Resilient data encoding for fault-prone signal transmission in parallelized signed-digit based arithmetic
Zusammenfassung
When arithmetic components are parallelized, fault-prone interconnections can tamper results significantly. Constantly progressing technology scaling leads to a steady increase of errors caused by faulty transmission. Resilient data encoding schemes can be used to offset these negative effects. Focusing on parallel signed-digit based arithmetic frequently used in high-speed systems, we propose suitable data encodings that reduce error rates by 25%. Data encoding should be driven by the occurrence probabilities of digits. We develop a methodology to obtain these probabilities, show an example fault-tolerant encoding, and discuss its impact on communicating parallel arithmetic circuits in an example error scenario.
- Vollständige Referenz
- BibTeX
Neuhäuser, D. & Zehendner, E.,
(2012).
Resilient data encoding for fault-prone signal transmission in parallelized signed-digit based arithmetic.
In:
Mühl, G., Richling, J. & Herkersdorf, A.
(Hrsg.),
ARCS 2012 Workshops.
Bonn:
Gesellschaft für Informatik e.V..
(S. 435-444).
@inproceedings{mci/Neuhäuser2012,
author = {Neuhäuser, David AND Zehendner, Eberhard},
title = {Resilient data encoding for fault-prone signal transmission in parallelized signed-digit based arithmetic},
booktitle = {ARCS 2012 Workshops},
year = {2012},
editor = {Mühl, Gero AND Richling, Jan AND Herkersdorf, Andreas} ,
pages = { 435-444 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
author = {Neuhäuser, David AND Zehendner, Eberhard},
title = {Resilient data encoding for fault-prone signal transmission in parallelized signed-digit based arithmetic},
booktitle = {ARCS 2012 Workshops},
year = {2012},
editor = {Mühl, Gero AND Richling, Jan AND Herkersdorf, Andreas} ,
pages = { 435-444 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
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Mehr Information
ISBN: 978-3-88579-294-9
ISSN: 1617-5468
Datum: 2012
Sprache:
(en)
(en)
Typ: Text/Conference Paper

