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Reliability evaluation of common-cause failures and other interdependencies in large reconfigurable networks.

机译:大型可重新配置网络中常见原因故障和其他相互依赖性的可靠性评估。

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摘要

This work covers the impact of Interdependencies and CCFs in large repairable networks with possibility of "re-configuration" after a fault and the consequent disconnection of the faulted equipment. Typical networks with these characteristics are the Utilities, e.g. Power Transmission and Distribution Systems, Telecommunication Systems, Gas and Water Utilities, Wi Fi networks. The main issues of the research are: (A) Identification of the specific interdependencies and CCFs in large repairable networks, and (B) Evaluation of their impact on the reliability parameters (load nodes availability, etc.).;The research has identified (1) The system and equipment failure modes that are relevant to interdependencies and CCF, and their subsequent effects, and (2) The hidden interdependencies and CCFs relevant to control, supervision and protection systems, and to the automatic change-over systems, that have no impact in normal operation, but that can cause relevant out-of-service when the above automatic systems are called to operate under and after fault conditions.;Additionally methods were introduced to include interdependencies and CCFs in the reliability and availability models. The results of the research include a new generalized approach to model the repairable networks for reliability analysis, including Interdependencies/CCFs as a main contributor. The method covers Generalized models for Nodes, Branches and Load nodes; Interdependencies and CCFs on Networks / Components; System Interdependencies/CCFs; Functional Interdependencies/CCFs; Simultaneous and non-simultaneous Interdependencies / CCFs. As an example detailed Interdependency/CCFs analysis and generalized model of an important network structure (a "RING" with load nodes) has been analyzed in detail.
机译:这项工作涵盖了大型可修复网络中相互依赖关系和CCF的影响,并可能在发生故障并因此导致故障设备断开连接后进行“重新配置”。具有这些特性的典型网络是实用工具,例如输配电系统,电信系统,煤气和水公用事业,Wi Fi网络。该研究的主要问题是:(A)识别大型可修复网络中的特定相互依赖关系和CCF,以及(B)评估它们对可靠性参数(负载节点可用性等)的影响。 1)与相互依存关系和CCF有关的系统和设备故障模式及其后续影响,以及(2)与控制,监督和保护系统以及与自动转换系统有关的隐藏的相互依存关系和CCF不会对正常运行产生任何影响,但是当上述自动系统在故障条件下或之后被调用时,可能导致相关的服务中断。;另外,引入了在可靠性和可用性模型中包括相互依赖关系和CCF的方法。研究结果包括一种新的通用方法,该模型为可修复网络建模以进行可靠性分析,其中包括相互依赖性/ CCF作为主要贡献者。该方法涵盖了节点,分支和负载节点的通用模型;网络/组件之间的相互依赖性和CCF;系统相互依赖性/ CCF;功能上的相互依存关系/ CCF;同时和非同时的相互依赖关系/ CCF。作为示例,详细分析了重要的网络结构(带有负载节点的“ RING”)的相互依赖性/ CCF分析和通用模型。

著录项

  • 作者

    Guenzi, Giancarlo.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Information Technology.;Engineering Electronics and Electrical.;Engineering Industrial.;Engineering General.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 287 p.
  • 总页数 287
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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