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A Unified Method for Analyzing Mission Reliability for Fault Tolerant Computer Systems

机译:容错计算机系统任务可靠性的统一分析方法

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摘要

A reliability model is proposed and evaluated for a fault tolerant computer system which consists of multiple classes of modules and allows for degraded modes of performance. Each module of a given class has both an active and a passive hazard rate; constant hazard rates are assumed for active and dormant failures, and the given class may operate either in N Modular Redundancy (NMR: n + 1 out of 2n + 1 = N) or as a standby sparing system. The model allows for mission-phase changes at deterministic time points when the numbers of modules per class can be changed. The analysis proceeds by generalizing the notions of standby and NMR redundancy, which for N = 3 is TMR (Triple Modular Redundancy), into a concept called hybrid-degraded redundancy. The probabilistic evaluation of the unified redundancy concept is then developed to yield, for a given modular class, the joint distribution of success and the number of nonfailed modules from that class, at special times. With this information, a Markov chain analysis gives the reliability of an entire sequence of phases (mission profile).
机译:针对容错计算机系统,提出了一种可靠性模型并对其进行了评估,该系统由多类模块组成,并允许性能下降的模式。给定类别的每个模块都具有主动和被动的危险率;对于活动和休眠故障,假定恒定的危险率,并且给定类别可以在N模冗余(NMR:n + 1等于2n +1 = N)下运行或用作备用备用系统。当可以更改每个类的模块数时,该模型允许在确定的时间点执行任务阶段更改。通过将待机和NMR冗余(对于N = 3为TMR(三重模块冗余))的概念概括为一个称为混合降级冗余的概念,可以进行分析。然后,对统一冗余概念进行概率评估,以针对给定的模块化类别在特定时间得出成功的联合分布以及该类别中未失败模块的数量。有了这些信息,马尔可夫链分析就可以给出整个相位序列(任务曲线)的可靠性。

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  • 来源
    《Reliability, IEEE Transactions on》 |1973年第2期|P.72-77|共6页
  • 作者

    Bricker Jacob L.;

  • 作者单位

    Hughes Aircraft Company, Fullerton, Calif. 92634.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
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