航天器雷电复测标准改进研究

Alex Terseck, D. Trout
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引用次数: 2

摘要

航天器通常通过发射运载工具和地面结构来保护其免受直接打击,但评估附近打击影响的协议并不一致。航天器通常依靠运载火箭的限制来触发重新测试,但是运载火箭通常可以在几分钟内评估一次打击的影响,而航天器的评估时间可能是几小时甚至几天。肯尼迪航天中心是美国闪电活动最频繁的地方之一,对于发射来说,这种与评估相关的延迟可能会导致完全错过发射窗口,代价高昂。本文评估了来自当地闪电测量系统和计算机模拟的可用数据,以预测各种附近打击对典型有效载荷脐带缆的耦合效应。提供了减少典型触发标准和代价高昂的延迟的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on improvements in lightning retest criteria for spacecraft
Spacecraft are generally protected from a direct strike by launch the vehicle and ground structures, but protocols to evaluate the impact of nearby strikes are not consistent. Often spacecraft rely on the launch vehicle constraints to trigger a retest, but launch vehicles can typically evaluate the impact of a strike within minutes while spacecraft evaluation times can be on the order of hours or even days. For launches at the Kennedy Space Center where lightning activity is among the highest in the United States, this evaluation related delay could be costly with the possibility of missing the launch window altogether. This paper evaluated available data from local lightning measurements systems and computer simulations to predict the coupled effect from various nearby strikes onto a typical payload umbilical. Recommendations are provided to reduce the typical trigger criteria and costly delays.
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