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Hidden Fault Analysis of FPGA Projects for Critical Applications

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dc.contributor.author Drozd, Oleksandr
dc.contributor.author Perebeinos, Ihor
dc.contributor.author Martynyuk, Oleksandr
dc.contributor.author Zashcholkin, Konstantin
dc.contributor.author Ivanova, Olena
dc.contributor.author Drozd, Myroslav
dc.contributor.author Дрозд, Олександр Валентинович
dc.contributor.author Перебейнос, Ігор Олександрович
dc.contributor.author Мартинюк, Олександр Миколайович
dc.contributor.author Защолкін, Костянтин Вячеславович
dc.contributor.author Іванова, Олена Миколаївна
dc.contributor.author Дрозд, Мирослав Олександрович
dc.contributor.author Дрозд, Александр Валентинович
dc.contributor.author Перебейнос, Игорь Александрович
dc.contributor.author Мартынюк, Александр Николаевич
dc.contributor.author Защелкин, Константин Вячеславович
dc.contributor.author Иванова, Елена Николаевна
dc.contributor.author Дрозд, Мирослав Александрович
dc.date.accessioned 2020-09-28T07:15:32Z
dc.date.available 2020-09-28T07:15:32Z
dc.date.issued 2020
dc.identifier.citation Drozd, O., Perebeinos, I., Martynyuk, O., Zashcholkin, K., Ivanova, O., Drozd, M. (2020). Hidden Fault Analysis of FPGA Projects for Critical Applications. IEEE Proceedings 15th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering, Conference 25-29 Feb. 2020, p. 467–471. en
dc.identifier.citation Hidden Fault Analysis of FPGA Projects for Critical Applications / O. Drozd, I. Perebeinos, O. Martynyuk, K. Zashcholkin, O. Ivanova, M. Drozd // IEEE Proceedings 15th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering : conference 25–29 feb. 2020. – 2020. – P. 467–471. en
dc.identifier.other DOI: 10.1109/TCSET49122.2020.235591
dc.identifier.uri https://ieeexplore.ieee.org/document/9088661
dc.identifier.uri http://dspace.opu.ua/jspui/handle/123456789/11043
dc.description.abstract This paper focuses on the problem of hidden faults, which is seen like a growth one inherent in modern safety-related systems. The special feature of these is the designing for operation in two modes: normal and emergency. Digital components can accumulate hidden failures over a long-term normal mode. This reduces their fault tolerance and functional safety of the system in the most responsible emergency mode. Two conditions for occurrence of the hidden fault problem as a growth one are considered in view of a resource approach, which in the development of models, methods and means highlights levels of replication and diversification. Safety-related systems are analyzed as computer systems that have increased to the level of diversification to address the security challenge. Their components are still stamped at a level of resource replication using matrix structures to process data in parallel codes. Fault-tolerant solutions become fault-safe with a sufficient level of circuit checkability, which is commonly known as testability, i.e. structural checkability, depending only on the structure of the circuit. In the operating mode, the checkability becomes structurally-functional, and in critical applications it is converted into a dual-mode, the shortage of which causes the hidden fault problem. A method of analyzing circuits for the possibility of hidden faults is suggested. The method is illustrated on example of an iterative array multiplier implemented in an FPGA project with a LUT-oriented architecture. A program model for the resulting scheme has been developed and potentially dangerous points have been found in it in which the hidden fault problem of may manifest itself. en
dc.language.iso en en
dc.subject FPGA en
dc.subject LUT-oriented architecture en
dc.subject safety-related system en
dc.subject digital component en
dc.subject resource approach en
dc.subject replication en
dc.title Hidden Fault Analysis of FPGA Projects for Critical Applications en
dc.type Article in Scopus en
opu.kafedra Кафедра комп’ютерних інтелектуальних систем та мереж uk
opu.citation.firstpage 467 en
opu.citation.lastpage 471 en
opu.citation.conference 15th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering, TCSET 2020 en
opu.staff.id drozd@opu.ua en
opu.staff.id martynyuk@opu.ua en
opu.staff.id zashcholkin@opu.ua en
opu.staff.id ivanova.o.m@opu.ua en
opu.staff.id myroslav.drozd@opu.ua en
opu.conference.dates 25-29 Лютого 2020 en


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