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Using Reliability to Meet Z540.3's 2 Rule

机译:使用可靠性满足Z540.3的2%规则

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NASA's Kennedy Space Center (KSC) undertook implementation of ANSI/NCSL Z540.3-2006 in October 2008. Early in the implementation, KSC identified that the largest cost driver of Z540.3 implementation is measurement uncertainty analyses for legacy calibration processes. NASA, like other organizations, has a significant inventory of measuring and test equipment (MTE) that have documented calibration procedures without documented measurement uncertainties. This paper provides background information to support the rationale for using high in-tolerance reliability as evidence of compliance to the 2% PFA quality metric of ANSI/NCSL Z540.3-2006 allowing use of qualifying legacy processes. NASA is adopting this as policy and is recommending NCSL International consider this as a method of compliance to Z540.3. Topics covered include compliance issues, using EOPR to estimate test point uncertainty, reliability data influences within the PFA model, the validity of EOPR data, and an appendix covering "observed" versus "true" EOPR.
机译:美国宇航局的肯尼迪航天中心(KSC)于2008年10月开展了ANSI / NCSL Z540.3-2006的实施。在执行情况下,KSC确定了Z540.3实施的最大成本驱动因素是遗留校准过程的测量不确定性分析。与其他组织一样,美国宇航局具有显着的测量和测试设备(MTE)的库存,这些测量和测试设备(MTE)已经记录了校准程序,而无需记录测量不确定因素。本文提供了背景信息,以支持使用高耐受性的理由作为符合ANSI / NCSL Z540.3-2006的2%PFA质量指标的证据,允许使用合格的遗留过程。美国宇航局正在采用这一政策,推荐NCSL International认为这是一种符合Z540.3的方法。涵盖的主题包括合规性问题,使用EOPR来估计测试点不确定性,PFA模型内的可靠性数据影响,EOPR数据的有效性以及“观察到”与“真实”EOPL的附录。

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