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Fault-Tolerant Network Reliability and Importance Analysis Using Binary Decision Diagrams

机译:使用二进制决策图的容错网络可靠性和重要性分析

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We consider the two-terminal reliability and link importance analysis of fault tolerant network systems in this paper. Two practical issues, imperfect coverage (IPC) and common-cause failures (CCF), which have generally been ignored by existing network models, are incorporated. The methodology is to separate the consideration of both IPC and CCF from the combinatorics of the solution and then solve the reduced problems using binary decision diagrams (BDD). The application and advantages of the proposed separable approach are illustrated using a concrete analysis of an example network system. Due to the consideration of IPC and CCF, our approach can evaluate a wider class of practical network systems as compared with existing network approaches. Due to the nature of the BDD and the separation of IPC and CCF from the solution combinatorics, our approach has low computational complexity and is easy to implement. The systems without IPC or CCF appear to be special cases of our approach.
机译:我们考虑了本文故障容错网络系统的双终端可靠性和链路重要性分析。并入了两个实际问题,不完美的覆盖范围(IPC)和通常由现有网络模型忽略的常用故障(CCF)。该方法是将IPC和CCF的考虑与解决方案的组合学分开,然后使用二进制决策图(BDD)来解决减少的问题。使用示例网络系统的具体分析说明所提出的可分离方法的应用和优点。由于IPC和CCF的考虑,我们的方法可以评估与现有网络方法相比的更广泛的实用网络系统。由于BDD的性质和IPC和CCF的分离来自解决方案组合学,我们的方法具有较低的计算复杂性,并且易于实施。没有IPC或CCF的系统似乎是我们方法的特殊情况。

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