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Maximum flow-based resilience analysis: From component to system

机译:基于最大流量的弹性分析:从组件到系统

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摘要

Resilience, the ability to withstand disruptions and recover quickly, must be considered during system design because any disruption of the system may cause considerable loss, including economic and societal. This work develops analytic maximum flow-based resilience models for series and parallel systems using Zobel’s resilience measure. The two analytic models can be used to evaluate quantitatively and compare the resilience of the systems with the corresponding performance structures. For systems with identical components, the resilience of the parallel system increases with increasing number of components, while the resilience remains constant in the series system. A Monte Carlo-based simulation method is also provided to verify the correctness of our analytic resilience models and to analyze the resilience of networked systems based on that of components. A road network example is used to illustrate the analysis process, and the resilience comparison among networks with different topologies but the same components indicates that a system with redundant performance is usually more resilient than one without redundant performance. However, not all redundant capacities of components can improve the system resilience, the effectiveness of the capacity redundancy depends on where the redundant capacity is located.
机译:在系统设计期间必须考虑弹性,即抵御破坏和快速恢复的能力,因为系统的任何破坏都可能造成相当大的损失,包括经济和社会损失。这项工作使用Zobel的弹性指标为串联和并联系统开发了基于最大流量的解析弹性模型。这两个分析模型可用于定量评估并将系统的弹性与相应的性能结构进行比较。对于具有相同组件的系统,并行系统的弹性随组件数量的增加而增加,而在串联系统中,弹性保持恒定。还提供了一种基于蒙特卡洛的仿真方法,以验证我们的分析弹性模型的正确性,并基于组件的弹性分析网络系统的弹性。道路网络示例用于说明分析过程,具有不同拓扑但组件相同的网络之间的弹性比较表明,具有冗余性能的系统通常比没有冗余性能的系统更具弹性。但是,并非所有组件的冗余容量都可以提高系统的弹性,容量冗余的有效性取决于冗余容量的位置。

著录项

  • 期刊名称 other
  • 作者

    Chong Jin; Ruiying Li; Rui Kang;

  • 作者单位
  • 年(卷),期 -1(12),5
  • 年度 -1
  • 页码 e0177668
  • 总页数 26
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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