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Reliability of a Multi-State Computer Network Through k Minimal Paths Within Tolerable Error Rate and Time Threshold

机译:通过可容忍的错误率和时间阈值内的k条最小路径实现多状态计算机网络的可靠性

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A computer system is usually modeled as a network topology where each branch denotes a transmission medium and each vertex represents a station of servers. Each branch has multiple capacities/states due to failure, partial failure, and maintenance. Such a network is named a multi-state computer network (MSCN). From the viewpoint of quality management, transmission error rate and transmission time are both critical performance indicators to assess Internet quality for system managers and customers. Within both tolerable error rate and time threshold, the addressed problem is concentrated on an MSCN for computing the probability that d units of data can be sent through multiple minimal paths simultaneously. Such a probability is named system reliability. A solution procedure including an efficient algorithm based on MPs is proposed to derive the lower boundary vectors (LBVs) meeting the requirements. Then system reliability, which is represented as the probability of union of subsets, can be subsequently evaluated by the LBVs. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:通常将计算机系统建模为网络拓扑,其中每个分支表示传输介质,每个顶点表示服务器站。由于故障,部分故障和维护,每个分支都有多个容量/状态。这样的网络称为多状态计算机网络(MSCN)。从质量管理的角度来看,传输错误率和传输时间都是评估系统管理员和客户的Internet质量的关键性能指标。在可容忍的错误率和时间阈值内,解决的问题集中在MSCN上,用于计算d个单位的数据可以同时通过多个最小路径发送的概率。这种可能性称为系统可靠性。提出了一种包含基于MP的高效算法的求解过程,以得出满足要求的下边界矢量(LBV)。然后,可以通过LBV评估系统可靠性(表示为子集合并的概率)。版权所有(c)2015 John Wiley&Sons,Ltd.

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