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@ -22,11 +22,16 @@
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\frametitle{FMEA}
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%\tableofcontents[currentsection]
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\end{frame}
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\begin{frame}
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\frametitle{FMEA}
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This talk introduces Failure Mode Effects Analysis, and the different ways it is applied.
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These techniques are discussed, and then
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a refinement is proposed, which is essentially a modularisation of the FMEA process.
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\begin{frame}
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\frametitle{FMEA}
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%
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\begin{itemize}
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\pause \item Failure
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\pause \item Mode
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@ -613,7 +618,8 @@ This creates an analysis hierarchy.
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\pause \item Create a '{\dc}', where its failure modes are the symptoms of the {\fg} from which it was derived.
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\pause \item The {\dc} is now available to be used in higher level {\fgs}.
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\pause \item We can represent this process as a function which converts a {\fg} into a {\dc} and use the symbol $ \bowtie $ to represet it.
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\pause \item i.e. $ \bowtie ( FunctionalGroup ) \rightarrow {DerivedComponent} $
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\pause i.e. $ \bowtie ( FunctionalGroup ) \rightarrow {DerivedComponent} $
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%\item could use AMALG instead here $ \amalg $
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\end{itemize}
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\end{frame}
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@ -867,7 +873,7 @@ with equation~\ref{eqn:anscen}.
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% and equation~\ref{eqn:anscen}.
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% \clearpage
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%\section{Example}
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%\section{Example}/bowtie
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\begin{frame}
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\frametitle{FMMD - Failure Mode Modular De-Composition}
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To see the effects of reducing `state~explosion' we can use an example.
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