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MULTIPLE-SPACECRAFT TRANSFERS TO SUN-EARTH DISTANT RETROGRADE ORBITS FOR ASTEROID DETECTION MISSIONS

机译:用于小行星检测任务的多个航天器转移到Sun-Bard的遥远逆行轨道

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As demonstrated by the meteorite fall in Chelyabinsk, Russia, in February 2013, also asteroids with a diameter smaller than 40 m can enter the Earth's atmosphere and cause a local damage on ground. For such small Potentially Hazardous Asteroids (PHAs) a short warning would be sufficient to have a protection plan in place on ground. However, small asteroids are difficult to be detected from ground, especially if they approach the Earth from the Sun direction, such as the Chelyabinsk object. For this reason, a multi-spacecraft mission was proposed to monitor PHAs from a telescope base orbiting on Distant Retrograde Orbits of the Sun - Earth system. This space-based system would allow increasing the warning time of asteroids incoming from the Sun direction. In this article a trade-off analysis is performed on the DRO and constellation size based on some measures of the detection capabilities. Moreover, the transfer to selected DROs from a Low Earth Orbit is designed to minimise the total Av and time to build the constellation.
机译:如2013年2月在大学林斯克的陨石落在Chelyabinsk的陨石瀑布,也可以进入大于40米的小行星进入地球的大气并导致地面局部损坏。对于这种小的潜在危险的小行星(PHA),短暂的警告将足以在地面上有保护计划。然而,难以从地面检测小小星,特别是如果它们从太阳方向接近地球,例如Chelyabinsk对象。因此,提出了一种多航天器任务,以监测望远镜基地轨道上的望远镜轨道轨道上的遥远逆行轨道。该基于空间的系统将允许增加从太阳方向传入的小行星的警告时间。在本文中,根据检测能力的一些测量,对DRO和星座大小进行权衡分析。此外,从低地球轨道转移到所选的DROS,旨在最小化构建星座的总AV和时间。

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