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Bayesian Confidence Limits for the Reliability of Mixed Cascade and Parallel Independent Exponential Subsystems

机译:级联和并行独立指数子系统的可靠性的贝叶斯置信极限

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This paper deals with the theoretical problem of derving Bayesian confidence intervals for the reliability of a system consisting of both cascade and parallel subsystems where each subsystem is independent and has an exponential failure probability density function (pdf). This approach is applicable when test data are available for each individual subsystem and not for the enfire system. The Mellin integral transform is used to analyze the system in a step-by-step procedure until the posterior pdf of the system reliability is obtained. The posterior cumulative distribution function is then obtained in the usual manner by integrating the pdf, which serves the dual purpose of yielding system reliability confidence limits while at the same time providing a check on the accuracy of the derived pdf. A computer program has been written in FORTRAN IV to evaluate the confidence limits. An example is presented which uses the computer program.
机译:本文针对由级联和并行子系统组成的系统的可靠性,推导贝叶斯置信区间的理论问题,其中每个子系统都是独立的,并且具有指数故障概率密度函数(pdf)。当测试数据可用于每个单独的子系统而不适用于enfire系统时,此方法适用。梅林积分变换用于逐步分析系统,直到获得系统可靠性的后pdf。然后,通过集成pdf以通常的方式获得后累积分布函数,该函数具有产生系统可靠性置信极限的双重目的,同时提供了对派生pdf准确性的检查。用FORTRAN IV编写了一个计算机程序来评估置信度限制。给出了使用计算机程序的示例。

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