深空ASTER探测NEA 2001-SN263的光学导航方案

IF 0.9 Q3 ENGINEERING, AEROSPACE
A. G. V. D. Brum, Carolina Mattos Schuindt
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引用次数: 0

摘要

除了无线电导航,自20世纪70年代旅行者号宇宙飞船发射以来,光学导航已经成功地应用于深空任务。在20世纪90年代,美国宇航局的深空1号任务成功地测试了一个自主光学导航系统,该系统大大降低了任务成本,并最大化了科学成果。ASTER任务是巴西第一个深空任务,其所有阶段都将依靠光学导航的支持。探测器的平台是由俄罗斯空间研究所为芬兰-俄罗斯火星任务(MetNet)开发的俄罗斯朝圣者飞船。因此,除了船上的科学摄像机(也可用于导航目的)外,探测器还将配备一个导航摄像机(NAVCAM)。本研究涉及制定可用于ASTER任务的光学导航的一般建议,该建议考虑到船上可用的设备,特别是NAVCAM,以及适合进行光学导航的跟踪软件。描述了一种合适的导航算法,并将其成功应用于模拟和真实图像(来自美国宇航局的新视野任务)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Proposal of Optical Navigation for Deep Space Mission ASTER to Explore NEA 2001-SN263
In addition to radio navigation, optical navigation has been used successfully in deep-space missions since the launch of the Voyager spacecraft, in the 1970s. In the 1990s, the NASA’s Deep Space-1 mission successfully tested an autonomous optical navigation system which allowed great reduction in mission costs, and maximized scientific results. The ASTER mission, the first Brazilian deep space mission, shall count on the support of optical navigation for all its phases. The platform of the probe is the Russian Pilgrim spacecraft developed by the Russian Space Research Institute for the Finnish-Russian mission to Mars (MetNet). As such, besides the scientific camera on board (which may also be used for navigation purposes), the probe will also dispose of a navigation camera (NAVCAM). This study is related to the formulation of a general proposal of optical navigation, that can be used in the ASTER mission, which takes into account the equipment available on board, especially the NAVCAM, along with tracking software suitable for the conduction of optical navigation. The description of an appropriate navigation algorithm together with its successful application to simulated and real images (from NASA’s New Horizons mission) is carried out.
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CiteScore
2.00
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16
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20 weeks
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