A Model of CAN-based Applications for the Verification of Temporal Properties
Identifieur interne : 001E82 ( Crin/Corpus ); précédent : 001E81; suivant : 001E83A Model of CAN-based Applications for the Verification of Temporal Properties
Auteurs : Joël Toussaint ; Christophe Philippe ; Françoise Simonot-LionSource :
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Abstract
This paper presents a model of CAN based application able to support verification of certain dependability constraints which are relevant of communication and time. The document describes the mechanism of CAN network and presents the basic concepts for the modelling process : generic models of cooperation between communicating functions and their expression thanks to the time Petri Nets formalism. An example illustrates the modelling methodology.
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<publicationStmt><idno type="RBID">CRIN:toussaint97c</idno>
<date when="1997" year="1997">1997</date>
<idno type="wicri:Area/Crin/Corpus">001E82</idno>
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<sourceDesc><biblStruct><analytic><title xml:lang="en">A Model of CAN-based Applications for the Verification of Temporal Properties</title>
<author><name sortKey="Toussaint, Joel" sort="Toussaint, Joel" uniqKey="Toussaint J" first="Joël" last="Toussaint">Joël Toussaint</name>
</author>
<author><name sortKey="Philippe, Christophe" sort="Philippe, Christophe" uniqKey="Philippe C" first="Christophe" last="Philippe">Christophe Philippe</name>
</author>
<author><name sortKey="Simonot Lion, Francoise" sort="Simonot Lion, Francoise" uniqKey="Simonot Lion F" first="Françoise" last="Simonot-Lion">Françoise Simonot-Lion</name>
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>CAN</term>
<term>cooperation models</term>
<term>real time communication</term>
<term>time Petri nets</term>
<term>time constraints</term>
<term>verification</term>
</keywords>
</textClass>
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<front><div type="abstract" xml:lang="en" wicri:score="1484">This paper presents a model of CAN based application able to support verification of certain dependability constraints which are relevant of communication and time. The document describes the mechanism of CAN network and presents the basic concepts for the modelling process : generic models of cooperation between communicating functions and their expression thanks to the time Petri Nets formalism. An example illustrates the modelling methodology.</div>
</front>
</TEI>
<BibTex type="inproceedings"><ref>toussaint97c</ref>
<crinnumber>97-R-065</crinnumber>
<category>3</category>
<equipe>TRIO</equipe>
<author><e>Toussaint, Joël</e>
<e>Philippe, Christophe</e>
<e>Simonot-Lion, Françoise</e>
</author>
<title>A Model of CAN-based Applications for the Verification of Temporal Properties</title>
<booktitle>{SICICA'97, 3rd IFAC Symposium on Intelligent Components and Instruments for Control Applications, Annecy, France}</booktitle>
<year>1997</year>
<pages>77-82</pages>
<month>jun</month>
<url>http://www.loria.fr/publications/1997/97-R-065/97-R-065.ps</url>
<keywords><e>real time communication</e>
<e>CAN</e>
<e>verification</e>
<e>time constraints</e>
<e>time Petri nets</e>
<e>cooperation models</e>
</keywords>
<abstract>This paper presents a model of CAN based application able to support verification of certain dependability constraints which are relevant of communication and time. The document describes the mechanism of CAN network and presents the basic concepts for the modelling process : generic models of cooperation between communicating functions and their expression thanks to the time Petri Nets formalism. An example illustrates the modelling methodology.</abstract>
</BibTex>
</record>
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