DocumentCode
3067014
Title
Automatic generation of analyzable failure propagation models from component-level failure annotations
Author
Grunske, Lars ; Kaiser, Bernhard
Author_Institution
Sch. of Inf. Technol. & Electr. Eng., Queensland Univ., Brisbane, Qld., Australia
fYear
2005
fDate
19-20 Sept. 2005
Firstpage
117
Lastpage
123
Abstract
Model-driven and component-based software engineering methodologies are currently key factors for the successful construction of complex software systems. To effectively apply these methodologies to mission- and safety-critical systems, component-based models should also support hazard analysis techniques and enable the automatic construction of safety cases. This paper outlines a technique, which annotates components with modular failure mode assumptions, described in the failure propagation transformation notation (FPTN) and generates an analyzable failure propagation model for the complete system. Based on this technique, a model-based safety evaluation is possible, which enables the automatic generation of safety cases based on system models. Consequently, a consistency between the safety case and the system model can be ensured, even if the system´s architecture is changed.
Keywords
fault trees; formal verification; object-oriented programming; safety-critical software; systems analysis; analyzable failure propagation model; automatic generation; component-based software engineering; component-level failure annotation; failure propagation transformation notation; hazard analysis technique; mission-and safety-critical system; model-based safety valuation; systems architecture; Computer architecture; Failure analysis; Fault trees; Hardware; Hazards; Performance analysis; Railway safety; Signal analysis; Software engineering; Software safety; Component Fault Trees; Failure Propagation Transformation Notation; Safety analysis; System analysis; System architectures;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Software, 2005. (QSIC 2005). Fifth International Conference on
ISSN
1550-6002
Print_ISBN
0-7695-2472-9
Type
conf
DOI
10.1109/QSIC.2005.16
Filename
1579127
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