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Orbital debris-debris collision avoidance

机译:避免轨道碎片与碎片碰撞

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摘要

We focus on preventing collisions between debris and debris, for which there is no current, effective mitigation strategy. We investigate the feasibility of using a medium-powered (5 kW) ground-based laser combined with a ground-based telescope to prevent collisions between debris objects in low-Earth orbit (LEO). The scheme utilizes photon pressure alone as a means to perturb the orbit of a debris object. Applied over multiple engagements, this alters the debris orbit sufficiently to reduce the risk of an upcoming conjunction. We employ standard assumptions for atmospheric conditions and the resulting beam propagation. Using case studies designed to represent the properties (e.g. area and mass) of the current debris population, we show that one could significantly reduce the risk of nearly half of all catastrophic collisions involving debris using only one such laser/telescope facility. We speculate on whether this could mitigate the debris fragmentation rate such that it falls below the natural debris re-entry rate due to atmospheric drag, and thus whether continuous long-term operation could entirely mitigate the Kessler syndrome in LEO, without need for relatively expensive active debris removal.
机译:我们专注于防止碎片与碎片之间的碰撞,而目前还没有有效的缓解策略。我们研究了使用中功率(5 kW)地基激光器与地基望远镜相结合来防止低地球轨道(LEO)中的碎片物体之间发生碰撞的可行性。该方案仅利用光子压力作为扰动碎片物体轨道的手段。应用于多次交战后,这足以改变碎片轨道,以降低即将发生交会的风险。我们针对大气条件以及由此产生的光束传播采用标准假设。通过使用旨在代表当前碎片人口的属性(例如面积和质量)的案例研究,我们表明仅使用一种此类激光/望远镜设备,就可以显着降低几乎所有涉及碎片的灾难性碰撞的风险。我们推测这是否可以减轻碎片碎片的发生率,使其由于大气阻力而低于自然碎片的再进入速率,因此我们推测持续的长期手术是否可以完全缓解LEO的Kessler综合征,而无需相对昂贵的费用主动清除杂物。

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