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Modeling Reliability Growth in the Product Design Process

机译:建模产品设计过程中的可靠性增长

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Relying on reliability growth testing to improve system design is not always cost effective and certainly not efficient. Instead, it is important to design in reliability. This requires models to estimate reliability growth in the design and to assess whether goal reliability will be achieved within the target timescale. While many models have been developed for analysis of reliability growth in test, there has been less attention given to reliability growth in design. This paper proposes and compares two models - one motivated by the practical engineering process (the Modified Power Law) and the other by extending the reasoning of statistical reliability growth modeling (the Modified IBM). The commonalities and differences between these models are explored through an assessment of their logic and an application. We conclude that the choice of model depends on the growth process being modeled. Key drivers are the type of system design and the project management of the growth process. When the design activities are well understood and project workloads can be managed evenly, leading to predictable and equally spaced modifications each of which having a similar effect on the reliability of the item, then the Modified Power Law is a more appropriate model. On the other hand, the Modified IBM is more appropriate for more uncertain situations, where the reliability improvement of a design is driven by the removal of faults, which are yet unknown and only through further investigation of the design will these be identified. These situations have less predictable workloads and fewer modifications are likely later on in the project.
机译:依托可靠性增长试验,以提高系统的设计并不总是符合成本效益,肯定没有效率。相反,在可靠性设计是非常重要的。这需要模型来评估可靠性增长的设计和评估是否目标可靠性将目标时间表内实现。虽然许多模型已经在测试的可靠性增长分析的发展,出现了给设计可靠性增长较少关注。本文提出并比较了两种机型 - 通过扩展统计可靠性增长模型(修正IBM)的推理一个以实际工程过程(修改过的功率法)动机和其他。的共性和这些模型之间的差异,通过他们的逻辑和应用的评估研究。我们的结论是模式的选择取决于生长过程建模。关键驱动因素是系统设计的类型和生长过程的项目管理。当设计活动是很好理解的和项目的工作负载能够均匀进行管理,从而导致其中的每一个具有关于该项目的可靠性类似的效果可预见的和等距间隔的修改,则修改的功率法是一种更合适的模型。在另一方面,修改后的IBM更适合于其中一个设计的可靠性提高是通过排除故障,这是未知的,只有通过设计的进一步研究将这些被识别的驱动更加不明朗的情况下,。这些情况都较难预测的工作负载和较少的修改有可能在稍后的项目。

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