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Active space debris charging for contactless electrostatic disposal maneuvers

机译:主动空间碎片充电,可进行非接触式静电处置

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摘要

The remote charging of a passive object using an electron beam enables touchless re-orbiting of large space debris from geosynchronous orbit (GEO) using electrostatic forces. The advantage of this method is that it can operate with a separation distance of multiple craft radii, thus reducing the risk of collision. The charging of the tug-debris system to high potentials is achieved by active charge transfer using a directed electron beam. Optimal potential distributions using isolated- and coupled-sphere models are discussed. A simple charging model takes into account the primary electron beam current, ultra-violet radiation induced photoelectron emission, collection of plasma particles, secondary electron emission and the recapture of emitted particles. The results show that through active charging in a GEO space environment high potentials can be both achieved and maintained with about a 75% transfer efficiency. Further, the maximum electrostatic tractor force is shown to be insensitive to beam current levels. This latter later result is important when considering debris with unknown properties.
机译:使用电子束对无源物体进行远程充电,可以利用静电力实现大空间碎片从地球同步轨道(GEO)的非接触式重新轨道运动。该方法的优点在于,它可以以多个飞行器半径的分隔距离运行,从而降低了碰撞的风险。通过使用定向电子束进行主动电荷转移,可将拖船碎片系统充电至高电势。讨论了使用隔离球和耦合球模型的最佳电位分布。一个简单的充电模型考虑了一次电子束电流,紫外线辐射诱导的光电子发射,等离子体粒子的收集,二次电子发射以及发射粒子的捕获。结果表明,通过在GEO空间环境中进行主动充电,可以实现并保持高电势,传输效率约为75%。此外,最大静电牵引力显示为对电子束电流水平不敏感。当考虑具有未知属性的碎屑时,后一个结果很重要。

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