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首页> 外文期刊>Mathematical Problems in Engineering >Parameter Estimation of a Reliability Model of Demand-Caused and Standby-Related Failures of Safety Components Exposed to Degradation by Demand Stress and Ageing That Undergo Imperfect Maintenance
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Parameter Estimation of a Reliability Model of Demand-Caused and Standby-Related Failures of Safety Components Exposed to Degradation by Demand Stress and Ageing That Undergo Imperfect Maintenance

机译:因需求压力和不完善维护而老化的安全组件因需求而导致的和与之相关的故障的可靠性模型的参数估计

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摘要

One can find many reliability, availability, and maintainability (RAM) models proposed in the literature. However, such models become more complex day after day, as there is an attempt to capture equipment performance in a more realistic way, such as, explicitly addressing the effect of component ageing and degradation, surveillance activities, and corrective and preventive maintenance policies. Then, there is a need to fit the best model to real data by estimating the model parameters using an appropriate tool. This problem is not easy to solve in some cases since the number of parameters is large and the available data is scarce. This paper considers two main failure models commonly adopted to represent the probability of failure on demand (PFD) of safety equipment: (1) by demand-caused and (2) standby-related failures. It proposes a maximum likelihood estimation (MLE) approach for parameter estimation of a reliability model of demand-caused and standby-related failures of safety components exposed to degradation by demand stress and ageing that undergo imperfect maintenance. The case study considers real failure, test, and maintenance data for a typical motor-operated valve in a nuclear power plant. The results of the parameters estimation and the adoption of the best model are discussed.
机译:人们可以找到文献中提出的许多可靠性,可用性和可维护性(RAM)模型。但是,由于试图以更实际的方式捕获设备性能,例如明确解决组件老化和退化,监视活动以及纠正和预防性维护策略的影响,此类模型日趋复杂。然后,需要通过使用适当的工具估计模型参数来使最佳模型适合实际数据。在某些情况下,此问题不容易解决,因为参数数量很多且可用数据很少。本文考虑了两种通常用来代表安全设备按需故障概率(PFD)的主要故障模型:(1)由需求引起的故障和(2)与待机相关的故障。它提出了一种最大似然估计(MLE)方法,用于对因需求压力和老化而遭受不完善维护的安全组件因需求而引起的和与备用有关的安全组件的可靠性模型进行参数估计。该案例研究考虑了核电站中典型的电动阀的实际故障,测试和维护数据。讨论了参数估计的结果和最佳模型的采用。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第12期|7042453.1-7042453.11|共11页
  • 作者单位

    Univ Politecn Valencia, Dept Chem & Nucl Engn, Valencia, Spain;

    Univ Politecn Valencia, Dept Chem & Nucl Engn, Valencia, Spain;

    MEDASEGI, Valencia, Spain;

    Univ Alicante, Dept Math, Alicante, Spain;

    Univ Politecn Valencia, Dept Chem & Nucl Engn, Valencia, Spain;

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