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Software Failure Modes and Effects Analysis

IEEE Transactions on Reliability, 1979
This concept paper discusses the possible use of failure modes and effects analysis (FMEA) as a means to produce more reliable software. FMEA is a fault avoidance technique whose objective is to identify hazards in requirements that have the potential to either endanger mission success or significantly impact life-cycle costs.
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Modelling Failure Modes and Effects Analysis

International Journal of Quality & Reliability Management, 1993
Presents a critical review of the method of FMEA and in particular of the risk priority number (RPN) used for ranking failure modes. Though the method itself is of great use, the calculation of the RPN lacks a proper model as a base and is thus internally inconsistent and potentially misleading.
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Failure Mode and Effects Analysis — IFMICE

Management Research News, 1984
IFMICE (Identification of Failure Mode, Inhibition of Cause and Effect) is useful for the evaluation of policy proposals as well as of engineering designs. Its application to policy making is considered in this article. The preliminaries and procedure of applying the analysis are outlined.
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Failure modes and effects analysis — Bibliography

Microelectronics Reliability, 1992
Abstract This paper presents a brief introduction and an extensive list of selective references on failure modes and effects analysis concept.
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Failure Mode, Effect and Criticality Analysis

1983
A Failure Mode, Effect and Criticality Analysis (FMECA) is now an established technique for assessing the design and reliability of a system but the mechanics of the method are less well defined. This paper identifies the advantages to be gained from, and the requirements of, such an analysis.
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Automating failure modes and effects analysis

Proceedings of Annual Reliability and Maintainability Symposium (RAMS), 2002
This paper presents the current results of a multiyear effort to automate failure modes and effects analysis (FMEA) and its associated reliability analysis. A modular approach to modeling the system failure behavior is described. A component module definition contains a declarative part (inputs, outputs and mode variables) and a behavioral part (mode ...
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