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A generic method for a bottom-Up ASIL decomposition

Authors :
Frigerio, Alessandro
Vermeulen, Bart
Goossens, Kees
Skavhaug, Amund
Bitsch, Friedemann
Gallina, Barbara
Electronic Systems
CompSOC Lab- Predictable & Composable Embedded Systems
Source :
Computer Safety, Reliability, and Security-37th International Conference, SAFECOMP 2018, Proceedings, 12-26, STARTPAGE=12;ENDPAGE=26;TITLE=Computer Safety, Reliability, and Security-37th International Conference, SAFECOMP 2018, Proceedings, Developments in Language Theory ISBN: 9783319986531, SAFECOMP
Publication Year :
2018
Publisher :
Springer, 2018.

Abstract

Automotive Safety Integrity Level (ASIL) decomposition is a technique presented in the ISO 26262: Road Vehicles - Functional Safety standard. Its purpose is to satisfy safety-critical requirements by decomposing them into less critical ones. This procedure requires a system-level validation, and the elements of the architecture to which the decomposed requirements are allocated must be analyzed in terms of Common-Cause Faults (CCF). In this work, we present a generic method for a bottom-up ASIL decomposition, which can be used during the development of a new product. The system architecture is described in a three-layer model, from which fault trees are generated, formed by the application, resource, and physical layers and their mappings. A CCF analysis is performed on the fault trees to verify the absence of possible common faults between the redundant elements and to validate the ASIL decomposition.

Details

Language :
English
ISBN :
978-3-319-98653-1
ISBNs :
9783319986531
Database :
OpenAIRE
Journal :
Computer Safety, Reliability, and Security-37th International Conference, SAFECOMP 2018, Proceedings, 12-26, STARTPAGE=12;ENDPAGE=26;TITLE=Computer Safety, Reliability, and Security-37th International Conference, SAFECOMP 2018, Proceedings, Developments in Language Theory ISBN: 9783319986531, SAFECOMP
Accession number :
edsair.doi.dedup.....32634cc26bfb5f73244cf54a913f3e8e