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Re-examination of electrical failure risk on satellite's power harnesses caused by space debris impacts: simultaneous measurements of sustained discharge and plasma density

机译:在空间碎片影响引起的卫星电源线束上的电气故障风险重新检查:同时测量持续放电和等离子体密度

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Impacts of space debris smaller than 1 mm can cause fatal damage to a satellite's power system through impact-induced, permanent sustained discharge (PSD). This study re-examines the risk of electrical failure on the bundle of satellite power harnesses using more realistic experimental configurations than in previous studies. In the two-stage light gas gun experiment, the simulated debris particles made of stainless steel (0.3 mm and 0.5 mm in diameter) were impacted at 4 km/s and 7 km/s on a three-layered harness specimen composed of hot and return lines. As a result, PSD did not occur in a typical satellite's power configuration in low Earth orbit. However, the power condition of 100 V/3.0 A was found to be a threshold for PSD. It was also suggested that a critical range of impact strength, which could control the distance between discharge electrodes, exists for PSD on the satellite power harnesses.
机译:小于1毫米的空间碎片的影响可能通过冲击引起的永久持续放电(PSD)对卫星电力系统造成致命损坏。本研究重新审视了使用比以前的研究更现实的实验配置的卫星电力线束束上的电气故障风险。在两级光气枪实验中,由不锈钢(直径0.3mm和0.5mm的模拟碎片颗粒受到4 km / s的影响,并在三层线束样本上由炎热的三层竖线标本施加7km / s。返回线条。结果,PSD在低地球轨道中典型的卫星电力配置中没有发生。但是,发现100V / 3.0 A的功率条件是PSD的阈值。还建议卫星电源线束上的PSD存在临界强度的临界范围,这可以控制放电电极之间的距离。

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