Towards modeling and holistic timing analysis of industrial component-based DRE systems
2012 (English)In: Proceedings - 2012 IEEE 19th International Conference and Workshops on Engineering of Computer-Based Systems, ECBS 2012, 2012, p. 283-292Conference paper, Published paper (Refereed)
Resource type
Text
Abstract [en]
We propose a model- and component-based approach for communications- oriented development of Distributed Real-time Embedded (DRE) systems with a support for legacy communication protocols, legacy nodes and Holistic Response Time Analysis (HRTA). Because an end-to-end timing model should be available to perform HRTA, we also present a method to extract such models from component-based DRE systems. Moreover, we extend the existing analysis of Controller Area Network to support mixed messages in the system with priority- and FIFO-queued nodes. A mixed message represents a common transmission pattern implemented by some high-level protocols used in the industry. We also provide a proof of concept by extending the existing industrial model, i.e., Rubus Component Model, implementing the HRTA along with the extended analysis in an industrial tool suite, i.e., Rubus-ICE, and conducting an automotive-application case study.
Place, publisher, year, edition, pages
2012. p. 283-292
Keywords [en]
component model, component-based development, Distributed real-time embedded systems, DRE systems, holistic response-time analysis, real-time analysis, timing model, Real time analysis, Response-time analysis, Timing models, Control system synthesis, Industry, Real time systems, Legacy systems
National Category
Computer and Information Sciences
Identifiers
URN: urn:nbn:se:mdh:diva-31690DOI: 10.1109/ECBS.2012.46ISI: 000308965100036Scopus ID: 2-s2.0-84862078524ISBN: 9780769546643 (print)OAI: oai:DiVA.org:mdh-31690DiVA, id: diva2:932913
Conference
2012 IEEE 19th International Conference and Workshops on Engineering of Computer-Based Systems, ECBS 2012, 11 April 2012 through 13 April 2012, Novi Sad
2016-06-022016-06-022025-10-10Bibliographically approved