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An Innovative Method to Hypothesis Testing for System Safety Assessment

机译:一种创新的系统安全评估假设检测方法

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The way forward in systems safety engineering will be quantitative, and this paper proposes an innovative method to generate a uniform way to understand the composite of testing and experience. In recent years, new approaches to exact hypothesis testing have been developed without a Gaussian probability distribution for success or failure rates. These techniques eliminate errors introduced by the Gaussian assumption, which is important for the small failure rates that are common in modern systems development, and offer considerable promise as a basis for the new direction. The paper presents the theory for exact hypothesis testing and combines two 18th century theorems to derive an equation for the probability distribution of failure rate employing only the number of tests and the observed count of failures. The concept is expanded to demonstrate the combination of operational experience and expert opinion to update test results. The objective in this work is to derive the general likelihood distribution of failure rate given any set of test results, and then examine the implications regarding testing requirements, design, and interpretation. The particular application considered here is safety assessment for a military weapons system. While the theory developed is for deriving the exact failure rate distribution for system safety applications, it is equally valid for investigating success rates and/or for interpreting performance evaluation tests.
机译:系统安全工程中的前进方式将是定量的,本文提出了一种创新方法,为了解测试和经验的综合来源。近年来,已经开发了新的确切假设检测的方法,而没有高斯概率分布的成功或失败利率。这些技术消除了高斯假设引入的错误,这对于现代系统开发中常见的小故障率很重要,并为新方向提供相当大的承诺。本文介绍了确切假设检测的理论,并结合了两个18世纪的定理来推导出失败率的概率分布的等式,仅采用测试数量和观察到的故障计数。该概念扩展以展示操作经验和专家意见的组合,以更新测试结果。这项工作的目标是导出失败率的一般似然分布给出任何一组测试结果,然后检查关于测试要求,设计和解释的影响。这里考虑的特定申请是军事武器系统的安全评估。虽然该理论用于导出系统安全应用的确切失败率分布,但它同样适用于调查成功率和/或解释性能评估测试。

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