Hayabusa2’s station-keeping operation in the proximity of the asteroid Ryugu

被引:0
作者
Yuto Takei
Takanao Saiki
Yukio Yamamoto
Yuya Mimasu
Hiroshi Takeuchi
Hitoshi Ikeda
Naoko Ogawa
Fuyuto Terui
Go Ono
Kent Yoshikawa
Tadateru Takahashi
Hirotaka Sawada
Chikako Hirose
Shota Kikuchi
Atsushi Fujii
Takahiro Iwata
Satoru Nakazawa
Masahiko Hayakawa
Ryudo Tsukizaki
Satoshi Tanaka
Masanori Matsushita
Osamu Mori
Daiki Koda
Takanobu Shimada
Masanobu Ozaki
Masanao Abe
Satoshi Hosoda
Tatsuaki Okada
Hajime Yano
Takaaki Kato
Seiji Yasuda
Kota Matsushima
Tetsuya Masuda
Makoto Yoshikawa
Yuichi Tsuda
机构
[1] Japan Aerospace Exploration Agency,
[2] The Graduate University for Advanced Studies,undefined
[3] NEC Aerospace Systems,undefined
[4] Ltd.,undefined
[5] NEC Corporation,undefined
来源
Astrodynamics | 2020年 / 4卷
关键词
small body mission; station-keeping; guidance, navigation, and control (GNC); optical and radiometric navigation;
D O I
暂无
中图分类号
学科分类号
摘要
The Japanese interplanetary probe Hayabusa2 was launched on December 3, 2014 and the probe arrived at the vicinity of asteroid 162173 Ryugu on June 27, 2018. During its 1.4 years of asteroid proximity phase, the probe successfully accomplished numbers of record-breaking achievements including two touchdowns and one artificial cratering experiment, which are highly expected to have secured surface and subsurface samples from the asteroid inside its sample container for the first time in history. The Hayabusa2 spacecraft was designed not to orbit but to hover above the asteroid along the sub-Earth line. This orbital and geometrical configuration allows the spacecraft to utilize its high-gain antennas for telecommunication with the ground station on Earth while pointing its scientific observation and navigation sensors at the asteroid. This paper focuses on the regular station-keeping operation of Hayabusa2, which is called “home position” (HP)-keeping operation. First, together with the spacecraft design, an operation scheme called HP navigation (HPNAV), which includes a daily trajectory control and scientific observations as regular activities, is introduced. Following the description on the guidance, navigation, and control design as well as the framework of optical and radiometric navigation, the results of the HP-keeping operation including trajectory estimation and delta-V planning during the entire asteroid proximity phase are summarized and evaluated as a first report. Consequently, this paper states that the HP-keeping operation in the framework of HPNAV had succeeded without critical incidents, and the number of trajectory control delta-V was planned efficiently throughout the period.
引用
收藏
页码:349 / 375
页数:26
相关论文
共 147 条
  • [11] Rayman M D(2017)Thermal infrared imaging experiments of C-type asteroid 162173 ryugu on Hayabusa2 Space Science Review 208 255-286
  • [12] Mase R A(2018)Initial inflight calibration for Hayabusa2 optical navigation camera (ONC) for science observations of asteroid Ryugu Icarus 300 341-359
  • [13] Accomazzo A(2019)Updated inflight calibration of Hayabusa2’s optical navigation camera (ONC) for scientific observations during the cruise phase Icarus 325 153-195
  • [14] Ferri P(2019)Hayabusa2 arrives at the carbonaceous asteroid 162173 Ryugu—A spinning top-shaped rubble pile Science 364 268-272
  • [15] Lodiot S(2019)The surface composition of asteroid 162173 Ryugu from Hayabusa2 near-infrared spectroscopy Science 364 272-275
  • [16] Pellon-Bailon J L(2019)The geomorphology, color, and thermal properties of Ryugu: Implications for parent-body processes Science 364 252-262
  • [17] Hubault A(2020)Highly-porous nature of a primitive asteroid by thermal imaging Nature 579 518-522
  • [18] Porta R(undefined)undefined undefined undefined undefined-undefined
  • [19] Urbanek J(undefined)undefined undefined undefined undefined-undefined
  • [20] Kay R(undefined)undefined undefined undefined undefined-undefined