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Probability of failure per flight computations for aircraft systems

机译:飞机系统每次飞行失败的概率

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Aircraft systems are usually designed with highly reliable components by employing fault-tolerant architectures and redundancy management techniques. To further enhance the reliability and safety of aircraft, the components of these systems are checked or repaired at the end of periodic intervals of time, called maintenance check intervals. Depending on the criticality and functionality of the components, some are inspected prior to each flight, and others are inspected at different check intervals that coincide with airline scheduled maintenance. In addition, some components are monitored continuously using online automatic monitoring devices. Due to imperfect monitoring and maintenance check intervals that span multiple flights, failure of some redundant components cannot be identified immediately. Hence, a functional system can have latent failures in its redundant components. The probability of failure in such cases varies from flight to flight due to the different exposure times for the system components. This leads to an “average probability of failure per flight or flight hour” concept. This paper proposes a computationally efficient method for evaluating the average probability of failure per flight for aircraft systems considering generic system configurations, maintenance check intervals, backup units and latent failures, monitoring systems, and flight duration.
机译:飞机系统通常采用容错架构和冗余管理技术来设计具有高度可靠的组件。为了进一步提高飞机的可靠性和安全性,这些系统的组件会在称为维护检查间隔的定期时间间隔结束时进行检查或维修。根据组件的关键性和功能性,一些组件会在每次飞行之前进行检查,而其他组件则会在与航空公司定期维护相符的不同检查间隔内进行检查。此外,使用在线自动监视设备连续监视某些组件。由于跨越多个飞行的监视和维护检查间隔不完善,因此无法立即识别出某些冗余组件的故障。因此,功能系统的冗余组件可能会出现潜在故障。在这种情况下,由于系统组件的暴露时间不同,因此故障的机率因飞行而异。这导致了“每次飞行或飞行小时的平均故障概率”概念。本文提出了一种计算有效的方法,用于评估飞机系统每次飞行的平均失败概率,其中要考虑通用系统配置,维护检查间隔,备用单位和潜在故障,监视系统以及飞行时间。

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