DocumentCode
1493131
Title
A subjective methodology for safety analysis of safety requirements specifications
Author
Wang, J.
Author_Institution
Centre of Maritime & Offshore Oper., Liverpool John Moores Univ., UK
Volume
5
Issue
3
fYear
1997
fDate
8/1/1997 12:00:00 AM
Firstpage
418
Lastpage
430
Abstract
This paper presents a methodology for subjective safety analysis of safety requirements specifications of software for safety-critical systems. The methodology incorporates fuzzy set modeling and evidential reasoning to assess the safety associated with safety requirements specifications. Three basic parameters-failure likelihood, consequence severity, and failure consequence probability are used to analyze a safety rule in terms of membership functions. The subjective safety description associated with the safety rule is then mapped back to the defined safety expressions which are also characterized in terms of membership functions. Such a mapping results in the production of the safety evaluation associated with the safety rule. The information produced for all safety rules can then be synthesised using an evidential reasoning approach to obtain the safety evaluation associated with the safety requirements specifications. The developed methodology is capable of dealing with multiple safety analysts who make judgements on each safety rule. A case study based on a train-set crossing is used to demonstrate the methodology
Keywords
case-based reasoning; failure analysis; fuzzy set theory; probability; safety-critical software; traffic engineering computing; consequence severity; evidential reasoning; failure consequence probability; failure likelihood; fuzzy set modeling; fuzzy set theory; membership functions; safety analysis; safety requirements specifications; safety-critical systems; subjective safety analysis; train-set crossing; Fuzzy reasoning; Fuzzy set theory; Fuzzy sets; Hazards; Product safety; Programming; Risk analysis; Software safety; Software systems; Uncertainty;
fLanguage
English
Journal_Title
Fuzzy Systems, IEEE Transactions on
Publisher
ieee
ISSN
1063-6706
Type
jour
DOI
10.1109/91.618277
Filename
618277
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