综述

我国近地小行星地基雷达探测系统性能设计和仿真分析

  • 平劲松 ,
  • 孙靖
展开
  • 中国科学院国家天文台,北京 100101
平劲松(1968—),研究员、博士,主要研究方向为射电天文和行星无线电科学。通信地址:北京市朝阳区大屯路甲20号(100101) 电子邮箱:jsping@bao.ac.cn
孙靖(1980—),高级工程师、博士,主要研究方向为天体测量与天体力学。通信地址:北京市朝阳区大屯路甲20号(100101) 电子邮箱:sunjing@bao.ac.cn

网络出版日期: 2023-12-11

基金资助

国家自然科学基金资助项目(11833001,11973015,61931002)。

Performance and Simulation of the Ground-Based Radar System for NEA in China

  • PING Jin-song ,
  • SUN Jing*
Expand
  • National Astronomical Observatory,Chinese Academy of Sciences,Beijing 100101,China

Online published: 2023-12-11

摘要

利用地基雷达系统进行近地小行星探测具有独特的技术优势,也是行星防御不可或缺的技术手段。本文以此为背景,分析了国内地基雷达自主研发技术能力,探讨了我国近地小行星地基雷达探测系统的性能设计,并针对近地小行星探测的能力和范围开展了仿真分析。同时结合我国深空测控网和射电天文网的技术现状及未来的发展规划,对后续开展近地小行星地基雷达联合探测途径进行了探讨。

本文引用格式

平劲松 , 孙靖 . 我国近地小行星地基雷达探测系统性能设计和仿真分析[J]. 空间科学与试验学报, 2021 , 21(4) : 1 -10 . DOI: 10.19963/j.cnki.2096-4099.2021.04.001

Abstract

It has unique technical advantages to use the ground-based radar system for tracking near Earth asteroid(NEA).And it is also an indispensable technique for asteroid security defense.In this paper,we analyze the independent development and optimized capability of domestic ground-based radar and simulate its performance for NEA monitoring.In collaboration with the deep space TT&C(tracking,telemetry and command)network and radio astronomy network,the joint detection of NEA is very prospective in China.

参考文献

[1] 龚自正,李明,陈川,等.小行星监测预警、安全防御和资源利用的前沿科学问题及关键技术[J].科学通报,2020,65:346-372.
[2] 李海涛,刘建军,陈少伍,等.构建我国近地小行星探测雷达系统的需求与技术途径探讨[J].中国科学:信息科学,2021,doi:10.1360/SSI-2020-0033.
[3] 郑磊,苏彦,郑永春,等.地基雷达技术及其在太阳系天体探测中的应用[J].天文学进展,2009,27:373-382.
[4] 刘慧根,赵海滨,周济林.近地小天体调查、防御与开发[J].科学通报,2020,65:757-763.
[5] Slade M A,Benner LAM,Silva A.Goldstone solar system radar observatory:Earth-based planetary mission support and unique science results[J].Proc IEEE,2011,99:757-769.
[6] Ostro S J,Giorgini J D.The role of ground based radar in near-Earth object tracking,characterization,and threat mitigation[C].Proceedings of NASAWorkshop on Near-Earth Object Detection,Characterization,and Threat Mitigation,Colorado,2006.
[7] 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,2014,32:24-39.
[8] Busch M W,Kulkarni S R,Brisken W,et al.Determining asteroid spin states using radar speckles[J].Icarus,2010,209:535-541.
[9] Committee to Review Near-Earth-Object Surveys and Hazard Mitigation Strategies Space Studies Board Aeronautics and Space Engineering Board Division on Engineering and Physical Sciences[C].Defending Planet Earth:Near-Earth-Object Surveys and Hazard Mitigation Strategies.Washington:The National Academic Press,2010:52.
[10] Ostro S J,Giorgini J D.The role of radar in predicting and preventing asteroid and comet collisions with Earth[C].Mitigation of Hazardous Comets and Asteroids.Cambridge:Cambridge University Press,2004:38.
[11] Yeomans D K,Ostro S J,Chodas P W.Radar astrometry of near-Earth asteroids[J].Astron J,1987,94:189-200.
[12] Ostro S J,Campbell D B,Chandler J F,et al.Asteroid radar astrometry[J].Astron J,1991,102:1490-1502.
[13] Ostro S J,Benner L A M,Nolan M C,et al.Radar observations of asteroid 25143 Itokawa(1998SF36)[J].Meteoritics PlanetSci,2004,39:407-424.
[14] Ostro S J,Slade M A.Radar and Optical Observations of Asteroid 1998 KY26[J].Science,1999,285(5427):557-560.
[15] Ostro S J,Hudson R S,Jurgens R F,et al.Radar Images of Asteroid 4179 Toutatis[J].Science,1995,270(5233):80-83.
[16] Naidu S P,Benner L A M,Margot J L,et al.Capabilities of Earth-based radar facilities for near-Earth asteroid observations[J].Astronomical Journal,2016:152.
[17] Binzel R P,A'Hearn M,Asphaug E,et al.Interiors of small bodies:foundations and perspectives[J].Planet Space Sci,2003,51:443-454.
[18] Sun J,Ping J S,Bondarenko Y,et al.Promoting Earth-Based Radar Astronomical Observations of the Moon[J].Sensors,2020,20:1874.
[19] 张宏伟,刘敏,李新胜.我国深空探测地面站发射机的发展及展望[J].飞行器测控学报,2014,33(3):219-224.
[20] 李新胜.深空地基探测雷达的发展现状与建议[J].现代雷达,2017,39(8).
文章导航

/