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How Tools and Process Improved Diagnostic and Prognostic Reaction Time

机译:工具和过程如何改善诊断和预后反应时间

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Modern aircraft, such as A380 or A350 for Airbus, are very well connected in flight to ground stations through wireless communications. For maintenance and operations purpose, the aircraft is programmed to send regularly information such as flight reports based on the BITE messages (Built-In Test Equipment) or standard reports based on the value of physical parameters. Moreover, Airbus is capable of sending requests (called uplinks) to the aircraft to retrieve the value of different parameters in almost real-time. This ability, associated with adequate process, improves significantly the reaction time of the diagnostic and prognostic solutions that Airbus can provide to its customers. Traditionally Health Monitoring is considered useful when the Potential to Functional failure (P-F) interval is greater than one flight cycle. This is due to the fact that it usually takes at least a flight cycle to collect and analyze data, and because on-board systems are responsible for managing failures that have an effect on current flight. But, in some circumstances, operational interruptions cannot be avoided by on-board systems and health monitoring solutions can be a useful mitigation mean as long as their reaction time is quick enough. In this paper is presented a case where an environmental corruption of sensors during aircraft Turn-Around Time (TAT) on ground can lead to an operational interruption before take-off. The consequences of this case are averted by the implementation of tools and process that allow a very quick reaction time. By collecting data just after engine start, analyzing them and informing the operator within 10 minutes, Airbus was able to avoid an operational interruption to occur during take-off rolling phase, reducing significantly its severity. This paper describes the study, the process setup and the performance of the solution implemented.
机译:现代飞机,如A380或A350空中客车,是很好的连接,通过无线通信飞行地面站。对于维护和运营目的,该机编程定时发送信息,如根据该BITE消息(内置测试设备)或基于物理参数的值标准报告飞行报告。此外,空中客车公司能够发送请求(称为上行链路)的飞机来检索几乎实时的不同参数的值。这种能力,并具有充足的关联,显著提高了诊断和预后的解决方案的反应时间是空中客车公司可以提供给客户。传统上,当挖潜功能衰竭(P-F)的时间间隔大于一个飞行循环更大的健康监测是有用的。这是由于这样的事实,它通常需要至少一个飞行循环收集和分析数据,而且由于机载系统是负责管理对当前的飞行效果的失败。但是,在某些情况下,运行中断无法通过车载系统和卫生监测解决方案避免可以成为一个有用的缓解平均只要他们的反应时间是足够快。本文提出了在那里的飞机周转时间(TAT)在地面上时传感器的环境破坏可能导致起飞前的工作中断的情况。这种情况的后果是由工具和流程,使一个非常快速的反应时间实施避免。由刚启动引擎后收集数据,对它们进行分析并在10分钟内时通知驾驶员,空中客车能够避免在起飞轧制阶段发生的动作的中断,显著降低其严重程度。本文介绍了研究过程中建立和实施解决方案的性能。

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