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Correction of faulty signal transmission for resilient designs of signed-digit arithmetic

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2012

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Gesellschaft für Informatik e.V.

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When arithmetic components are parallelized, fault-prone interconnections can tamper results significantly. Advances in feature size shrinking lead to a steady increase of errors caused by faulty transmission. We suggest to employ resilient data encoding schemes to offset these negative effects. Focusing on parallel signed-digit based arithmetic, frequently used in high-speed systems, we found that a suitable data encoding can reduce error rates by about 25% when using 2-bit encoding and about 62% when using 3-bit encoding. Data encoding should be driven by symbol occurrence probabilities. We develop a methodology to obtain these probabilities, show example fault-tolerant encodings, and discuss the impact on communicating parallel arithmetic circuits in example error scenarios.

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Neuhäuser, David; Zehendner, Eberhard (2012): Correction of faulty signal transmission for resilient designs of signed-digit arithmetic. ARCS 2012 Workshops. Bonn: Gesellschaft für Informatik e.V.. PISSN: 1617-5468. ISBN: 978-3-88579-294-9. pp. 211-220. Regular Research Papers. München. 28. Februar-2. März 2012

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