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Titlebook: Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems; Christoforos N. Hadjicostis Book 2002 Springer Science+Business

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书目名称Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems
编辑Christoforos N. Hadjicostis
视频video
丛书名称The Springer International Series in Engineering and Computer Science
图书封面Titlebook: Coding Approaches to Fault Tolerance in Combinational and Dynamic Systems;  Christoforos N. Hadjicostis Book 2002 Springer Science+Business
描述.Coding Approaches to Fault Tolerance in Combinational andDynamic. .Systems. describes coding approaches for designingfault-tolerant systems, i.e., systems that exhibit structuredredundancy that enables them to distinguish between correct andincorrect results or between valid and invalid states. Sinceredundancy is expensive and counter-intuitive to the traditionalnotion of system design, the book focuses on resource-efficientmethodologies that avoid excessive use of redundancy by exploiting thealgorithmic/dynamic structure of a particular combinational or dynamicsystem. .The first part of .Coding Approaches to Fault Tolerance in..Combinational and Dynamic Systems. focuses on fault-tolerantcombinational systems providing a review of von Neumann‘s classicalwork on Probabilistic Logics (including some more recent work on noisygates) and describing the use of arithmetic coding and algorithm-basedfault-tolerant schemes in algebraic settings. The second part of thebook focuses on fault tolerance in dynamic systems. .CodingApproaches. .to Fault Tolerance in Combinational and DynamicSystems. also discusses how, in a dynamic system setting, one canrelax the traditional assumption that the e
出版日期Book 2002
关键词Counter; Hardware; diagnosis; fault tolerance; model; network; system; tables
版次1
doihttps://doi.org/10.1007/978-1-4615-0853-3
isbn_softcover978-1-4613-5271-6
isbn_ebook978-1-4615-0853-3Series ISSN 0893-3405
issn_series 0893-3405
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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Reliable Combinational Systems Out of Unreliable Componentsng organs” to achieve error correction. The voters used for computational purposes received inputs that were either primary inputs, constants or outputs from other voters; the voters that functioned as “restoring organs” ideally (i.e., under fault-free conditions) received identical inputs.
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Concluding RemarksViolations of these constraints can then be used by an external mechanism to detect and correct errors. The faults that cause the errors could be due to hardware malfunctions, communication faults, incorrect initialization, and so forth.
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Security, Citizenship and Human Rightslinearly encoded binary vector) is used by an external, . mechanism to perform concurrent error detection and correction at the end of each time step. The assumption of a fault-free error corrector is relaxed in Chapter 7.
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Designing Smart-Contract Based Auctionsng defects, or irreversible physical damage. (ii) . faults do not appear on a consistent basis and only manifest themselves in a certain portion of system invocations; transient faults could be due to noise, such as absorption of alpha particles and electromagnetic interference, or environmental factors, such as overheating.
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