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PRELIMINARY ANALYSIS OF TWO YEARS OF THE MASSIVE COLLISION MONITORING ACTIVITY

机译:两年大规模碰撞监测活动的初步分析

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It is hypothesized that the interactions between many of the most massive derelicts in low Earth orbit (LEO) are obfuscated by being averaged across all of LEO. This is suggested by the fact that there are clusters of derelicts where members' inclinations are nearly identical and their apogees/perigees overlap significantly resulting in periodic synchronization of the objects' orbits. In order to address this proposition, an experiment was designed and conducted over the last two years. Results from this monitoring and characterization experiment are presented with implications for proposed debris remediation strategies. Four separate clusters of massive derelicts were examined that are centered around 775km, 850km, 975km, and 1500km, respectively. In aggregate, the constituents of these clusters contain around 500 objects and about 800,000kg of mass; this equates to about a third of all derelict mass in LEO. Preliminary analysis indicates that encounter rates over this time period for these objects are greater than is estimated by traditional techniques. Hypothesized dependencies between latitude of encounter, relative velocity, frequency of encounters, inclination, and differential semi-major axis were established and verified. This experiment also identified specific repeatable cluster dynamics that may reduce the cost/risk and enhance the effectiveness of debris remediation activities and also enable new operational debris remediation options.
机译:假设是通过在所有Leo的所有Leo平均来妨碍低地球轨道(LEO)中许多最巨大的遗弃之间的相互作用。这提出了这一事实,即在成员倾斜几乎相同的情况下存在遗弃的群集,并且它们的Apogees / Perigees重叠显着导致对象的轨道的周期性同步。为了解决这一命题,在过去两年中设计并进行了实验。该监测和表征实验的结果呈现出拟议的碎片修复策略的影响。检查四个单独的大规模遗弃簇,分别以775km,850km,975km和1500km为中心的。在聚集体中,这些簇的成分包含大约500个物体和大约800,000kg的质量;这相当于Leo中大约三分之一的遗弃物质。初步分析表明,这些对象的此时间段的遇到率大于传统技术的估计。建立和验证遇到遭遇,相对速度,遇到,倾斜和差分半主轴的相对速度,频率和差分半主轴之间的假设依赖性。该实验还确定了可重复的可重复集群动态,可降低成本/风险,增强碎片修复活动的有效性,并实现新的运营碎片修复选择。

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