首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >A ternary decision diagram method to calculate the component contributions to the failure of systems undergoing phased missions
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A ternary decision diagram method to calculate the component contributions to the failure of systems undergoing phased missions

机译:一种三元决策图方法,用于计算分阶段执行任务的系统对组件故障的影响

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摘要

The way that many systems are utilized can be expressed in terms of missions which are split into a sequence of contiguous phases. Mission success is only achieved if each of the phases is successful, and each phase is required to achieve a different objective and use different elements of the system. The reliability analysis of a phased mission system will produce the probability of failure during each of the phases, together with the overall mission failure likelihood. In the event that the system performance does not meet with the acceptance requirement, weaknesses in the design are identified and improvements made to rectify the deficiencies. In conventional system assessments, importance measures can be predicted which provide a numerical indicator of the significance of the role that each component plays in the system failure. Through the development of appropriate importance measures, this paper provides ways of identifying the contribution made by each component failure to each phase failure and the overall mission failure. In addition, a means is given to update the system performance prediction as phases of the mission are successfully completed. The causes of phase failure are expressed as fault trees. The binary decision diagram (BDD) concept is extended to produce ternary decision diagrams (TDDs) to facilitate fast calculation of the importance measures.
机译:利用许多系统的方式可以按照被划分为一系列连续阶段的任务来表达。只有每个阶段都成功,并且每个阶段都需要达到不同的目标并使用系统的不同元素,才能成功完成任务。分阶段任务系统的可靠性分析将产生每个阶段失败的可能性,以及整个任务失败的可能性。如果系统性能不能满足验收要求,则可以确定设计中的弱点,并进行改进以纠正缺陷。在常规的系统评估中,可以预测重要程度,这些重要程度将提供一个数字指标,说明每个组件在系统故障中所起的作用的重要性。通过制定适当的重要措施,本文提供了识别每个组件故障对每个阶段故障和整个任务故障的贡献的方法。另外,在成功完成任务阶段时,将提供一种更新系统性能预测的方法。相故障的原因表示为故障树。扩展了二进制决策图(BDD)概念,以生成三元决策图(TDD),以便于快速计算重要度。

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