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Aircraft electric system intermittent arc fault detection and location

机译:飞机电气系统间歇性电弧故障检测与定位

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摘要

Intermittent arc faults appear in aircraft power systems in unpredictable ways when the degraded wires are wet, vibrating against metal structures, or under mechanical stresses. They could evolve into serious faults that may cause onboard fires, power interruptions, system damage and catastrophic incidents, and thus have raised concern. Recent trends in solid state power controllers (SSPCs) motivated the development of nondestructive diagnostic methods for health monitoring of aircraft wiring. In this paper, the ABCD matrix (or transmission matrix) modeling method is introduced to derive normal and faulty load circuit models with better accuracy and reduced complexity compared to the differential equation approach, and an intermittent arc fault detection method is proposed based on temporary deviations of load circuit model coefficients and wiring parameters. Furthermore, based on the faulty wiring model, a genetic algorithm is proposed to estimate the fault-related wiring parameters such as intermittent arc location and average intermittent arc resistance. The proposed method can be applied to both the alternating current power distribution system (PDS) and the direct current (DC) PDS. Experiments using a DC power source have been conducted, and the experimental results have demonstrated effectiveness of the proposed method.
机译:当退化的电线弄湿,与金属结构振动或受到机械应力时,间歇性电弧故障会以无法预测的方式出现在飞机动力系统中。它们可能演变成严重的故障,可能导致机载火灾,电源中断,系统损坏和灾难性事件,因此引起了人们的关注。固态功率控制器(SSPC)的最新趋势推动了用于飞机布线健康监测的无损诊断方法的发展。本文介绍了一种ABCD矩阵(或传输矩阵)建模方法,与微分方程方法相比,该方法可以得到精度更高,复杂度更低的正常和故障负载电路模型,并提出了一种基于临时偏差的间歇性电弧故障检测方法。负载电路模型系数和接线参数。此外,基于故障布线模型,提出了一种遗传算法来估计与故障相关的布线参数,例如间歇电弧位置和平均间歇电弧电阻。所提出的方法可以同时应用于交流配电系统(PDS)和直流(DC)PDS。进行了使用直流电源的实验,实验结果证明了该方法的有效性。

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