[1] 马鹏斌,宝音贺西. 近地小行星威胁与防御方案研究现状[J]. 深空探测学报,2016,3(1):10-17
MA P B,BAOYIN H X. Research status of the near-Earth asteroids’ hazard and mitigation[J]. Journal of Deep Space Exploration,2016,3(1):10-17
[2] 李飞,孟林智,王彤,等. 国外近地小行星撞击地球防御技术研究[J]. 航天器工程,2015,24(2):87-95
LI F,MENG L Z,WANG T,et al. Research on defense technology approach on planetoid crash Earth[J]. Spacecraft Engineering,2015,24(2):87-95
[3] 胡中为. 保卫地球——近地天体的巡视与防御陨击的对策[J]. 自然杂志,2010,32(3):166-173
HU Z W. Defend Earth—touring near Earth asteroid and defense approach of aerolite crash[J]. Natural Forum,2010,32(3):166-173
[4] 杨志根,林清. 地球上的天体撞击事件[J]. 科学前沿,2007,53(4):12-16
YANG Z G,LIN Q. Incidences of astrometry crash in the Earth[J]. Science Advance,2007,53(4):12-16
[5] NASA. Planetary defense coordination office[EB/OL]. [2018-03-14]. https://www.nasa.gov/planetarydefense/overview
[6] RON C. The day the dinosaurs died[J]. Astronomy,1996,24(4):34-41
[7] 李俊峰,曾祥远. 不规则小行星引力场内的飞行动力学[J]. 力学进展,2017,47(1):429-451
LI J F,ZENG X Y. Flight dynamics over irregular asteroids[J]. Advances in Mechanics,2017,47(1):429-451
[8] 朱进,高健,关敏,等. 小行星的搜寻和定轨[J]. 云南天文台台刊,2002(3):17-20
ZHU J,GAO J,GUAN M,et al. Asteroid searching and orbit determination[J]. Yunnan Observatory Journal,2002(3):17-20
[9] 徐伟彪,赵海斌. 小行星深空探测的科学意义和展望[J]. 地球科学进展,2005,20(11):1182-1190
XU W B,ZHAO H B. Deep space exploration of asteroids:the science perspectives[J]. Advances in Earth Science,2005,20(11):1182-1190
[10] 黄江川,王晓磊,孟林智. 嫦娥二号卫星飞越4179小行星逼近策略及成像技术[J]. 中国科学:科学技术,2013,43(5):478-486
HUANG J C,WANG X L,MENG L Z. The approach stage and imaging technology of CHANG E II satellite flyover the 4179 planetoid[J]. Science China Press:Science Technology,2013,43(5):478-486
[11] 欧阳自远. 小行星撞击地球的“祸”与“福”[J]. 地球资源导刊,2013(5):86-92
OUYANG Z Y. The disaster and blessing of asteroid impact Earth[J]. Earth Resource Guide,2013(5):86-92
[12] CHYBA C F,THOMAS P J,ZAHNLE K J. The 1908 Tunguska explosion-atmospheric disruption of a stony steroid[J]. Nature,1993(361):40-44
[13] BROWN P G,ASSINK J D,ASTI L,et al. A 500-kiloton airburst over Chelyabinsk and an enhanced hazard from small impactors[J]. Nature,2013,503(7475):238-241
[14] CHESLEY S R. Potential impact detection for near-Earth asteroids:the case of 99942 Apophis (2004MN 4)[J]. Proceedings of the International Astronomical Union,2005,1(S229):215-228
[15] 邬静云. 太阳帆绳系小行星动力学与控制研究[D]. 南京:南京航空航天大学,2016.
WU J Y. Research on the dynamics and control of a tethered system formed by an asteroid and a solar sail[D]. Nanjing:Nanjing University of Aeronautics and Astronautics,2016.
[16] CARLOS M R,SHEN H J,JESICK M,et al. Catching a rolling stone:dynamics and control of a spacecraft and an asteroid[C]//IAA-PDC13-04-27,Flagstaff. [S.l.]:IAA,2013.
[17] 马楠,贵先洲. 国外空间碎片清除计划[J]. 国际太空,2013(2):64-69
MA N,GUI X Z. The removal plan from space debris in abroad[J]. International Space,2013(2):64-69
[18] 张玉军,冯书兴. 主动式空间碎片清理研究[J]. 装备指挥技术学院学报,2010,21(6):78-82
ZHANG Y J,FENG S X. Research on active space debris removal[J]. Journal of the Academy of Equipment Command & Technoloy,2010,21(6):78-82
[19] The International Astronomical Union Minor planet center. Minor planet center[EB/OL]. [2018-03-14].https://www.minorplantcenter.net.
