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Titlebook: Dependable Computing for Critical Applications 2; John F. Meyer,Richard D. Schlichting Conference proceedings 1992 Springer-Verlag/Wien 19

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书目名称Dependable Computing for Critical Applications 2
编辑John F. Meyer,Richard D. Schlichting
视频video
丛书名称Dependable Computing and Fault-Tolerant Systems
图书封面Titlebook: Dependable Computing for Critical Applications 2;  John F. Meyer,Richard D. Schlichting Conference proceedings 1992 Springer-Verlag/Wien 19
描述This volume contains the papers presented at the Second International Work­ ing Conference on Dependable Computing for Critical Applications, sponsored by IFIP Working Group lOA and held in Tucson, Arizona on February 18-20, 1991. In keeping with the first such conference on this topic, which took place at the University of California, Santa Barbara in 1989, this meeting was like­ wise concerned with an important basic question: Can we rely on Computers? In more precise terms, it addressed various aspects of computer system de­ pendability, a broad concept defined as th‘e trustworthiness of computer service such that reliance can justifiably be placed on this service. Given that this term includes attributes such as reliability, availability, safety, and security, it is our hope that these papers will contribute to further integration of these ideas in the context of critical applications. The program consisted of 20 papers and three panel sessions. The papers were selected from a total of 61 submissions at a November 1990 meeting of the Program Committee in Ann Arbor, Michigan. We were very fortunate to have a broad spectrum of interests represented, with papers in the final progr
出版日期Conference proceedings 1992
关键词design; development; safety; validation
版次1
doihttps://doi.org/10.1007/978-3-7091-9198-9
isbn_softcover978-3-7091-9200-9
isbn_ebook978-3-7091-9198-9Series ISSN 0932-5581
issn_series 0932-5581
copyrightSpringer-Verlag/Wien 1992
The information of publication is updating

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Limits of Parallelism in Fault-Tolerant Multiprocessorschanism. We consider four different methods of fault-tolerance:.For each of the above fault-tolerance methods, we give an expression for the expected completion time, as a function of the number of processors in the system, and provide numerical results to illustrate the limit of parallelism.
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Correlated Hardware Failures in Redundant Systemse concept of correlation between failures into a Markov model of a redundant system. This methodology uses a correlation coefficient to determine the (constant) rate of occurrence of the second and subsequent faults in a Markov model of a system. We solve models of two, three and four component syst
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Impact of Correlated Failures on Dependability in a VAXcluster Systemfluenced by correlated failures. The joint failure rate of the two components, λ., is found to be the key parameter for estimating reliability of 1-out-of-2 systems with correlated failures. A validated relationship between ρ and λ., is also derived.
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0932-5581 eeting of the Program Committee in Ann Arbor, Michigan. We were very fortunate to have a broad spectrum of interests represented, with papers in the final progr978-3-7091-9200-9978-3-7091-9198-9Series ISSN 0932-5581
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Architectural Foundations, Concepts and Methods Behind ISACS — A Real-Time Intelligent System for Crrt system, intended to be used by the operator of a Nuclear Power Plant. The system, for its own nature, is an example of a class of applications normally referred to as critical applications. Dependability is a key requirement for the system.
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