Mainly tidying up references at lunchtime.
Had to keep logging CO sensing data anyway
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mybib.bib
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mybib.bib
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@INPROCEEDINGS{721666,
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author={Heraud, N. and Hassan Mazzour, E. and Alberti, C.},
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booktitle={Control Applications, 1998. Proceedings of the 1998 IEEE International Conference on}, title={Observability and sensor positioning for processes described by linear-bilinear equations},
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year={1998},
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month={sep},
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volume={2},
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number={},
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pages={1276 -1280 vol.2},
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keywords={Costs;Equations;Instruments;Linear systems;Mathematical model;Nonlinear systems;Observability;Process control;Sensor phenomena and characterization;Sensor systems;bilinear systems;linear systems;observability;sensors;state estimation;bilinear equations;bilinear system;linear equations;linear systems;observability;sensor positioning;state estimation;},
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doi={10.1109/CCA.1998.721666},
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ISSN={},}
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@INPROCEEDINGS{5488118,
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@INPROCEEDINGS{5488118,
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author={Pace, C. and Libertino, S. and Crupi, I. and Marino, A. and Lombardo, S. and Sala, E.D. and Capuano, G. and Lisiansky, M. and Roizin, Y.},
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author={Pace, C. and Libertino, S. and Crupi, I. and Marino, A. and Lombardo, S. and Sala, E.D. and Capuano, G. and Lisiansky, M. and Roizin, Y.},
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booktitle={Instrumentation and Measurement Technology Conference (I2MTC), 2010 IEEE}, title={Compact instrumentation for radiation tolerance test of flash memories in space environment},
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booktitle={Instrumentation and Measurement Technology Conference (I2MTC), 2010 IEEE}, title={Compact instrumentation for radiation tolerance test of flash memories in space environment},
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@ -22,6 +38,34 @@ keywords={SEU tolerant flip-flop design;SEU-tolerant clock-gating scheme;TMR;are
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doi={10.1109/AHS.2011.5963919},
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doi={10.1109/AHS.2011.5963919},
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ISSN={},}
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ISSN={},}
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@article {ACS:ACS1297,
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author = {Chamseddine, A. and Noura, H.},
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title = {Sensor network design for complex systems},
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journal = {International Journal of Adaptive Control and Signal Processing},
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volume = {26},
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number = {6},
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publisher = {John Wiley & Sons, Ltd},
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issn = {1099-1115},
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url = {http://dx.doi.org/10.1002/acs.1297},
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doi = {10.1002/acs.1297},
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pages = {496--515},
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keywords = {instrumentation, sensor network, complex systems, observability},
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year = {2012},
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}
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@INPROCEEDINGS{generic_automotive_fmea_6034891,
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author={Muller, C. and Valle, M. and Armengaud, E. and Tengg, A.},
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booktitle={Industrial Informatics (INDIN), 2011 9th IEEE International Conference on}, title={A generic framework for failure modes and effects analysis of automotive networks},
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year={2011},
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month={july},
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volume={},
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number={},
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pages={293 -298},
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keywords={Analytical models;Dictionaries;Frequency selective surfaces;Network topology;Oscillators;Systematics;Topology;failure analysis;mobile radio;safety systems;EPL;FMEA;FlexRay-based distributed system;communication network technology;electrical physical layer;failure mode and effect analysis;generic framework;in-vehicle communication network;safety-relevant system development;},
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doi={10.1109/INDIN.2011.6034891},
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ISSN={},}
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@INPROCEEDINGS{swseatbelt,
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@INPROCEEDINGS{swseatbelt,
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author={Emery D Berger},
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author={Emery D Berger},
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booktitle={Communications of the ACM}, title={Software needs seatbelts and Airbags},
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booktitle={Communications of the ACM}, title={Software needs seatbelts and Airbags},
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@ -115,6 +159,7 @@ ISSN={Doi:10.1145/2330667.2330683},}
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@ARTICLE{fftoriginal,
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@ARTICLE{fftoriginal,
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title={An Algorithm for the Mechine Calculation of Complex Fourier Series},
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author={James W. Cooley and John W. Tukey},
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author={James W. Cooley and John W. Tukey},
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journal={Mathematics of Computation},
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journal={Mathematics of Computation},
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year={1965},
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year={1965},
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BIN
related_papers_books/FFT_ORIGINAL_PAPER_cooley-tukey.pdf
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related_papers_books/FFT_ORIGINAL_PAPER_cooley-tukey.pdf
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@ -173,7 +173,7 @@ simultaneous\footnote{Multiple simultaneous failures are taken to mean failure t
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Often the effects of a failure mode may be easy to detect, and our equipment can react by raising an alarm or compensating for the resulting fault.
