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SUCCESS RATE AND EFFECT OF USING ELECTRODYNAMIC TETHER SYSTEM FOR DE-ORBIT LEO SPACECRAFT

机译:电动力学Teter系统用于去轨利奥航天的成功率和效果

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The near-Earth orbit debris population will continue to increase due to ongoing space activities, on-orbit explosions, and accidental collisions among artificial objects in space. To better limit the growth of debris population, Active Debris Removals have been proposed as effective and potential mitigation methods. In Japan, an active debris removal using electro-dynamic tether to reduce large space debris in the low-earth orbit is considered. However, tether satellite system must solve two matters in order to execute the mission successfully. First, a tether strands is thin but long enough to have a large area so that it is vulnerable to small particles. This paper suggests a double tether system and provides a mathematical approach to estimate the survival probability of a double tether system and then apply the approach to evaluate the mission success rate. Second, the tether is also long enough to be a hazard to other operational spacecraft. This paper also provides a simulation of tether satellite's impact probability to the other spacecraft and aims to propose the measurement for mission success.
机译:由于正在进行的太空活动,在轨爆炸以及太空中人造物体之间的偶然碰撞,近地轨道碎片的数量将继续增加。为了更好地限制碎片人口的增长,主动碎片清除已被提议为有效和潜在的缓解方法。在日本,考虑使用电动系链主动清除碎片,以减少低地球轨道上的大空间碎片。但是,系绳卫星系统必须解决两个问题才能成功执行任务。首先,系绳股很细,但足够长以至于具有较大的面积,因此很容易受到小颗粒的伤害。本文提出了一种双系绳系统,并提供了一种数学方法来估计双系绳系统的生存概率,然后将其应用于评估任务成功率。其次,系绳的长度也足够长,可能会对其他运行中的航天器构成危险。本文还提供了拴系卫星对其他航天器撞击概率的模拟,并旨在提出成功执行任务的度量。

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