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  4. Pattern-based approach for designing fail-operational safety-critical embedded systems
 
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2015
Conference Paper
Title

Pattern-based approach for designing fail-operational safety-critical embedded systems

Abstract
To deal with fail-operational (FO) requirements intoday's safety-critical networked embedded systems (SCNES), engineers have to resort to concepts such as redundancy, monitoring, and special shutdown procedures. Hardware-based redundancy approaches are not applicable to many embedded systems domains (e.g., automotive systems), because of prohibitive costs. In this scenario, adaptability concepts can be used to fulfill these FO requirements while enabling optimized resource utilization. However, the applicability of such concepts highly depends on the support for the engineering during system development. We propose an approach to cope with the challenges of fail-operational behavior of SCNES in which engineers are supported by design concepts for realizing safety, reliability, and adaptability requirements through the use of architectural patterns. The approach allows expressing FO concepts at the software architecture level. This lowers the effort for developing SCNES by utilizing generic patterns for genera land reoccurring mechanisms.
Author(s)
Penha, Dulcineia
Fraunhofer-Institut für Eingebettete Systeme und Kommunikationstechnik ESK  
Weiß, Gereon  
Fraunhofer-Institut für Eingebettete Systeme und Kommunikationstechnik ESK  
Stante, Alexander
Fraunhofer-Institut für Eingebettete Systeme und Kommunikationstechnik ESK  
Mainwork
13th IEEE/IFIP International Conference on Embedded and Ubiquitous Computing, EUC 2015  
Project(s)
SafeAdapt  
Funder
European Commission EC  
Conference
International Conference on Embedded and Ubiquitous Computing (EUC) 2015  
Open Access
File(s)
Download (538.65 KB)
Rights
Use according to copyright law
DOI
10.1109/EUC.2015.14
10.24406/publica-r-389898
Additional link
Full text
Language
English
ESK  
Keyword(s)
  • embedded systems

  • networked embedded systems

  • reliability

  • adaptability

  • software architecture

  • architectural pattern

  • safety

  • fail operational

  • FO

  • safety-critical networked embedded systems

  • SCNES

  • automotive software

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