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An active debris removal parametric study for LEO environment remediation

机译:用于LEO环境修复的主动碎片清除参数研究

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Recent analyses on the instability of the orbital debris population in the low Earth orbit (LEO) region and the collision between Irid-ium 33 and Cosmos 2251 have reignited interest in using active debris removal (ADR) to remediate the environment. There are, however, monumental technical, resource, operational, legal, and political challenges in making economically viable ADR a reality. Before a consensus on the need for ADR can be reached, a careful analysis of its effectiveness must be conducted. The goal is to demonstrate the need and feasibility of using ADR to better preserve the future environment and to explore different operational options to maximize the benefit-to-cost ratio. This paper describes a new sensitivity study on using ADR to stabilize the future LEO debris environment. The NASA long-term orbital debris evolutionary model, LEGEND, is used to quantify the effects of several key parameters, including target selection criteria/constraints and the starting epoch of ADR implementation. Additional analyses on potential ADR targets among the existing satellites and the benefits of collision avoidance maneuvers are also included. Published by Elsevier Ltd. on behalf of COSPAR.
机译:最近对低地球轨道(LEO)区域中的轨道碎片种群的不稳定性以及铱33和Cosmos 2251之间的碰撞的重新分析引起了人们对使用主动碎片清除(ADR)修复环境的兴趣。但是,要使经济上可行的ADR成为现实,将面临巨大的技术,资源,运营,法律和政治挑战。在就ADR的需求达成共识之前,必须对其有效性进行仔细的分析。目的是证明使用ADR更好地保护未来环境的必要性和可行性,并探索各种运营方案以最大化成本效益比。本文介绍了一项有关使用ADR稳定未来LEO碎片环境的新敏感性研究。 NASA长期轨道碎片演化模型LEGEND用于量化几个关键参数的影响,包括目标选择标准/约束条件和ADR实施的起始时期。还包括对现有卫星中潜在的ADR目标进行的其他分析,以及避免碰撞的好处。由Elsevier Ltd.代表COSPAR发布。

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