[20] NASA. Discovery statistics[EB/OL]. [2018-03-14]. https://cneos.jpl.nasa.gov/stats/.
[21] MAINZER A. NEOWISE observations of near-Earth objects:preliminary results[J]. The Astrophys Journal,2011(743):56-172
[22] OSTRO S J,GIORGINI J D. The role of radar in predicting and preventing asteroid and comet collisions with Earth in mitigation of hazardous comets and asteroids[M]. UA:Press Syndicate of the University of Cambridge,Cambridge,Mass,2004.
[23] OSTRO S J,GIORGINI R. The role of ground-based radar in near-Earth object tracking,characterization and threat mitigation[C]//Near-Earth Object Study. Vail. Colorado:[s.n.],2006.
[24] PAN-STARRS. The panoramic survey telescope and rapid response system[EB/OL]. [2018-03-14].http://pswww.ifa.hawaii.edu/pswww.
[25] OFFICE OF AUDITS. NASA’s efforts to identify near-Earth objects and mitigate hazards[R]. USA:NASA,2014.
[26] THE UNIVERSITY OF ARIZONA. Catalina sky survey-about CSS[EB/OL]. [2018-03-14]. https://catalina.lpl.arizona.edu/about.
[27] THE UNIVERSITY OF ARIZONA. Spacewatch-telescopes[EB/OL]. [2018-03-14]. http://spacewatch.lpl.arizona.edu/.
[28] THE UNIVERSITY OF ARIZONA. The experimental test site at White Sands Missile range. [EB/OL]. [2018-03-14]. https://www.ll.mit.edu/About/facilities?tag=536.
[29] VADUVESCU O,BIRLAN M,TUDORICA A,et al. Euro near-recovery follow-up and discovery of NEAs and MBAs using large field 1-2 m telescopes[J]. Planetary and Space Science,2011,59(13):1632-1646
[30] PMO. Near earth object telescope[EB/OL]. [2018-03-14]. https://http://www.pmo.ac.cn/jgsz/yjsz/xxkxhsktcyjb/jdttwyj/.
[31] MANIZER A. NEOWISE observations of near-Earth objects:preliminary results[J]. The Astrophys Journal,2011(743):156-172
[32] NEO. NEOSSat:Cananda’s sentinel in the sky[EB/OL]. [2018-03-14]. http://www.asc-csa.gc.ca/eng/satellites/neossat/.
[33] BRAND W,FRANK P L,ROBERT S,et al. The near Earth object surveillance satellite[J]. Photonic Applications in Astronomy,Biomedicine,Imaging,Materials Processing,and Education,2004,5578(1):1-32
[34] ROSS F,OLAF E,THIMO G J,et al. A space-based mission to characterize the IEO population[J]. Acta Astronautica,2013,90(1):33-40
[35] NASA. Near-Earth object survey and deflection analysis of alternatives,report to congress[R]. USA:NASA,2007.
[36] 张翔,季江徽. 近地小行星地基雷达探测研究现状[J]. 天文学进展,2014,32(1):24-39
ZHANG X,JI J H. Research status on Erath based-Rader explore near Earth asteroid[J]. Progress in Astronomy,2014,32(1):24-39
[37] ROBERT J,ALESSANDRO M,TIMOTHY S,et al. Earth and space-based NEO survey simulations:prospects for achieving the space guard goal[J]. Icarus,2003,161(1):17-33
[38] NEO. NEOCam:finding asteroids before the find us[EB/OL ]. [2018-03-14]. https://neocam.ipac.caltech.edu/.
[39] NEO. CROWN:constellation of heterogeneous wide -field NEO Surveyors[EB/OL]. [2018-03-14]. http://www.qxslab.cn/stare/content/details179_1325.html.
[40] 刘雪奇,孙海彬,孙胜利. 近地小行星防御策略分析[J]. 深空探测学报,2017,4(6):557-563
LIU X Q,SUN H B,SUN S L. Analysis of defense strategies of near-Earth asteroids[J]. Journal of Deep Space Exploration,2017,4(6):557-563
[41] SANCHEZ P,COLOMBO C,VASILE M,et al. Multi-criteria comparison among several mitigation strategies for dangerous near-Earth objects[J]. Journal of Guidance Control & Dynamics,2009,32(1):121-142
[42] LU E T,LOVE S G. Gravitational tractor for towing asteroids[J]. Nature,2005,438(7065):177-178