首页> 外文会议>Hypervelocity Impact Symposium >Investigation on Sustained Discharge of Satellite's Power Harness Due to Plasma from Space Debris Impact
【24h】

Investigation on Sustained Discharge of Satellite's Power Harness Due to Plasma from Space Debris Impact

机译:从空间碎片影响的血浆持续放电持续排放卫星电力线束

获取原文

摘要

Space debris travels at a velocity of 7-8 km/s in low Earth orbit (LEO) and at 3 km/s in geostationary Earth orbit (GEO). An impact between space debris and spacecraft will result in tremendous damage. In particular, particles less than lmm in diameter pose a risk of causing permanent sustained discharge (PSD). PSD may affect a satellite's power system. The effect on solar arrays has been well-studied given their large area, but the effect on the bundle of a satellite's wire harness (called the power harness) has yet to be clarified, even though the power harness is usually exposed to the space environment without protection. We conducted hypervelocity impact experiments using a two-stage light gas gun, and investigated the risk resulting in PSD from hypervelocity impacts of particles less than lmm in size. In addition, we compared two kinds of circuit configurations: a more realistic circuit configuration with internal resistance and a circuit configuration without it, so as to investigate whether internal resistance affects the occurrence of PSD. Stainless steel and aluminum oxide projectiles measuring from 0.3 to 1 mm in diameter were gun-accelerated up to 7.16 km/s. Targets entailed a three-layered power harness under a simulated power condition of typical satellites operating in LEO or GEO. As a result, 11 of 28 shots resulted in PSD With the more realistic circuit configuration we could not confirm any results regarding PSD. We thus found that PSD is less likely to occur in a more realistic circuit configuration.
机译:空间碎片在低地球轨道(Leo)的速度为7-8公里/秒,在地球地球地球地球轨道(地理学)的3公里处。空间碎片和航天器之间的影响将导致巨大的损坏。特别地,小于LMM的颗粒直径造成导致永久持续放电(PSD)的风险。 PSD可能会影响卫星电力系统。鉴于其大面积,对太阳阵列的影响得到了很好的研究,但是尚未阐明对卫星线束束(称为电源线束)的影响,即使电源线束通常暴露在空间环境中没有保护。我们使用两级轻气枪进行超细兴奋的影响实验,并调查了从小于LMM的粒子的超高度影响的PSD导致PSD的风险。此外,我们比较了两种电路配置:具有内部电阻和电路配置的更现实的电路配置,但是研究内部电阻是否会影响PSD的发生。直径0.3至1mm的不锈钢和铝氧化铝炮弹射击高达7.16公里/秒。目标在Leo或Geo中运行的典型卫星的模拟电源条件下需要三层电源线束。结果,具有更现实的电路配置的PSD中的11个中的11个,我们无法确认有关PSD的任何结果。因此,我们发现PSD不太可能发生在更现实的电路配置中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号