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Proceedings Paper

Generic object modeling for material flow control in a nuclear installation
Author(s): Danielle Boulanger; Eric Disson; Gilles DuBois; Guilaine Talens; Francois Werkoff
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Paper Abstract

In the field of nuclear plant installations a key problem is material flow control. To design the complex processes and security constraints of such a domain, we use an object oriented framework based on a role-task model, which is a generic organizational model, and descriptive classes relevant to the application domain. The object classes are created and instance libraries are elaborated allowing the user to build running scenarios composed of procedures, tasks and operations. The model is implemented in a case tool dedicated to dynamic modeling of the global installation. The system allows two manipulation levels: the expert level offers the resources to create the basic components and the related management primitives constituting a specific installation. These components are the metadata from which actual functional components are built. The user level implements the functions required to simulate various functional components are built. The user level implements the functions required to simulate various functional scenarios as well as possible diversions. The objective is to evaluate the time elapsed between the actual fraudulent action and its detection.

Paper Details

Date Published: 13 October 2000
PDF: 8 pages
Proc. SPIE 4192, Intelligent Systems in Design and Manufacturing III, (13 October 2000); doi: 10.1117/12.403666
Show Author Affiliations
Danielle Boulanger, Univ. Jean Moulin Lyon III (France)
Eric Disson, Univ. Jean Moulin Lyon III (France)
Gilles DuBois, Univ. Jean Moulin Lyon III (France)
Guilaine Talens, Univ. Jean Moulin Lyon III (France)
Francois Werkoff, Commissariat a l'Energie Atomique (France)


Published in SPIE Proceedings Vol. 4192:
Intelligent Systems in Design and Manufacturing III
Bhaskaran Gopalakrishnan; Angappa Gunasekaran, Editor(s)

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