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Serial replacement maintenance philosophies and multiple-failure diagnostic strategies: a marriage of multiple-fault integrity and common cause sensibility

机译:串行替换维护理念和多故障诊断策略:多故障完整性和常见原因敏感性的结合

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This paper discusses several methodological considerations associated with the incorporation of serial replacement maintenance philosophies into multiple-failure diagnostic strategies. If the serial replacement of items within isolated ambiguity groups is prioritized using isolation probabilities instead of failure probabilities then the resultant diagnostics are capable of exhibiting both the empirical common sense often attributed to single-fault isolation and the integrity and consistency inherent to multiple-failure diagnostics. Isolation probabilities may also be used to calculate the fault resolution statistics upon which many assessments of testability and diagnostic effectiveness are based. If is important, however, that multiple isolations be simulated for each combination of failed components, both in order to prevent the statistics from being skewed toward primary isolations and to allow the group sizes recorded for serially replaced components to properly reflect the topology of the device or system being diagnosed. The simulation of multiple isolations for each failure combination is also essential for the generation of accurate false removal predictions. Statistics based upon the serial replacement of fault groups isolated by a multiple-failure diagnostic strategy can allow design-phase assessments to more accurately predict the performance of fielded diagnostics, thereby allowing timely measures to be taken to reduce the overall cost of ownership.
机译:本文讨论了与将串行替换维护理念纳入多故障诊断策略相关的几种方法学考虑。如果使用隔离概率而不是故障概率来优先处理隔离的模糊度组中的项目,则所得诊断程序既可以展现出通常归因于单故障隔离的经验常识,又可以展现出多故障诊断固有的完整性和一致性。隔离概率也可以用于计算故障解决统计数据,可测试性和诊断有效性的许多评估都基于该统计信息。但是,如果很重要,则为故障组件的每个组合模拟多个隔离,这既可以防止统计数据偏向于主要隔离,又可以使记录为串行替换的组件的组大小正确反映设备的拓扑或正在被诊断的系统。对每个故障组合的多个隔离进行仿真对于生成准确的误删除预测也至关重要。基于由多故障诊断策略隔离的故障组的串行替换的统计信息,可以使设计阶段评估可以更准确地预测现场诊断的性能,从而允许及时采取措施以降低总体拥有成本。

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