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Robin Clark 2010-10-30 17:10:27 +01:00
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@ -30,7 +30,7 @@ Once a hierarchy is in place, it can be converted into a fault data model.
From the fault data model, automatic generation From the fault data model, automatic generation
of FTA \cite{nasafta} (Fault Tree Analysis) and mimimal cuts sets \cite{nucfta} are possible. of FTA \cite{nasafta} (Fault Tree Analysis) and mimimal cuts sets \cite{nucfta} are possible.
Also statistical reliability/probability of failure~on~demand \cite{en61508} and MTTF (Mean Time to Failure) calculations can be produced Also statistical reliability/probability of failure~on~demand \cite{en61508} and MTTF (Mean Time to Failure) calculations can be produced
automatically, where component failure mode statistics are available \cite{mil1991}. automatically \footnote{Where component failure mode statistics are available \cite{mil1991}}.
% %
This chapter focuses on the process of building the blocks, the symptom extraction or abstraction process, that is key to creating an FMMD hierarchy. This chapter focuses on the process of building the blocks, the symptom extraction or abstraction process, that is key to creating an FMMD hierarchy.
} }

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@ -132,7 +132,7 @@
Safety critical in that it must not overheat, and that it must alarm Safety critical in that it must not overheat, and that it must alarm
for incorrect temperature. for incorrect temperature.
\chapter{Modelling and uncovering Common Mode Failures using FMMD} \chapter{Modelling and Uncovering Common Mode Failures using FMMD}
\input{common_mode/common_mode} \input{common_mode/common_mode}
\chapter{FMMD Used as a design aide} \chapter{FMMD Used as a design aide}