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AIRCRAFT FUEL SYSTEM DIAGNOSTICS USING DIGRAPHS

机译:飞机燃料系统使用正面诊断

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Faults within any system will decrease its functionality, with the worst case scenario being complete system failure. When faults do occur it is imperative they can be diagnosed and ultimately rectified as quickly as possible, minimising the effects of such a failure. In the case of a commercial aircraft system efficient diagnosis can optimise the time to return the aircraft to service, thus allowing less disruption to passenger travel. For a military air vehicle diagnosis of the status of the system can mean that missions can be altered or aborted given the faults detected. With the increasing complexity of modern day systems, designed for reliability, it is usually several items that are required to fail before catastrophic or complete system failure is experienced, thus diagnosis of multiple faults is important. In addition, for the most effective diagnosis, detection needs to happen in real time. A method of finding faults or combinations of faults as they occur is the subject of this paper. The approach uses sensor readings to assess the state of the system. The method of digraphs is used to diagnose the faults by considering deviations in the sensor readings from the expected system state. Digraphs allow a means to represent the propagation of inputs through a system, reflecting the relationships and interactions between the components. The primary research has shown the applicability of using the digraph based approach for fault diagnosis on a simulated test stand of an aircraft fuel system. The analysis has assumed steady state conditions although guidelines have been provided for use for dynamic behaviour. The technique has shown potential for extension for diagnosis to the real aircraft fuel system.
机译:任何系统中的故障都会降低其功能,最坏情况是完整的系统故障。当发生故障确实发生时,必须尽可能快地诊断和最终整理,最大限度地减少这种失败的影响。在商用飞机系统的情况下,有效的诊断可以优化将飞机退回服务的时间,从而允许乘客旅行的干扰较少。对于军用航空公司的诊断,系统地位可能意味着如果检测到的故障,可以改变或中止任务。随着现代系统的复杂性越来越多,设计用于可靠性,通常在灾难性或完整的系统故障之前失效的几个项目通常需要失效,因此对多个故障的诊断很重要。此外,对于最有效的诊断,检测需要实时发生。在发生故障或发生故障组合的方法是本文的主题。该方法使用传感器读数来评估系统的状态。数字的方法用于通过考虑来自预期系统状态的传感器读数的偏差来诊断故障。数字允许一种方法来代表输入的传播通过系统,反映了组件之间的关系和相互作用。初级研究表明,使用基于数字的方法对飞机燃料系统的模拟试验台进行故障诊断的适用性。分析已经假设稳定状态条件,尽管已经提供了用于动态行为的指导。该技术显示了延长诊断对真正的飞机燃料系统的潜力。

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