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Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number

The Residue Number System (RNS) is a number representation system used in applications that require high-speed arithmetic operations such as signal processing, digital filters, cryptography, and error correction codes. However, one of the problems with using RNS is determining the rank of a number r...

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প্রধান লেখক: Bezuglova, E. S., Безуглова, Е. С., Kulikova, A. L., Куликова, А. Л., Babenko, M. G., Бабенко, М. Г.
বিন্যাস: Статья
ভাষা:English
প্রকাশিত: Springer Science and Business Media Deutschland GmbH 2024
বিষয়গুলি:
অনলাইন ব্যবহার করুন:https://dspace.ncfu.ru/handle/123456789/29178
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spelling ir-123456789-291782024-10-30T12:41:14Z Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number Bezuglova, E. S. Безуглова, Е. С. Kulikova, A. L. Куликова, А. Л. Babenko, M. G. Бабенко, М. Г. Approximate method Residue number system (RNS) Calculation of the rank of a number Rank of a number The Residue Number System (RNS) is a number representation system used in applications that require high-speed arithmetic operations such as signal processing, digital filters, cryptography, and error correction codes. However, one of the problems with using RNS is determining the rank of a number represented in the system, which is a computationally difficult operation. This paper presents a method for detecting and correcting errors in arithmetic operations using the properties of the normalized rank of a number. The authors develop a lemma relating two functions of the rank of a number, which is used to efficiently calculate the normalized rank. The performance of error detection and correction algorithms largely depends on the efficiency of calculating the rank of a number in RNS. The paper also describes the development of methods for calculating the rank of a number using an approximate method, which shows the relationship between the rank of a number and the inversion of a prime number and is proved using mathematical equations. This article proposes a solution to this problem and is of great importance in improving the performance of RNS-based algorithms. 2024-10-30T12:39:37Z 2024-10-30T12:39:37Z 2024 Статья Bezuglova E., Kulikova A., Babenko M. Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number // Lecture Notes in Networks and Systems. - 2024. - 1044 LNNS. - pp. 105 - 114. - DOI: 10.1007/978-3-031-64010-0_11 https://dspace.ncfu.ru/handle/123456789/29178 en Lecture Notes in Networks and Systems application/pdf Springer Science and Business Media Deutschland GmbH
institution СКФУ
collection Репозиторий
language English
topic Approximate method
Residue number system (RNS)
Calculation of the rank of a number
Rank of a number
spellingShingle Approximate method
Residue number system (RNS)
Calculation of the rank of a number
Rank of a number
Bezuglova, E. S.
Безуглова, Е. С.
Kulikova, A. L.
Куликова, А. Л.
Babenko, M. G.
Бабенко, М. Г.
Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
description The Residue Number System (RNS) is a number representation system used in applications that require high-speed arithmetic operations such as signal processing, digital filters, cryptography, and error correction codes. However, one of the problems with using RNS is determining the rank of a number represented in the system, which is a computationally difficult operation. This paper presents a method for detecting and correcting errors in arithmetic operations using the properties of the normalized rank of a number. The authors develop a lemma relating two functions of the rank of a number, which is used to efficiently calculate the normalized rank. The performance of error detection and correction algorithms largely depends on the efficiency of calculating the rank of a number in RNS. The paper also describes the development of methods for calculating the rank of a number using an approximate method, which shows the relationship between the rank of a number and the inversion of a prime number and is proved using mathematical equations. This article proposes a solution to this problem and is of great importance in improving the performance of RNS-based algorithms.
format Статья
author Bezuglova, E. S.
Безуглова, Е. С.
Kulikova, A. L.
Куликова, А. Л.
Babenko, M. G.
Бабенко, М. Г.
author_facet Bezuglova, E. S.
Безуглова, Е. С.
Kulikova, A. L.
Куликова, А. Л.
Babenko, M. G.
Бабенко, М. Г.
author_sort Bezuglova, E. S.
title Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
title_short Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
title_full Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
title_fullStr Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
title_full_unstemmed Method for Detecting and Correcting Errors in Arithmetic Operations Based on Rank of a Number
title_sort method for detecting and correcting errors in arithmetic operations based on rank of a number
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2024
url https://dspace.ncfu.ru/handle/123456789/29178
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