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Spectroscopic Measurement of Secondary Arc Plasma on Solar Array

机译:太阳电池阵列上二次电弧等离子体的光谱测量

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摘要

As the power level of Geostationary satellites increases, discharge phenomena on solar array are becoming serious threat to safe operation. Arcs on solar array can short-circuit the satellite circuit, decrease the satellite power, and then cause the satellite permanent failure. To prevent the failure caused by charging and arcing, it is necessary to investigate the mechanism of satellite charging and arcing phenomenon. The purpose of this paper is to investigate the occurrence condition of a secondary arc by measuring arc plasma characteristics in ground test. We measured the arc plasma temperature and identified the materials emitted using spectrometer at arbitrary time during arc occurring. We investigated the difference of secondary arcs occurrence condition during secondary arcs. From the spectroscopic measurement results, we found that it was necessary for shifting to the secondary arc that the metallic vapor same as the cathode material was emitted. In case of primary arc (PA) dimension changes, the probability of secondary arc and TSA occurrence became high. And plasma temperature was not affected by PA dimension, however the metallic vapor emission of silver was greatly affected. Thus, secondary arc occurrence greatly depends on metallic vapor emission from cathode.
机译:随着对地静止卫星功率水平的提高,太阳能电池阵列上的放电现象正在严重威胁安全运行。太阳能电池板上的电弧可能会使卫星电路短路,降低卫星功率,然后导致卫星永久性故障。为了防止由充电和电弧引起的故障,有必要研究卫星充电和电弧现象的机理。本文的目的是通过在地面测试中测量电弧等离子体特性来研究次级电弧的发生条件。我们测量了电弧等离子体的温度,并在发生电弧期间的任意时间使用光谱仪确定了所散发的材料。我们研究了次级电弧期间次级电弧发生条件的差异。从光谱测量结果,我们发现有必要向第二电弧转移,发射与阴极材料相同的金属蒸气。在一次电弧(PA)尺寸发生变化的情况下,二次电弧和TSA发生的可能性变高。等离子体温度不受PA尺寸的影响,但是银的金属蒸气排放受到很大影响。因此,二次电弧的发生在很大程度上取决于从阴极发出的金属蒸气。

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