2010Unpublished venueRequires access

On Modelling and Analysis of Dynamic Reconfiguration of Dependable Real-Time Systems

Manuel Mazzara, Anirban Bhattacharyya

Open publisher page 33 citations

Abstract

This paper motivates the need for a formalism for the modelling and analysis of dynamic reconfiguration of dependable real-time systems. We present requirements that the formalism must meet, and use these to evaluate well-established formalisms and two process algebras that we have been developing, namely, Webπ∞and CCSdp. A simple case study is developed to illustrate the modelling power of these two formalisms. The paper shows how Webπ∞and CCSdprepresent a significant step forward in modelling adaptive and dependable real-time systems.

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What this paper is about

This paper motivates the need for a formalism for the modelling and analysis of dynamic reconfiguration of dependable real-time systems. We present requirements that the formalism must meet, and use these to evaluate well-established formalisms and two process algebras that we have been developing, namely, Webπ∞and CCSdp. A simple case study is developed to illustrate the modelling power of these two formalisms. The paper shows how Webπ∞and CCSdprepresent a significant step forward in modelling adaptive and dependable real-time systems.

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OpenAlex reports 33 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper motivates the need for a formalism for the modelling and analysis of dynamic reconfiguration of dependable real-time systems. We present requirements that the formalism must meet, and use these to evaluate well-established formalisms and two process algebras that we have been developing, namely, Webπ∞and CCSdp. A simple case study is developed to illustrate the modelling power of these two formalisms. The paper shows how Webπ∞and CCSdprepresent a significant step forward in modelling adaptive and dependable real-time systems.

Key concepts: Control reconfiguration, Computer science, Distributed computing, Embedded system

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