• DocumentCode
    1286196
  • Title

    Types of Asynchronous Diagnosability and the Reveals-Relation in Occurrence Nets

  • Author

    Haar, Stefan

  • Author_Institution
    Sch. of Inf. Technol. & Eng., Univ. of Ottawa, Ottawa, ON, Canada
  • Volume
    55
  • Issue
    10
  • fYear
    2010
  • Firstpage
    2310
  • Lastpage
    2320
  • Abstract
    We consider asynchronous diagnosis in (safe) Petri net models of distributed systems, using the partial order semantics of occurrence net unfoldings. Both the observability and diagnosability properties will appear in two different forms, depending on the semantics chosen: strong observability and diagnosability are the classical notions from the state machine model and correspond to interleaving semantics in Petri nets. By contrast, the weak form is linked to characteristics of nonsequential processes, and requires an asynchronous progress assumption on those processes. We give algebraic characterizations for both types, and give verification methods. The study of weak diagnosability leads us to the analysis of a relation in occurrence nets, first presented in : given the occurrence of some event a that reveals b, the occurrence of b is inevitable. Then b may already have occurred, be concurrent to, or even in the future of a. We show that the reveals-relation can be effectively computed recursively-for each pair, a suitable finite prefix of bounded depth is sufficient-, and show its use in asynchronous diagnosis. Based on this relation, a decomposition of the Petri net unfolding into facets is defined, yielding an abstraction technique that preserves and reflects maximal partially ordered runs.
  • Keywords
    Petri nets; fault diagnosis; finite state machines; Petri net; abstraction technique; asynchronous diagnosis; distributed network system; interleaving semantics; occurrence nets; partial order semantics; state machine model; Discrete event systems; Electrical capacitance tomography; Fault detection; Fault diagnosis; Information technology; Interleaved codes; Observability; Petri nets; Sensor systems; Telecommunication control; Discrete event systems; Petri nets; fault detection;
  • fLanguage
    English
  • Journal_Title
    Automatic Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9286
  • Type

    jour

  • DOI
    10.1109/TAC.2010.2063490
  • Filename
    5540275