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Rosetta lander Philae: Flight Dynamics analyses for landing site selection and post-landing operations

机译:罗塞塔着陆器Philae:选择着陆点和着陆后操作的飞行动力学分析

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On the 12th of November 2014, The Rosetta Lander Philae became the first spacecraft to softly land on a comet nucleus. Due to the double failure of the cold gas hold-down thruster and the anchoring harpoons that should have fixed Philae to the surface, it spent approximately two hours bouncing over the comet surface to finally come at rest one km away from its target site. Nevertheless it was operated during the 57 h of its First Science Sequence. The FSS, performed with the two batteries, should have been followed by the Long Term Science Sequence but Philae was in a place not well illuminated and fell into hibernation. Yet, thanks to reducing distance to the Sun and to seasonal effect, it woke up at end of April and on 13th of June it contacted Rosetta again. To achieve this successful landing, an intense preparation work had been carried out mainly between August and November 2014 to select the targeted landing site and define the final landing trajectory. After the landing, the data collected during on-comet operations have been used to assess the final position and orientation of Philae, and to prepare the wake-up. This paper addresses the Flight Dynamics studies done in the scope of this landing preparation from Lander side, in close cooperation with the team at ESA, responsible for Rosetta, as well as for the reconstruction of the bouncing trajectory and orientation of the Lander after touchdown. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:2014年11月12日,罗塞塔着陆器菲莱(Rosetta Lander Philae)成为第一个软着陆在彗核上的航天器。由于冷气抑制推进器的双重故障以及应该将Philae固定在水面的锚定鱼叉,它花费了大约两个小时在彗星表面上弹跳,最终在距目标位置一公里处静止。然而,它是在其“第一科学序列”的57小时内运行的。由两个电池执行的FSS,应遵循长期科学序列,但Philae处于照明不佳的地方,陷入休眠状态。然而,由于缩短了与太阳的距离并受季节影响,它于4月底醒来,并于6月13日再次与Rosetta联系。为了成功实现降落,主要在2014年8月至11月之间进行了紧张的准备工作,以选择目标降落地点并确定最终的降落轨迹。着陆后,在彗星作战期间收集的数据已用于评估Philae的最终位置和方向,并准备起床。本文与着陆者方面的ESA团队密切合作,从着陆器方面着手进行了着陆准备工作范围内的飞行动力学研究,并着手了着陆后着陆器的弹跳轨迹和定向的重建。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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