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A method of developing a checkable self-recovery floating-point pipeline system

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dc.contributor.author Drozd, Oleksandr
dc.contributor.author Дрозд, Олександр Валентинович
dc.contributor.author Kovalоv, Igor
dc.contributor.author Ковальов, Ігор Станіславович
dc.contributor.author Martynyuk, Oleksandr
dc.contributor.author Мартинюк, Олександр Миколайович
dc.contributor.author Zashcholkin, Kostiantyn
dc.contributor.author Защолкін, Костянтин Вячеславович
dc.contributor.author Drozd, Julia
dc.contributor.author Дрозд, Юлія Володимирівна
dc.date.accessioned 2025-03-28T06:24:12Z
dc.date.available 2025-03-28T06:24:12Z
dc.date.issued 2020
dc.identifier.citation Drozd, O., Kovalоv, I., Martynyuk, O., Zashcholkin, K., Drozd, J. (2020). A method of developing a checkable self-recovery floating-point pipeline system. CEUR Workshop Proceedings, Volume 2623, P. 357-367. en
dc.identifier.issn 16130073
dc.identifier.uri http://dspace.opu.ua/jspui/handle/123456789/15045
dc.description.abstract The objective nature observed in the development of the computer world makes it possible to predict requests for the development of promising computer systems. The parallelism and fuzziness of the natural world encourages the development of pipeline systems for the processing of approximate data. The progressive development of high-risk objects increases the requirements for safety-related systems in improving the checkable and fault-tolerant solutions used in them. A method for developing a checkable fault-tolerant floating- point pipeline system is proposed. Matrix circuits of pipeline sections are unified in the form of lines of identical elements. The operands and floating-point results obtain an additional bit excluded from the calculations. Its movement creates many versions of calculation execution, ensuring the checkability of circuits and their fault tolerance in the form of self-recovery when selecting a version that excludes a faulty element. The method uses the synergy of different types of performed functions to simplify the system and to counter faults. en
dc.language.iso en en
dc.publisher CEUR-WS en
dc.subject safety-related system en
dc.subject approximate data en
dc.subject floating-point pipeline system en
dc.subject version en
dc.subject checkability en
dc.subject fault tolerance en
dc.subject self-recovery en
dc.title A method of developing a checkable self-recovery floating-point pipeline system en
dc.type Article in Scopus en
opu.citation.journal CEUR Workshop Proceedings en
opu.citation.firstpage 357 en
opu.citation.lastpage 367 en


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