首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability >Aircraft fuel rig system fault diagnostics based on the application of digraphs
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Aircraft fuel rig system fault diagnostics based on the application of digraphs

机译:基于有向图的应用的飞机燃油钻机系统故障诊断

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The issue of fault diagnostics is a dominant factor concerning current engineering systems. Information regarding possible failures is required in order to minimize disruption caused to functionality. A method proposed in this paper utilizes digraphs to model the information flow within an application system. Digraphs are composed from a set of nodes representing system process variables or component failure modes. The nodes are connected by signed edges thus illustrating the influence, be it positive or negative, one node has on another. System fault diagnostics is conducted through a procedure of back-tracing in the digraph from a known deviating variable. A computational method has been developed to conduct this process. Comparisons are made between retrieved transmitter readings and those expected while the system is in a known operating mode. Any noted deviations are assumed to indicate the presence of a failure. The current paper looks in detail at the application of the digraph diagnostic method to an industrially based test stand of an aircraft fuel system. This research includes transient system effects; the rate of change of a parameter is taken into consideration as a means of monitoring the system dynamically. The validity of the results achieved, through performing fault diagnostics based on the use of a digraph model, is evaluated. Finally, the effectiveness and scalability issues associated with the application of the method are addressed.
机译:故障诊断问题是当前工程系统的主要因素。需要有关可能的故障的信息,以最大程度地减少对功能造成的破坏。本文提出的一种方法利用图来对应用系统中的信息流进行建模。有向图由代表系统过程变量或组件故障模式的一组节点组成。节点通过带符号的边缘连接,从而说明一个节点对另一个节点的影响,无论是正面的还是负面的。系统故障诊断是通过从已知偏差变量对图进行回溯的过程进行的。已经开发出一种计算方法来进行该过程。在检索到的变送器读数与系统处于已知操作模式时预期的读数之间进行比较。假定任何明显的偏差都表明存在故障。本论文详细研究了有向图诊断方法在飞机燃油系统的工业试验台上的应用。这项研究包括瞬态系统效应。可以将参数的变化率作为动态监视系统的一种方式。通过使用有向图模型进行故障诊断,评估所获得结果的有效性。最后,解决了与该方法的应用相关的有效性和可扩展性问题。

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