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Confidence interval procedures for system reliability and applications to competing risks models

机译:系统可靠性的置信区间规程以及在竞争风险模型中的应用

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System reliability depends on the reliability of the system's components and the structure of the system. For example, in a competing risks model, the system fails when the weakest component fails. The reliability function and the quantile function of a complicated system are two important metrics for characterizing the system's reliability. When there are data available at the component level, the system reliability can be estimated by using the component level information. Confidence intervals (CIs) are needed to quantify the statistical uncertainty in the estimation. Obtaining system reliability CI procedures with good properties is not straightforward, especially when the system structure is complicated. In this paper, we develop a general procedure for constructing a CI for the system failure-time quantile function by using the implicit delta method. We also develop general procedures for constructing a CI for the cumulative distribution function (cdf) of the system. We show that the recommended procedures are asymptotically valid and have good statistical properties. We conduct simulations to study the finite-sample coverage properties of the proposed procedures and compare them with existing procedures. We apply the proposed procedures to three applications; two applications in competing risks models and an application with a fc-out-of-s system. The paper concludes with some discussion and an outline of areas for future research.
机译:系统可靠性取决于系统组件和系统结构的可靠性。例如,在竞争风险模型中,当最弱的组件发生故障时,系统就会发生故障。复杂系统的可靠性函数和分位数函数是表征系统可靠性的两个重要指标。当在组件级别有可用数据时,可以通过使用组件级别信息来估计系统可靠性。需要置信区间(CI)来量化估计中的统计不确定性。获得具有良好属性的CI可靠性过程并非易事,特别是当系统结构复杂时。在本文中,我们开发了一种使用隐式增量法构造系统故障时分位数功能的配置项的通用程序。我们还开发了用于为系统的累积分布函数(cdf)构造CI的通用程序。我们表明,所推荐的过程是渐近有效的,并且具有良好的统计特性。我们进行模拟以研究拟议程序的有限样本覆盖率特性,并将其与现有程序进行比较。我们将建议的程序应用于三个应用程序;竞争风险模型中的两个应用程序以及具有fc-of-s系统的应用程序。本文结束时进行了一些讨论并概述了未来的研究领域。

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