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The impact of protection system failures on power system reliability evaluation.

机译:保护系统故障对电力系统可靠性评估的影响。

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摘要

The reliability of protection systems has emerged as an important topic because protection failures have critical influence on the reliability of power systems. The goal of this research is to develop novel approaches for modeling and analysis of the impact of protection system failures on power system reliability.;It is shown that repairable and non-repairable assumptions make a remarkable difference in reliability modeling. A typical all-digital protection system architecture is modeled and numerically analyzed. If an all-digital protection system is indeed repairable but is modeled in a non-repairable manner for analysis, the calculated values of reliability indices could be grossly pessimistic.;The smart grid is emerging with the penetration of information-age technologies and the development of the Special Protection System (SPS) will be greatly influenced. A conceptual all-digital SPS architecture is proposed for the future smart grid. Calculation of important reliability indices by the network reduction method and the Markov modeling method is illustrated in detail.;Two different Markov models are proposed for reliability evaluation of the 2-outof- 3 voting gates structure in a generation rejection scheme. If the model with consideration of both detectable and undetectable logic gate failures is used as a benchmark, the simple model which only considers detectable failures will significantly overestimate the reliability of the 2-out-of-3 voting gates structure.;The two types of protection failures, undesired-tripping mode and fail-to-operate mode are discussed. A complete Markov model for current-carrying components is established and its simplified form is then derived. The simplified model can appropriately describe the overall reliability situation of individual components under the circumstances of complex interactions between components due to protection failures.;New concepts of the self-down state and the induced-down state are introduced and utilized to build up the composite unit model. Finally, a two-layer Markov model for power systems with protection failures is proposed. It can quantify the impact of protection failures on power system reliability. Using the developed methodology, we can see that the assumption of perfectly reliable protection can introduce errors in reliability evaluation of power systems.
机译:保护系统的可靠性已成为一个重要的话题,因为保护故障对电力系统的可靠性具有至关重要的影响。这项研究的目的是开发一种新的建模方法,用于建模和分析保护系统故障对电力系统可靠性的影响。研究表明,可修复和不可修复的假设在可靠性建模方面具有显着差异。对典型的全数字保护系统架构进行了建模和数值分析。如果全数字保护系统确实是可修复的,但以不可修复的方式进行建模以进行分析,则可靠性指标的计算值可能会非常悲观。;随着信息时代技术的渗透和发展,智能电网正在兴起特殊保护系统(SPS)的功能将受到很大影响。针对未来的智能电网,提出了概念性的全数字SPS体系结构。详细说明了通过网络约简法和马尔可夫模型法计算重要可靠性指标的方法。提出了两种不同的马尔可夫模型,用于发电拒绝方案中2选3投票门结构的可靠性评估。如果将同时考虑到可检测和不可检测逻辑门故障的模型用作基准,那么仅考虑可检测故障的简单模型将大大高估2选3投票门结构的可靠性。讨论了保护失败,意外跳闸模式和操作失败模式。建立了载流元件的完整马尔可夫模型,然后推导了其简化形式。该简化模型可以恰当地描述由于保护失效而在组件之间复杂交互的情况下单个组件的整体可靠性情况。;引入了自降状态和感应降状态的新概念,并利用它们来构建复合材料单位模型。最后,提出了具有保护故障的电力系统的两层马尔可夫模型。它可以量化保护故障对电力系统可靠性的影响。使用发达的方法,我们可以看到完全可靠保护的假设会在电力系统的可靠性评估中引入错误。

著录项

  • 作者

    Jiang, Kai.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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