The Development Overview of Asteroid Exploration

ZHANG Rongqiao1, HUANG Jiangchuan2, HE Rongwei2, GEN Yan1, MENG Linzhi3

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PDF(8490 KB)
Journal of Deep Space Exploration ›› 2019, Vol. 6 ›› Issue (5) : 417-423,455. DOI: 10.15982/j.issn.2095-7777.2019.05.002
Topic: Science and Supporting Technology of Small-Boby Exploration

The Development Overview of Asteroid Exploration

  • ZHANG Rongqiao1, HUANG Jiangchuan2, HE Rongwei2, GEN Yan1, MENG Linzhi3
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Abstract

The small bodies retain the original elements of early solar system,and may contain important clues to the origin of the earth's life and water. They are living fossils for studying the origin and evolutionary history of the solar system. Asteroid exploration has become research hotspots of international deep space exploration in recent years. The process of small bodies exploration is briefly summarized, and the research and development of asteroid exploration is reviewed, as well the key technologies of asteroid missions. Based on the deep space exploration capability of China, some suggestions are put forward to carry out future asteroid exploration.

Keywords

asteroid exploration / key technology / development overview

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ZHANG Rongqiao, HUANG Jiangchuan, HE Rongwei, GEN Yan, MENG Linzhi. The Development Overview of Asteroid Exploration. Journal of Deep Space Exploration, 2019, 6(5): 417‒423,455 https://doi.org/10.15982/j.issn.2095-7777.2019.05.002

