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MEASURING THE EFFECTIVENESS OF RELIABILITY GROWTH TESTING

机译:衡量可靠性增长测试的有效性

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Assessing the effectiveness of reliability growth testing allows decisions to be made about the management of the program; for example, decisions to allocate resources in an attempt to realize improvements in system reliability, or decisions to terminate testing when there is evidence that reliability has matured. However, such assessments are commonly based on measures of change in the average time between failures, which do not always provide informative measures of effectiveness. We argue that a more appropriate approach is to focus on the identification and realization of faults, which if removed are likely to lead to the improvement in system reliability. Therefore we introduce a model that incorporates the concerns of engineering experts about the likely faults in the initial system design with the information about faults that are realized on test. This model distinguishes between the processes of detecting and removing faults and so captures the effectiveness of test as well as the development of the system design. Using this model, the likely number of faults remaining in the system and the additional test time required to realize them can be estimated. This model was motivated by and assessed by engineers conducting growth tests for complex electronic systems. They consider our measures useful for supporting assessment of test effectiveness.
机译:评估可靠性增长测试的有效性可以做出有关程序管理的决策;例如,为了实现系统可靠性的改进而做出的分配资源的决定,或者在有证据表明可靠性已经成熟时终止测试的决定。但是,此类评估通常基于故障之间平均时间变化的度量,这些度量并不总是提供有效的信息量。我们认为,更合适的方法是着重于故障的识别和实现,如果将其消除,则很可能导致系统可靠性的提高。因此,我们引入了一个模型,该模型结合了工程专家对初始系统设计中可能出现的故障的关注,以及有关在测试中实现的故障的信息。该模型区分了检测和消除故障的过程,因此捕获了测试的有效性以及系统设计的发展。使用此模型,可以估计系统中可能残留的故障数量以及实现这些故障所需的额外测试时间。该模型由进行复杂电子系统增长测试的工程师激励和评估。他们认为我们的措施有助于支持对测试有效性的评估。

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