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Dynamic fault-tree models for fault-tolerant computer systems

机译:容错计算机系统的动态故障树模型

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Reliability analysis of fault-tolerant computer systems for critical applications is complicated by several factors. Systems designed to achieve high levels of reliability frequently employ high levels of redundancy, dynamic redundancy management, and complex fault and error recovery techniques. This paper describes dynamic fault-tree modeling techniques for handling these difficulties. Three advanced fault-tolerant computer systems are described: a fault-tolerant parallel processor, a mission avionics system, and a fault-tolerant hypercube. Fault-tree models for their analysis are presented. HARP (Hybrid Automated Reliability Predictor) is a software package developed at Duke University and NASA Langley Research Center that can solve those fault-tree models.
机译:关键应用程序的容错计算机系统的可靠性分析由于多种因素而变得复杂。为实现高可靠性而设计的系统经常采用高水平的冗余,动态冗余管理以及复杂的故障和错误恢复技术。本文介绍了用于解决这些困难的动态故障树建模技术。描述了三种先进的容错计算机系统:容错并行处理器,任务航空电子系统和容错超立方体。提出了用于分析的故障树模型。 HARP(混合自动化可靠性预测器)是由杜克大学和NASA Langley研究中心开发的软件包,可以解决这些故障树模型。

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