References

[1] 叶培建,邹乐洋,王大轶,等.中国深空探测领域发展及展望[J].国际太空, 2018, 478(10):6-12. YE P J, ZOU L Y, WANG D Y, et al. Development and prospect of chinese deep space exploration[J]. Space International, 2018, 478(10):6-12.
[2] 孙泽洲,孟林智.中国深空探测现状及持续发展趋势[J].南京航空航天大学学报, 2015, 47(6):108-113. SUN Z Z, MENG L Z. Current situation and sustainable develop-ment trend of deep space exploration in China[J]. Journal of Nanjing University of Aeronautics&Astronautics, 2015, 47(6):108-113.
[3] 吴伟仁,王琼,唐玉华,等."嫦娥4号"月球背面软着陆任务设计[J].深空探测学报, 2017, 4(2):111-117. WU W R, WANG Q, TANG Y H, et al. Design of Chang'e-4 lunar farside soft-landing mission[J]. Journal of Deep Space Exploration, 2017(2):111-117.
[4] YE P J, SUN Z Z, ZHANG H, et al. An overview of the mission and technical characteristics of Change'4 Lunar Probe[J]. Science China Technological Sciences, 2017, 60(5):658-667.
[5] 耿言,周继时,李莎,等.我国首次火星探测任务[J].深空探测学报, 2018, 5(5):399-405. GENG Y, ZHOU J S, LI S, et al. Review of first Mars exploration mission in China[J].Journal of Deep Space Exploration, 2018, 5(5):399-405.
[6] ESA. Human spaceflight microgravity and exploration[EB/OL].[2019-08-20]. http://www.globalspaceexploration.org.
[7] RAYMAN M D, VARGHESE P D, LEHMAN H, et al. Livesay, "results from the DeepSpace 1technology validation mission", AA-99-IAA. 11.2.01[C]//50th International Astronautical Congress. Amsterdam, The Netherlands:[s.n.], 1999.
[8] ALTWEGG K, BALSIGER H, BAR-NUN A, et al. 67P/ChuryumovGerasimenko, a Jupiter familycomet with a high D/H ratio[J]. Science, 2015, 347:1261952.
[9] NOGUCHI T, NAKAMURA T, KIMURA M, et al. Incipient space weathering observed on the surface of Itokawa Dustparticles[J]. Science, 2011, 333(6064):1121-1126.
[10] AMMANNITO E, DESANCTIS M C, CIARNIELLO M, et al. Distribution of phyllosilicates on the surface of Ceres[J]. Science, 2016, 353(6303):4279.
[11] HIROHIDE D. Pole and global shape of 25143 Itokawa[J]. Science, 2006, 312(1347):1126574.
[12] LAURETTAD S, BARTELSA E, BIERHAUSE B, et al. The OSIRIS-REx target steroid (101955) Bennu:constraints on its physical, geological, and dynamical nature fromastronomicalob servations[J]. Meteorit. Planet. Sci., 2015(50):834-849.
[13] HERGENROTHER C W. Lightcurve, color and phase function photometry of the OSIRIS-REx target asteroid (101955) Bennu[J]. Icarus, 2013(226):663-670.
[14] BOTTKEW F, VOKROUHLICKY D, RUBINCAMD P, et al. The Yarkovsky and YOR Peffects:implications for asteroid dynamics[J]. Annu. Rev. Earth Planet. Sci., 2006, 34:157-191.
[15] LAURETTAD S. OSIRIS-REx:sample return from asteroid (101955) Bennu[J].Space Sci. Rev., 2017, 212:925-984.
[16] DALY M G, BARNOUIN O S,DICKINSON C, et al. The OSIRISREx Laser Altimeter (OLA) investigation andinstrument[J]. Space Sci. Rev., 2017, 212:899-924.
[17] DELBO M, LIBOUREL G, WILKERSON J. et al. Thermal fatigue as the origin of regolith on small asteroids[J]. Nature, 2014, 508:233-236.
[18] SCHEERESD J, HESAR S G, TARDIVEL S, et al. The geophysical environment of Bennu[J]. Icarus, 2016, 276:116-140.
[19] BINZEL R P. Spectral slope variations for OSIRIS-REx target asteroid (101955) Bennu:possible evidence for a fine-grained regolith equatorial ridge[J].Icarus, 2015, 256:22-29.
[20] 邹小端,小行星探测——太空争夺的新前沿[J].太空探索, 2017(5):1-3.
[21] LANDIS M E. Water vapor contribution to Ceres'exosphere from observed surface iceand postulated ice-exposing impacts[J]. J. Geophys. Res. Planet, 2019, 124:61-75.
[22] CHESLEY S R, FARNOCCHIA D, NOLAN M, et al.Orbit and bulk density of the OSIRIS-REx target Asteroid (101955) Bennu[J]. Icarus, 2014, 235:5-22.
[23] LAURETTAD S, OSIRIS-Rex Team. An overview of the OSIRISREx asteroid sample return mission[J]. Lunar and Planetary Inst. Technical Report, 2012, 43:2491.
[24] ESA. Rosetta——comet nucleus sample return[EB/OL].[2019-08-20]. http://www.doc88.com/p-6971564445676.html.
[25] HUANG J C. The engineering parameters analysis of (4179) Toutatis flybymission of Chang'e-2[J]. Science China Technological Sciences, 2013, 43:596-601.
[26] HUANG J C, JI J H, YE P J, et al.The ginger-shaped asteroid 4179 Toutatis:new observations from a successful flyby of Chang'e-2[J]. Nature Scientific Report, doi:10.1038/srep03411.
[27] 崔祜涛,崔平远.软着陆小行星的自主导航与制导[J].宇航学报, 2002, 23(5):1-4. CUI H T, CUI P Y. Autonomous navigation and guidance for softlanding asteroid[J]. Journal of Astronautics, 2002, 23(5):1-4.
[28] 李俊峰,崔文,宝音贺西.深空探测自主导航技术综述[J].力学与实践, 2012, 34(2):1-9. LI J F, CUI W, BAOYIN H X. A survey of autonomous navigation for deep space exploration[J]. Mechanics and Engineering, 2012, 34(2):1-9.
[29] 叶培建,杨孟飞,彭兢,等.中国深空探测进入/再入返回技术的发展现状和展望[J].中国科学:技术科学, 2015, 45(3):229-238. YE P J, YANG M F, PENG J, et al. Review and prospect of atmo-spheric entry and Earth reentry technology of China deep space ex-ploration[J]. Scientia Sinica Technologica, 2015, 45(3):229-238.
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