Orbit insertion strategy of Hayabusa2’s rover with large release uncertainty around the asteroid Ryugu

被引:0
作者
Yusuke Oki
Kent Yoshikawa
Hiroshi Takeuchi
Shota Kikuchi
Hitosi Ikeda
Daniel J. Scheeres
Jay W. McMahon
Junichiro Kawaguchi
Yuto Takei
Yuya Mimasu
Naoko Ogawa
Go Ono
Fuyuto Terui
Manabu Yamada
Toru Kouyama
Shingo Kameda
Kazuya Yoshida
Kenji Nagaoka
Tetsuo Yoshimitsu
Takanao Saiki
Yuichi Tsuda
机构
[1] Japan Aerospace Exploration Agency,Planetary Exploration Research Center
[2] Japan Aerospace Exploration Agency,Department of Aerospace Engineering
[3] University of Colorado,undefined
[4] Chiba Institute of Technology,undefined
[5] National Institute of Advanced Industrial Science and Technology,undefined
[6] Rikkyo University,undefined
[7] Tohoku University,undefined
[8] Kyushu Institute of Technology,undefined
来源
Astrodynamics | 2020年 / 4卷
关键词
solar radiation pressure; augmented elliptic Hill three-body problem; gravitational irregularity;
D O I
暂无
中图分类号
学科分类号
摘要
This paper describes the orbit design of the deployable payload Rover 2 of MINERVA-II, installed on the Hayabusa2 spacecraft. Because Rover 2 did not have surface exploration capabilities, the operation team decided to experiment with a new strategy for its deployment to the surface. The rover was ejected at a high altitude and made a semi-hard landing on the surface of the asteroid Ryugu after several orbits. Based on the orbital analysis around Ryugu, the expected collision speed was tolerable for the rover to function post-impact. Because the rover could not control its position, its motion was entirely governed by the initial conditions. Thus, the largest challenge was to insert the rover into a stable orbit (despite its large release uncertainty), and avoid its escape from Ryugu due to an environment strongly perturbed by solar radiation pressure and gravitational irregularities. This study investigates the solution space of the orbit around Ryugu and evaluates the orbit’s robustness by utilizing Monte Carlo simulations to determine the orbit insertion policy. Upon analyzing the flight data of the rover operation, we verified that the rover orbited Ryugu for more than one period and established the possibility of a novel method for estimating the gravity of an asteroid.
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页码:309 / 329
页数:20
相关论文
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[9]  
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