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首页> 外文期刊>Acta astronautica >Ground Assisted Rendezvous With Geosynchronous Satellites For The Disposal Of Space Debris By Means Of Earth-oriented Tethers
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Ground Assisted Rendezvous With Geosynchronous Satellites For The Disposal Of Space Debris By Means Of Earth-oriented Tethers

机译:地面辅助与地面同步卫星的交会,用于通过地线束缚处理空间碎片

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摘要

Previous studies have shown that extended length Earth-oriented tethers in the geosynchronous (GEO) region can be used to re-orbit satellites to disposal orbits. One such approach involves the extension of a GEO based tether, collection of a debris object, and retraction of the tether, which transfers the retracted configuration to a higher energy orbit for debris disposal. The re-extension of the tether after debris disposal returns the configuration to the near-GEO altitude. The practical feasibility of such a system depends on the ability to collect GEO debris objects, attach them to a deployed tether system, and retract the tethers for transfer to the disposal orbits. This study addresses the collection and delivery of debris objects to the deployed tether system in GEO. The investigation considers the number, type and the characteristics of the debris objects as well as the collection tug that can be ground controlled to detect, rendezvous and dock with the debris objects for their delivery to the tethers system. A total of more than 400 objects are in drift orbits crossing all longitudes either below or above the geostationary radius. More than 130 objects are also known to librate around the stable points in GEO with periods of libration up to five or more years. A characterization of the position and velocity of the debris objects relative to the collection tug is investigated. Typical rendezvous performance requirements for uncooperative GEO satellites are examined, and the similarities with other approaches such as the ESA's CX-OLEV commercial mission proposal to extend the life of geostationary telecommunication satellites are noted.
机译:先前的研究表明,可以使用地球同步(GEO)区域中延长长度的地球定向系链来将卫星重新轨道化以处理轨道。一种这样的方法涉及基于GEO的系绳的延伸,碎片对象的收集以及系绳的缩回,这将缩回的构型转移到较高的能量轨道以进行碎片处置。碎片处理后系绳的重新伸展使构型恢复到接近GEO的高度。这种系统的实际可行性取决于收集GEO碎片物体,将其附着到已部署的系绳系统以及缩回系绳以转移到处置轨道的能力。这项研究致力于将碎片对象收集和传送到GEO中已部署的系绳系统。该调查考虑了碎片对象的数量,类型和特征,以及可以进行地面控制以检测,会合和与碎片对象对接以将它们传送到系绳系统的收集拖船。共有超过400个物体在漂移轨道上穿越地球静止半径以下或以上的所有经度。还已知有130多个物体在GEO的稳定点附近自由移动,其解放期长达五年或更长时间。研究了碎片对象相对于收集拖船的位置和速度的特征。研究了不合作的GEO卫星的典型交会性能要求,并指出了与其他方法的相似性,例如ESA的CX-OLEV商业任务建议,以延长对地静止电信卫星的寿命。

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