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Reliability Assessment of Lifeline Systems with Radial Looped Topology

机译:具有径向环状拓扑的生命线系统的可靠性评估

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The increased susceptibility of lifeline systems to failure requires efficient methods to quantify their reliability and uncertainty. Monte Carlo simulation techniques for network-level reliability assessment usually require large computational experiments. Also, available analytical approaches apply mainly to simple network topologies and are limited to providing average values or confidence bounds of reliability metrics. Hence, this study introduces a closed form technique to obtain the entire probability distribution of a reliability metric of customer service availability (CSA) for radial looped systems. These systems have main feeders emanating from a source point and reach customers through lateral branches from the main feeders, while there are normally open switches at the end of the feeders that automatically close to provide redundant paths. The theoretical development of CSA imposes no restrictions on the number of branching points per feeder or laterals per branch, although there are practical computational limitations for large systems. However, the structure of the formulation reveals that it is possible to find recursive algorithms to cope with computational complexity in the future. The proposed reliability assessment equation and resulting probability distribution provide infrastructure owners with critical insights for informed operation and maintenance decision making under uncertainty.
机译:生命线系统对故障的增加易感性需要有效的方法来量化其可靠性和不确定性。网络级可靠性评估的蒙特卡罗模拟技术通常需要大型计算实验。此外,可用的分析方法主要适用于简单的网络拓扑,并限于提供可靠性指标的平均值或置信范围。因此,本研究介绍了一种封闭的形式技术,以获得径向环路系统的客户服务可用性(CSA)可靠性度量的整个概率分布。这些系统具有从源点发出的主馈送器,并通过主馈线通过横向分支到达客户,同时在馈线的末端存在常开关,自动接近提供冗余路径。 CSA的理论发展对每个分支的每个饲养者或外侧的分支点数施加了限制,尽管大型系统存在实际计算限制。然而,制剂的结构表明,可以找到递归算法以应对未来的计算复杂性。所提出的可靠性评估方程和产生的概率分布为基础设施的业主提供了在不确定性下有线运营和维护决策的关键见解。

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