Modular and decentralized supervisory control of concurrent discrete event systems using reduced system models
Ece Güran Schmidt, Hervé Marchand, Benoît Gaudin · 2006
This paper investigates the supervisor synthesis for concurrent systems based on reduced system models with the intention of complexity reduction. It is assumed that the expected behavior (specification) is given on a subset of the system alphabet, and the system behavior is reduced to this alphabet. Supervisors are computed for each reduced subsystem employing the modular approach in Komenda et al. (2005) and the decentralized approach in Lee and Wong (2002). Depending on the chosen architecture, we provide sufficient conditions for the consistent implementation of the reduced supervisors for the original system