DocumentCode :
3376209
Title :
Executable Models to Support Automated Software FMEA
Author :
Bonfiglio, Valentina ; Montecchi, Leonardo ; Rossi, Francesco ; Lollini, Paolo ; Pataricza, Andras ; Bondavalli, Andrea
Author_Institution :
Univ. of Florence, Florence, Italy
fYear :
2015
fDate :
8-10 Jan. 2015
Firstpage :
189
Lastpage :
196
Abstract :
Safety analysis is increasingly important for a wide class of systems. In the automotive field, the recent ISO26262 standard foresees safety analysis to be performed at system, hardware, and software levels. Failure Modes and Effects Analysis (FMEA) is an important step in any safety analysis process, and its application at hardware and system levels has been extensively addressed in the literature. Conversely, its application to software architectures is still to a large extent an open problem, especially concerning its integration into a general certification process. The approach we propose in this paper aims at performing semi-automated FMEA on component-based software architectures described in UML. The foundations of our approach are model-execution and fault-injection at model-level, which allows us to compare the nominal and faulty system behaviors and thus assess the effectiveness of safety countermeasures. Besides introducing the detailed workflow for SW FMEA, the work in this paper focuses on the process for obtaining an executable model from a component-based software architecture specified in UML.
Keywords :
Unified Modeling Language; object-oriented methods; safety-critical software; software architecture; software fault tolerance; ISO26262 standard; UML; Unified Modeling Language; automated software FMEA; component-based software architecture; failure mode and effect analysis; fault-injection approach; model-execution approach; safety analysis; semiautomated FMEA; Analytical models; Computer architecture; Iron; Safety; Software; Standards; Unified modeling language; ALF; component-based; executable model; fUML; model-implemented fault-injection; software safety analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Assurance Systems Engineering (HASE), 2015 IEEE 16th International Symposium on
Conference_Location :
Daytona Beach Shores, FL
Print_ISBN :
978-1-4799-8110-6
Type :
conf
DOI :
10.1109/HASE.2015.36
Filename :
7027431
Link To Document :
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