期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
低轨大规模星座对空间碎片环境的影响及其应对措施
1
作者 CHEN Chuan YANG Wulin +2 位作者 GONG Zizheng ZHANG Pinliang LI Ming 《Aerospace China》 2020年第2期16-22,共7页
Large constellations have developed rapidly in recent years because of their unique advantages, but they will inevitably have a major negative impact on the space debris environment, leading to its deterioration. The ... Large constellations have developed rapidly in recent years because of their unique advantages, but they will inevitably have a major negative impact on the space debris environment, leading to its deterioration. The key to mitigate the impact is the success rate and duration of the post-mission disposal(PMD) process. Aiming at solving this problem, this paper further studies the impact of large constellations on other space assets under different PMD strategies through simulation, and proposes corresponding strategies and suggestions for mitigation.According to One Web’s large constellation launch plan, the dangerous intersection of the large constellation with existing space assets at different stages of the constellations life cycle is calculated by simulation. Based on this, the influence of the large constellation operation on existing space assets at different times and strategies of PMD is analyzed. The conclusion shows that in the PMD stage, large constellations have the greatest impact on existing space assets;the PMD duration and number of satellites performing PMD at the same time are key factors to the degree of negative impact. The faster the PMD is, the less threat it poses to other spacecraft. More results and conclusions are still being analyzed. 展开更多
关键词 large constellations space debris environment long-term environmental evolution impact probability dangerous intersection coping strategies
下载PDF
Impact of Wavelength-Routed Network Physical Topology on Blocking Probability Using a Dynamic Traffic Growth Model
2
作者 Roger Lao Robert Killey 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期773-774,共2页
We investigate the impact of network topology on blocking probability in wavelength-routed networks using a dynamic traffic growth model. The dependence of blocking on different physical parameters is assessed.
关键词 of BE AS impact of Wavelength-Routed Network Physical Topology on Blocking probability Using a Dynamic Traffic Growth Model were on
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部