飞机配电网电弧故障

Jonathan Andrea, M. Buffo, E. Guillard, R. Landfried, R. Boukadoum, P. Teste
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引用次数: 17

摘要

随着飞机电能需求的增加和配电网运行电压的升高,发生电弧故障的概率也随之增加。新的保护装置,如电弧故障检测器,现在被集成到网络中,以在电弧事件发生时切断电路。为了确定这些保护装置的最佳位置,对一个简化的配电网络进行了建模。该网络将电力分配给普通飞机负载。在之前的工作中提出的电路电弧模型,然后放置在网络的不同位置。对每种负载进行了正常电弧和电弧故障的模拟。最后,研究了对网络电流谱含量的修正,从而推导出网络中电弧故障保护的最佳位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arcing fault in aircraft distribution network
With the rising demand for electrical energy in an aircraft and the increase in operating voltages of the electrical distribution networks, the probability of occurrence of an arc fault is also increased. New protection devices such as arc fault detectors are now integrated in the network to break the circuit in case of an arcing event. To determine the optimum location of these protection devices, a simplified electrical distribution network is modelled. This network distributes power to common aircraft loads. An electric arc model for circuits as presented in a previous work is then placed at various locations in the network. Simulations of normal arcing and arcing faults are given for each load. Finally, the modification of the spectral content of the network currents is studied to deduce the optimum locations of arc fault protection in the network.
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