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Modelling of false alarms and intermittent faults and their impact on the maintenance cost of digital avionics

机译:虚假警报和间歇性故障的建模及其对数字航空电子维护成本的影响

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摘要

It is well known that false alarms (FAs) and intermittent faults are the main causes of unconfirmed failures in modern avionics. Indeed, the rate of FAs is quite high in the aviation industry, reaching a little less than 30% of all events related to the alarms. International aviation data suggest that the rate of unconfirmed failures (No Fault Found - NFF) for avionics systems range from 20 % to 50 %. The main reason for the NFF cases associated with avionics systems is the occurrence of intermittent faults in-flight. That is why the problem of assessing the impact of false alarms and unconfirmed failures on the lifecycle cost is extremely relevant for developers and operators of avionics systems. In this study, we develop a maintenance model of avionics systems subject to FAs and intermittent faults. The model considers the trustworthiness characteristics of continuous testing of the avionics line replaceable unit (LRU) by the built-in test equipment (BITE) and random occurrence of the permanent failures and intermittent faults in-flight. Based on the proposed model, the operating cost associated with the cost of repairing the dismantled LRUs is determined. A numerical example illustrates the peculiarities of the proposed approach to assessing the impact of FAs and intermittent faults on the maintenance cost of avionics systems.
机译:众所周知,虚假警报(FAS)和间歇性故障是现代航空电子中未经证实失败的主要原因。实际上,航空业的FAS率相当高,达到与警报相关的所有事件的30%。国际航空数据表明,航空电子系统的未经证实失败(无故障 - NFF)的速度范围为20%至50%。与航空航空电子系统相关的NFF病例的主要原因是飞行中间歇性故障的发生。这就是为什么评估虚假警报和未经证实失败对生命周期成本的影响的问题对航空电子系统的开发人员和运营商非常相关。在本研究中,我们开发了经过FAS和间歇性故障的航空电子系统的维护模型。该模型考虑了通过内置测试设备(咬合)和随机发生的常规故障和飞行中断故障的随机发生的航空电子线可更换单元(LRU)的可信度特性。基于所提出的模型,确定了与修复拆卸的LRU成本相关的运营成本。数值示例说明了评估FAS和间歇性故障对航空电子系统维护成本的提出方法的特性。

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