Aviation BIT optimal method for reducing false alarm rate under gust environment

Y. Quo, Jiaqi Zhang, Qingdong Li, Sha Liu, Wangxu Chai
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Abstract

High false alarm rate is the major restrictive factors for the aviation built-in test (BIT) application in aircraft. This paper analyzes the environmental influence on the aviation BIT, and addresses that gust is the one of the principal reasons leading to false alarm from aviation BIT. Under the gust environment, the aero relative speed will be changed which changes the angle of incidence and lift force simultaneously. It inevitably makes the aviation BIT diagnosis data change and maybe cause false alarm in aviation BIT in some special situations. We gather the sample data influencing the BIT accuracy via the simulation experiment or actual test, and establish a decision network for the aviation BIT to confirm the influence degree under gust environment, which can comprehensively consider the change of various elements in the residual vector to distinguish the influence degree between the gust and real fault in the aircraft. This way, based on the original BIT diagnosis results and the output results of the decision network, the false alarm rate of aviation BIT can be effectively improved with weighting processing. The Monte Carlo simulation result shows the proposed aviation BIT optimal method is a good approach because it reduces the false alarm rate of aviation BIT under gust environment, and further improve the BIT diagnostic ability. The method will be useful in actual application.
阵风环境下降低航空BIT虚警率的优化方法
高虚警率是制约航空内置测试(BIT)在飞机上应用的主要因素。分析了环境因素对航空BIT的影响,指出阵风是导致航空BIT虚警的主要原因之一。在阵风环境下,空气相对速度会发生变化,从而同时改变入射角和升力。它不可避免地使航空BIT的诊断数据发生变化,在某些特殊情况下可能造成航空BIT的虚警。通过仿真实验或实际测试采集影响BIT精度的样本数据,建立航空BIT决策网络,确定阵风环境下的影响程度,综合考虑残差向量中各元素的变化,区分飞机阵风与实际故障的影响程度。这样,在原始BIT诊断结果和决策网络输出结果的基础上,通过加权处理可以有效地提高航空BIT的虚警率。蒙特卡罗仿真结果表明,所提出的航空BIT优化方法降低了阵风环境下航空BIT的虚警率,进一步提高了BIT的诊断能力,是一种很好的方法。该方法在实际应用中具有一定的实用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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