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Study of a Redundant Residue Number System for Single Error Correction

One approach to reliability is to use a redundant residue number system. In general, two redundant moduli are required to detect and correct a single error. This paper considers an approach to error correction using a single redundant modulo, which allows a significant reduction in the hardware used...

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المؤلفون الرئيسيون: Kuchukov, V. A., Кучуков, В. А., Babenko, M. G., Бабенко, М. Г.
التنسيق: Статья
اللغة:English
منشور في: 2024
الموضوعات:
الوصول للمادة أونلاين:https://dspace.ncfu.ru/handle/20.500.12258/26713
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spelling ir-20.500.12258-267132024-02-27T13:14:24Z Study of a Redundant Residue Number System for Single Error Correction Kuchukov, V. A. Кучуков, В. А. Babenko, M. G. Бабенко, М. Г. Application-specific integrated circuit Residue number system (RNS) Error correction Chinese remainder theorem One approach to reliability is to use a redundant residue number system. In general, two redundant moduli are required to detect and correct a single error. This paper considers an approach to error correction using a single redundant modulo, which allows a significant reduction in the hardware used, but at a significant cost in computational speed. The use of an approximate method based on the Chinese remainder theorem allows the speed of computation to be increased by eliminating the computationally complex operation of taking the remainder from the division by the range of the residue number system. A method based on the approximate method with one redundant modulo is proposed. Modelling of the considered methods on ASICs in RTL and physical synthesis environment Cadence Genus Synthesis Solution is carried out. 2024-02-27T13:12:00Z 2024-02-27T13:12:00Z 2023 Статья Kuchukov, V., Babenko, M., Al-Galda, S. Study of a Redundant Residue Number System for Single Error Correction // Advances in Systems Science and Applications. - 2023. - 23 (4). - pp. 31-39. - DOI: 10.25728/assa.2023.23.04.1447 http://hdl.handle.net/20.500.12258/26713 en Advances in Systems Science and Applications application/pdf
institution СКФУ
collection Репозиторий
language English
topic Application-specific integrated circuit
Residue number system (RNS)
Error correction
Chinese remainder theorem
spellingShingle Application-specific integrated circuit
Residue number system (RNS)
Error correction
Chinese remainder theorem
Kuchukov, V. A.
Кучуков, В. А.
Babenko, M. G.
Бабенко, М. Г.
Study of a Redundant Residue Number System for Single Error Correction
description One approach to reliability is to use a redundant residue number system. In general, two redundant moduli are required to detect and correct a single error. This paper considers an approach to error correction using a single redundant modulo, which allows a significant reduction in the hardware used, but at a significant cost in computational speed. The use of an approximate method based on the Chinese remainder theorem allows the speed of computation to be increased by eliminating the computationally complex operation of taking the remainder from the division by the range of the residue number system. A method based on the approximate method with one redundant modulo is proposed. Modelling of the considered methods on ASICs in RTL and physical synthesis environment Cadence Genus Synthesis Solution is carried out.
format Статья
author Kuchukov, V. A.
Кучуков, В. А.
Babenko, M. G.
Бабенко, М. Г.
author_facet Kuchukov, V. A.
Кучуков, В. А.
Babenko, M. G.
Бабенко, М. Г.
author_sort Kuchukov, V. A.
title Study of a Redundant Residue Number System for Single Error Correction
title_short Study of a Redundant Residue Number System for Single Error Correction
title_full Study of a Redundant Residue Number System for Single Error Correction
title_fullStr Study of a Redundant Residue Number System for Single Error Correction
title_full_unstemmed Study of a Redundant Residue Number System for Single Error Correction
title_sort study of a redundant residue number system for single error correction
publishDate 2024
url https://dspace.ncfu.ru/handle/20.500.12258/26713
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