an extended Petri net, and can be computed based on the concept of minimal support S-decreases. It provides a systematic method for synthesizing a net-based controller when part of transitions in the net are uncontrollable.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes a method for constructing a controller for a discrete event system modeled by a Petri net. The control goal is to force the net to obey a set of linear inequality constraints defined on the marking of the net. The controller is an extended Petri net, and can be computed based on the concept of minimal support S-decreases. It provides a systematic method for synthesizing a net-based controller when part of transitions in the net are uncontrollable.

Key concepts: Petri net, Stochastic Petri net, Net (polyhedron), Controller (irrigation), Computer science, Event (particle physics), Process architecture, Set (abstract data type)

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