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Ideal Mode Selection of a Cardiac Pacing System

Identifieur interne : 002913 ( Hal/Corpus ); précédent : 002912; suivant : 002914

Ideal Mode Selection of a Cardiac Pacing System

Auteurs : Dominique Méry ; Neeraj Kumar Singh

Source :

RBID : Hal:hal-00862077

English descriptors

Abstract

Mode transition in any inappropriate mode can be a common cause of any mishap in a complex health-care system. This paper presents an approach for formalizing and reasoning about optimal mode transition in a health-care system that uses several operating modes in various operating states. Modes are formal- ized and their relation to a state-based formalism is established through a re- finement approach. The efficiency of this approach is presented by formalizing an ideal operating mode transition of a cardiac pacemaker case study. An incre- mental approach is used to develop the system and its detailed design is verified through a series of refinements. The consequence of this approach is to improve system structuring, elicitation of system assumptions and expected functionality, as well as requirement traceability using modes in state-based modeling. Models are expressed in EVENT B modeling language and validated by a model checker tool: ProB.

Url:
DOI: 10.1007/978-3-642-39173-6_31

Links to Exploration step

Hal:hal-00862077

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<div type="abstract" xml:lang="en">Mode transition in any inappropriate mode can be a common cause of any mishap in a complex health-care system. This paper presents an approach for formalizing and reasoning about optimal mode transition in a health-care system that uses several operating modes in various operating states. Modes are formal- ized and their relation to a state-based formalism is established through a re- finement approach. The efficiency of this approach is presented by formalizing an ideal operating mode transition of a cardiac pacemaker case study. An incre- mental approach is used to develop the system and its detailed design is verified through a series of refinements. The consequence of this approach is to improve system structuring, elicitation of system assumptions and expected functionality, as well as requirement traceability using modes in state-based modeling. Models are expressed in EVENT B modeling language and validated by a model checker tool: ProB.</div>
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<title xml:lang="en">Ideal Mode Selection of a Cardiac Pacing System</title>
<author role="aut">
<persName>
<forename type="first">Dominique</forename>
<surname>Méry</surname>
</persName>
<email>mery@loria.fr</email>
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<idno type="idHal">dominiquemery</idno>
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<author role="aut">
<persName>
<forename type="first">Neeraj Kumar</forename>
<surname>Singh</surname>
</persName>
<email>singhnne@loria.fr</email>
<idno type="halAuthorId">780971</idno>
<affiliation ref="#struct-206041"></affiliation>
<affiliation ref="#struct-26598"></affiliation>
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<title>4th International Conference - Digital Human Modeling and applications in Health, Safety, Ergonomics and Risk Management - DHM 2013 (HCI International 2013)</title>
<date type="start">2013-07-21</date>
<date type="end">2013-07-26</date>
<settlement>Las Vegas</settlement>
<country key="US">United States</country>
</meeting>
<editor>Vincent G. Duffy</editor>
<imprint>
<publisher>Springer</publisher>
<biblScope unit="serie"></biblScope>
<biblScope unit="volume">8025</biblScope>
<biblScope unit="pp">258-267</biblScope>
<date type="datePub">2013-07-22</date>
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<idno type="doi">10.1007/978-3-642-39173-6_31</idno>
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<language ident="en">English</language>
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<term xml:lang="en">Abstract model</term>
<term xml:lang="en">Event-B</term>
<term xml:lang="en">Proof-based development</term>
<term xml:lang="en">Refinement</term>
<term xml:lang="en">Modes</term>
<term xml:lang="en">Pacemaker</term>
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<abstract xml:lang="en">Mode transition in any inappropriate mode can be a common cause of any mishap in a complex health-care system. This paper presents an approach for formalizing and reasoning about optimal mode transition in a health-care system that uses several operating modes in various operating states. Modes are formal- ized and their relation to a state-based formalism is established through a re- finement approach. The efficiency of this approach is presented by formalizing an ideal operating mode transition of a cardiac pacemaker case study. An incre- mental approach is used to develop the system and its detailed design is verified through a series of refinements. The consequence of this approach is to improve system structuring, elicitation of system assumptions and expected functionality, as well as requirement traceability using modes in state-based modeling. Models are expressed in EVENT B modeling language and validated by a model checker tool: ProB.</abstract>
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