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dc.contributor.authorHadjicostis, Christoforos N.en
dc.contributor.authorVerghese, G. C.en
dc.creatorHadjicostis, Christoforos N.en
dc.creatorVerghese, G. C.en
dc.description.abstractWe use unreliable system replicas and unreliable voters to construct redundant dynamic systems that tolerate transient failures in their state transition and error correcting mechanisms. Using low density parity check (LDPC) codes, we develop a fault-tolerant scheme that efficiently protects linear finite state machines (LFSM's) with identical dynamics but distinct input sequences and states. The scheme achieves a probability of failure that remains below any given bound for any pre-specified (finite) time-interval using a constant amount of hardware (XOR gates and voters) per LFSM.en
dc.sourceIEEE International Symposium on Information Theory - Proceedingsen
dc.subjectMatrix algebraen
dc.subjectFailure analysisen
dc.subjectFault tolerant computer systemsen
dc.subjectEncoding (symbols)en
dc.subjectCodes (symbols)en
dc.subjectError correctionen
dc.subjectSystems analysisen
dc.subjectError correcting mechanismsen
dc.subjectFault tolerant dynamic systemsen
dc.subjectLinear finite state machinesen
dc.subjectLow density parity check codesen
dc.subjectRedundant dynamic systemsen
dc.subjectState transitionen
dc.subjectTolerant transient failuresen
dc.titleFault-tolerant dynamic systemsen
dc.description.issueJournal ArticleenΠολυτεχνική Σχολή / Faculty of EngineeringΤμήμα Ηλεκτρολόγων Μηχανικών και Μηχανικών Υπολογιστών / Department of Electrical and Computer Engineering
dc.source.abbreviationIEEE Int Symp Inf Theor Procen
dc.contributor.orcidHadjicostis, Christoforos N. [0000-0002-1706-708X]

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