Development of safety analysis and constraint detection techniques for process interaction errors

Among the new failure modes introduced by computer into safety systems, the process interaction error is the most unpredictable and complicated failure mode, which may cause disastrous consequences. This paper presents safety analysis and constraint detection techniques for process interaction error...

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Veröffentlicht in:Annals of nuclear energy 2011-02, Vol.38 (2), p.547-557
Hauptverfasser: Fan, Chin-Feng, Tsai, Shang-Lin, Tseng, Wan-Hui
Format: Artikel
Sprache:eng
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Zusammenfassung:Among the new failure modes introduced by computer into safety systems, the process interaction error is the most unpredictable and complicated failure mode, which may cause disastrous consequences. This paper presents safety analysis and constraint detection techniques for process interaction errors among hardware, software, and human processes. Among interaction errors, the most dreadful ones are those that involve run-time misinterpretation from a logic process. We call them the “semantic interaction errors”. Such abnormal interaction is not adequately emphasized in current research. In our static analysis, we provide a fault tree template focusing on semantic interaction errors by checking conflicting pre-conditions and post-conditions among interacting processes. Thus, far-fetched, but highly risky, interaction scenarios involve interpretation errors can be identified. For run-time monitoring, a range of constraint types is proposed for checking abnormal signs at run time. We extend current constraints to a broader relational level and a global level, considering process/device dependencies and physical conservation rules in order to detect process interaction errors. The proposed techniques can reduce abnormal interactions; they can also be used to assist in safety-case construction.
ISSN:0306-4549
1873-2100
DOI:10.1016/j.anucene.2010.09.028