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Often the effects of a failure mode may be easy to detect, and our equipment can react by raising an alarm or compensating for the resulting fault.
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Some failure modes may cause undetectable failure, for instance a component that causes
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Some failure modes may cause undetectable failure, for instance a component that causes
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a measured reading to change could have dire consequences yet not be obvious.
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a measured reading to change could have dire consequences yet not be obvious.
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In fault diagnosis failures are said to be observable and unobservable.
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In fault diagnosis failures are said to be observable and unobservable~\cite{721666, ACS:ACS1297}.
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\paragraph{Impracticality of Field Data for modern systems}
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\paragraph{Impracticality of Field Data for modern systems}
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@ -673,7 +673,7 @@ certification for software, EN61508~\cite{en61508}, recommends hardware redundan
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with FMEDA for hardware: for software it recommends language constraints and quality procedures
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with FMEDA for hardware: for software it recommends language constraints and quality procedures
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but no inductive fault finding technique.
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but no inductive fault finding technique.
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FMEA has adapted from a cost saving exercise for mass produced items, to incorporating statistical techniques
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FMEA has adapted from a cost saving exercise for mass produced items~\cite{bfmea,generic_automotive_fmea_6034891}, to incorporating statistical techniques
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(FMECA) to allowing for self diagnostic mitigation (FMEDA).
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(FMECA) to allowing for self diagnostic mitigation (FMEDA).
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However, it is still based on the single component failure mapped to system level failure.
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However, it is still based on the single component failure mapped to system level failure.
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All these FMEA based methodologies have the following short comings:
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All these FMEA based methodologies have the following short comings:
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@ -898,7 +898,7 @@ $$ fm(Pt100) = \{ OUT\_OF\_RANGE \} $$
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\paragraph{PWM}
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\paragraph{PWM}
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%The PWM, in use, is a hardware register written to with an integer value~\cite{pic182523}[Ch.15].
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%The PWM, in use, is a hardware register written to with an integer value~\cite{pic182523}[Ch.15].
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From a programmatic perspective a PWM output is a register that software writes
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From a programmatic perspective a PWM output is a register that software writes
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an unsigned magnitude value to~\cite{pic182523}[Ch.15].
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an unsigned magnitude value to~\cite{pic18f2523}[Ch.15].
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The PWM hardware module
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The PWM hardware module
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applies this using a mark space ratio proportional to that value, providing
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applies this using a mark space ratio proportional to that value, providing
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a means of varying the amount of power supplied.
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a means of varying the amount of power supplied.
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@ -569,7 +569,7 @@ the resistance of $R_3$.
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%
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%
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As ohms law is linear, the accuracy of the reading
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As ohms law is linear, the accuracy of the reading
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will be determined by the accuracy of $R_2$ and $R_{3}$. It is reasonable to
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will be determined by the accuracy of $R_2$ and $R_{3}$. It is reasonable to
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take the mean square error of these accuracy figures~\cite{easp}.
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take the mean square error of these accuracy figures~\cite{probstat}.
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\paragraph{Single Fault FMEA Analysis of $Pt100$ Four wire circuit}
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\paragraph{Single Fault FMEA Analysis of $Pt100$ Four wire circuit}
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@ -1026,7 +1026,7 @@ In practise these would probably float to low values
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but for the purpose of a safety critical analysis,
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but for the purpose of a safety critical analysis,
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all we can say is that the values are `floating' and `unknown'.
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all we can say is that the values are `floating' and `unknown'.
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This is an interesting case, because it is, at this stage an undetectable---or unobservable---
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This is an interesting case, because it is, at this stage an undetectable---or unobservable---
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fault. Unobservable faults are generally unacceptable in a safety critical environment~\cite{unobservability}.
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fault. Unobservable faults are generally unacceptable in a safety critical environment~\cite{ACS:ACS1297,721666}.
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%that must be handled.
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%that must be handled.
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